Methods And Compositions For Rna-Directed Target Dna Modification And For Rna-Directed Modulation Of Transcription - EP3241902

The patent EP3241902 was granted to Charpentier on Feb 28, 2018. The application was originally filed on Mar 15, 2013 under application number EP17163434A. The patent is currently recorded with a legal status of "Revoked".

EP3241902

CHARPENTIER
Application Number
EP17163434A
Filing Date
Mar 15, 2013
Status
Revoked
Apr 2, 2022
Grant Date
Feb 28, 2018
External Links
Slate, Register, Google Patents

Patent Summary

Patent Family

Patent Family

Patent Oppositions (4)

Patent oppositions filed by competitors challenge the validity of a granted patent. These oppositions are typically based on claims of prior art, lack of novelty, or non-obviousness. They are a key part of the process for determining a patent's strength and enforceability.

CompanyOpposition DateOpposition Status

Get instant alerts for new oppositions and patent status changes

TRUSCOTTNov 28, 2018ADMISSIBLE
GRIEBLINGNov 27, 2018ADMISSIBLE
HGFNov 27, 2018ADMISSIBLE
POHLMANMar 1, 2018ADMISSIBLE

Patent Citations (65) New

Patent citations refer to prior patents cited during different phases such as opposition or international search.

Citation PhasePublication NumberPublication Link
DESCRIPTIONUS2003022831
DESCRIPTIONUS2003032593
DESCRIPTIONUS2003083256
DESCRIPTIONUS2003220334
DESCRIPTIONUS2007254842
DESCRIPTIONUS2008081064
DESCRIPTIONUS2009047263
DESCRIPTIONUS2009068742
DESCRIPTIONUS2009191159
DESCRIPTIONUS2009196903
DESCRIPTIONUS2009227032
DESCRIPTIONUS2009246875
DESCRIPTIONUS2009304646
DESCRIPTIONUS3687808
DESCRIPTIONUS5034506
DESCRIPTIONUS5222982
DESCRIPTIONUS5385582
DESCRIPTIONUS5451513
DESCRIPTIONUS5489677
DESCRIPTIONUS5539082
DESCRIPTIONUS5545817
DESCRIPTIONUS5545818
DESCRIPTIONUS5576198
DESCRIPTIONUS5602240
DESCRIPTIONUS5714331
DESCRIPTIONUS5719262
DESCRIPTIONUS5843780
DESCRIPTIONUS6200806
DESCRIPTIONUS7029913
DESCRIPTIONUS7078387
DESCRIPTIONUS7153684
DESCRIPTIONUS7169874
DESCRIPTIONWO0118048
DESCRIPTIONWO0151616
DESCRIPTIONWO03020920
DESCRIPTIONWO9303769
DESCRIPTIONWO9309239
DESCRIPTIONWO9319191
DESCRIPTIONWO9412649
DESCRIPTIONWO9428938
DESCRIPTIONWO9500655
DESCRIPTIONWO9511984
DESCRIPTIONWO9516783
DESCRIPTIONWO9839352
DESCRIPTIONWO9914226
DESCRIPTIONWO9920741
OPPOSITIONDK106048C
OPPOSITIONEP2800811
OPPOSITIONEP3241902
OPPOSITIONUS2015344912
OPPOSITIONUS2016298134
OPPOSITIONWO2010079430
OPPOSITIONWO2011146121
OPPOSITIONWO2013176772
OPPOSITIONWO2014089290
OPPOSITIONWO2014093595
OPPOSITIONWO2014093655
OPPOSITIONWO2014099744
SEARCHWO2010021692
SEARCHWO2011072246
SEARCHWO2014065596
SEARCHWO2014089290
SEARCHWO2014093661
SEARCHWO2014093712
SEARCHWO2014099744

Non-Patent Literature (NPL) Citations (372) New

NPL citations refer to non-patent references such as research papers, articles, or other publications cited during examination or opposition phases.

Citation PhaseReference TextLink
DESCRIPTION- AGUILERA ET AL., INTEGR BIOL (CAMB, (200906), vol. 1, no. 5-6, pages 371 - 381-
DESCRIPTION- A. HATOUM-ASLAN; I. MANIV; L. A. MARRAFFINI, PROC. NATL. ACAD. SCI. U.S.A., (2011), vol. 108, page 21218-
DESCRIPTION- AKYIIREK ET AL., MOL. MED., (2000), vol. 6, page 983-
DESCRIPTION- ALI ET AL., HUM GENE THER, (1998), vol. 9, pages 81 - 86-
DESCRIPTION- ALI ET AL., HUM MOL GENET, (1996), vol. 5, pages 519 - 594-
DESCRIPTION- ALI ET AL., HUM MOL GENET, (1996), vol. 5, pages 531 - 594-
DESCRIPTION- ALI ET AL., HUM MOL GENET, (1996), vol. 5, pages 591 - 594-
DESCRIPTION- ALTSCHUL ET AL., J. MOL. BIOI., (1990), vol. 215, pages 403 - 10-
DESCRIPTION- ALTSCHUL ET AL., J. MOL. BIOL., (1990), vol. 215, pages 403 - 410-
DESCRIPTION- BARBOUR ET AL., "Characterization of the bipartite degron that regulates ubiquitin-independent degradation of thymidylate synthase", BIOSCI REP., (20130118), vol. 33, no. 1-
DESCRIPTION- BARTGE ET AL., PROC. NATL. ACAD. SCI. USA, (1988), vol. 85, pages 3648 - 3652-
DESCRIPTION- BENNETT ET AL., INVEST OPTHALMOL VIS SCI, (1997), vol. 38, pages 2857 - 2863-
DESCRIPTION- BEUMER ET AL., "Efficient gene targeting in Drosophila by direct embryo injection with zinc-finger nucleases", PNAS, (2008), vol. 105, no. 50, pages 19821 - 19826-
DESCRIPTION- BEVAN, NUCL ACID RES., (1984), vol. 12, pages 8711 - 8721-
DESCRIPTION- BIOCHEM.-
DESCRIPTION- BITTER ET AL., METHODS IN ENZYMOLOGY, (1987), vol. 153, pages 516 - 544-
DESCRIPTION- BORRAS ET AL., GENE THER, (1999), vol. 6, pages 515 - 524-
DESCRIPTION- BOUNDY ET AL., J. NEUROSCI., (1998), vol. 18, page 9989-
DESCRIPTION- BOYNTON ET AL., METHODS IN ENZYMOLOGY, (1993), vol. 217, pages 510 - 536-
DESCRIPTION- B. P. LEWIS; C. B. BURGE; D. P. BARTEL, CELL, (2005), vol. 120, page 15-
DESCRIPTION- B. WIEDENHEFT ET AL., NATURE, (2011), vol. 477, page 486-
DESCRIPTION- B. WIEDENHEFT ET AL., PROC. NATL. ACAD. SCI. U.S.A., (2011), vol. 108, page 10092-
DESCRIPTION- B. WIEDENHEFT; S. H. STERNBERG; J. A. DOUDNA, NATURE, (2012), vol. 482, page 331-
DESCRIPTION- CASANOVA ET AL., GENESIS, (2001), vol. 31, page 37-
DESCRIPTION- C. FR0KJSER-JENSEN ET AL., "Single-copy insertion of transgenes in Caenorhabditis elegans", NAT. GENET, (2008), vol. 40, page 1375-
DESCRIPTION- CHAKRABARTI, ENDOCRINOL, (2010), vol. 151, page 2408-
DESCRIPTION- CHAKRABARTI, ENDOCRINOL., (2010), vol. 151, page 2408-
DESCRIPTION- CHANG ET AL., PROC. NATL. ACAD SCI USA, (1987), vol. 84, pages 4959 - 4963-
DESCRIPTION- CHEN ET AL., BIOCHEM. BIOPHYS. RES. COMM., (1999), vol. 262, page 187-
DESCRIPTION- CHEN ET AL., CELL, (1987), vol. 51, pages 7 - 19-
DESCRIPTION- CHRISTOU, BIO/TECHNOLOGY, (1991), vol. 9, pages 957 - 9,4462-
DESCRIPTION- CHU ET AL., BIOORG MED CHEM LETT, (20081115), vol. 18, no. 22, pages 5941 - 4-
DESCRIPTION- CITARTAN ET AL., BIOSENS BIOELECTRON., (20120415), vol. 34, no. 1, pages 1 - 11-
DESCRIPTION- COMB ET AL., EMBO J., (1988), vol. 17, pages 3793 - 3805-
DESCRIPTION- C. R. HALE ET AL., CELL, (2009), vol. 139, page 945-
DESCRIPTION- C. R. HALE ET AL., MOL. CELL, (2012), vol. 45, page 292-
DESCRIPTION- CROOKE ET AL., J. PHARMACOL. EXP. THER., (1996), vol. 277, pages 923 - 937-
DESCRIPTION- DANIELI ET AL., NAT. BIOTECHNOL, (1998), vol. 16, pages 345 - 348-
DESCRIPTION- D. BHAYA; M. DAVISON; R. BARRANGOU, ANNU. REV. GENET., (2011), vol. 45, page 273-
DESCRIPTION- D. CARROLL, GENE THER, (2008), vol. 15, page 1463-
DESCRIPTION- D. G. SASHITAL; B. WIEDENHEFT; J. A. DOUDNA, MOL. CELL, (2012), vol. 46, page 606-
DESCRIPTION- D. G. SASHITAL; M. JINEK; J. A. DOUDNA, NAT. STRUCT. MOL. BIOL., (2011), vol. 18, page 680-
DESCRIPTION- DOHMEN ET AL., SCIENCE, (1994), vol. 263, no. 5151, pages 1273 - 1276-
DESCRIPTION- DWAINE A. BRAASCH; DAVID R. COREY, BIOCHEMISTRY, (2002), vol. 41, no. 14, pages 4503 - 4510-
DESCRIPTION- E. DELTCHEVA ET AL., NATURE, (2011), vol. 471, page 602-
DESCRIPTION- E. M. GESNER; M. J. SCHELLENBERG; E. L. GARSIDE; M. M. GEORGE; A. M. MACMILLAN, NAT. STRUCT. MOL. BIOL., (2011), vol. 18, page 688-
DESCRIPTION- ENGLISCH ET AL., ANGEWANDTE CHEMIE, INTERNATIONAL EDITION, (1991), vol. 30, page 613-
DESCRIPTION- E. R. WESTRA ET AL., MOL. CELL, (2012), vol. 46, page 595-
DESCRIPTION- E. SEMENOVA ET AL., PROC. NATL. ACAD. SCI. U.S.A., (2011), vol. 108, page 10098-
DESCRIPTION- F. D. URNOV; E. J. REBAR; M. C. HOLMES; H. S. ZHANG; P. D. GREGORY, NAT. REV. GENET, (2010), vol. 11, page 636-
DESCRIPTION- F. J. M. MOJICA; C. DIEZ-VILLASENOR; J. GARCIA-MARTINEZ; C. ALMENDROS, MICROBIOLOGY, (2009), vol. 155, page 733-
DESCRIPTION- FLANNERY ET AL., PNAS, (1997), vol. 94, pages 6916 - 6921-
DESCRIPTION- FLOTTE ET AL., PNAS, (1993), vol. 90, pages 10613 - 10617-
DESCRIPTION- FRANZ ET AL., CARDIOVASC. RES., (1997), vol. 35, pages 560 - 566-
DESCRIPTION- FUTAKI ET AL., CURR PROTEIN PEPT SCI., (200304), vol. 4, no. 2, pages 87 - 9,446-
DESCRIPTION- GAMA ET AL., BRAIN STRUCT FUNCT., (20091125), vol. 214, no. 2-3-
DESCRIPTION- G. HUTVAGNER; M. J. SIMARD, NAT. REV. MOL. CELL BIOL., (2008), vol. 9, page 22-
DESCRIPTION- G. K. TAYLOR; D. F. HEITER; S. PIETROKOVSKI; B. L. STODDARD, NUCLEIC ACIDS RES., (2011), vol. 39, page 9705-
DESCRIPTION- GORDON-KAMM, PLANT CELL, (1990), vol. 2, pages 603 - 618-
DESCRIPTION- GREUSSING ET AL., "Monitoring of ubiquitin-proteasome activity in living cells using a Degron (dgn)-destabilized green fluorescent protein (GFP)-based reporter protein", J VIS EXP., (20121110), no. 69-
DESCRIPTION- H. DEVEAU ET AL., J. BACTERIOL., (2008), vol. 190, page 1390-
DESCRIPTION- HERRERA-ESTRELLA ET AL., NATURE, (1983), vol. 303, page 209-
DESCRIPTION- HUNTER ET AL., HYPERTENSION, (1993), vol. 22, pages 608 - 617-
DESCRIPTION- HUSAINI ET AL., GM CROPS., (20110601), vol. 2, no. 3, pages 150 - 62-
DESCRIPTION- I. L. HOFACKER; P. F. STADLER, "Memory efficient folding algorithms for circular RNA secondary structures", BIOINFORMATICS, (2006), vol. 22, page 1172-
DESCRIPTION- ISHIDA ET AL., NATURE BIOTECH, (1996), vol. 14, pages 745 - 750-
DESCRIPTION- J. A. L. HOWARD; S. DELMAS; I. IVANCIC-BACE; E. L. BOLT, BIOCHEM. J., (2011), vol. 439, page 85-
DESCRIPTION- J. AM. CHEM. SOC., (2000), vol. 122, pages 8595 - 8602-
DESCRIPTION- J. BIOL. CHEM.-
DESCRIPTION- J. CARTE; R. WANG; H. LI; R. M. TERNS; M. P. TERNS, GENES DEV, (2008), vol. 22, page 3489-
DESCRIPTION- J. C. MILLER ET AL., NAT. BIOTECHNOL., (2011), vol. 29, page 143-
DESCRIPTION- J. E. GARNEAU ET AL., NATURE, (2010), vol. 468, page 67-
DESCRIPTION- JOMARY ET AL., GENE THER, (1997), vol. 4, pages 683 - 690-
DESCRIPTION- J. ZHANG ET AL., MOL. CELL, (2012), vol. 45, page 303-
DESCRIPTION- KABANOV ET AL., FEBS LETT, (1990), vol. 259, pages 327 - 330-
DESCRIPTION- KANEDA ET AL., NEURON, (1991), vol. 6, pages 583 - 594-
DESCRIPTION- KAWAI ET AL., "Transformation of Saccharomyces cerevisiae and other fungi: methods and possible underlying mechanism", BIOENG BUGS, (201011), vol. 1, no. 6, pages 395 - 403-
DESCRIPTION- K. DARTY; A. DENISE; Y. PONTY, "Interactive drawing and editing of the RNA secondary structure", BIOINFORMATICS, (2009), vol. 25, page 1974-
DESCRIPTION- KIM ET AL., MOL. CELL. BIOL., (1997), vol. 17, pages 2266 - 2278-
DESCRIPTION- KITA ET AL., BIOCHEM. BIOPHYS. RES. COMM., (2005), vol. 331, page 484-
DESCRIPTION- KLEE, BIO/TECHNOLO, (1985), vol. 3, pages 637 - 642-
DESCRIPTION- KLEIN ET AL., NATURE, (1987), vol. 327, pages 70 - 73-
DESCRIPTION- KNIGHT ET AL., PROC. NATL. ACAD. SCI. USA, (2003), vol. 100, page 14725-
DESCRIPTION- KNOBLAUCH ET AL., NAT. BIOTECHNOL, vol. 17, pages 906 - 909-
DESCRIPTION- KOSHIMIZU, U. ET AL., DEVELOPMENT, (1996), vol. 122, page 1235-
DESCRIPTION- KOSHKIN ET AL., TETRAHEDRON, (1998), vol. 54, pages 3607 - 3630-
DESCRIPTION- KROSCHWITZ, J. I.,, The Concise Encyclopedia Of Polymer Science And Engineering, JOHN WILEY & SONS, pages 858 - 859-
DESCRIPTION- K. S. MAKAROVA ET AL., NAT. REV. MICROBIOL., (2011), vol. 9, page 467-
DESCRIPTION- K. S. MAKAROVA; L. ARAVIND; Y. I. WOLF; E. V. KOONIN, BIOL. DIRECT, (2011), vol. 6, page 38-
DESCRIPTION- K. S. MAKAROVA; N. V. GRISHIN; S. A. SHABALINA; Y. I. WOLF; E. V. KOONIN, BIOL. DIRECT, (2006), vol. 1, page 7-
DESCRIPTION- KURIKI ET AL., BIOL. PHARM. BULL, (2002), vol. 25, page 1476-
DESCRIPTION- KURIKI ET AL., BIOL. PHARM. BULL., (2002), vol. 25, page 1476-
DESCRIPTION- L. A. MARRAFFINI; E. J. SONTHEIME, NATURE, (2010), vol. 463, page 568-
DESCRIPTION- LANGER, SCIENCE, (1990), vol. 249, pages 1527 - 1533-
DESCRIPTION- LETSINGER ET AL., PROC. NATL. ACAD. SCI. USA, (1989), vol. 86, pages 6553 - 6556-
DESCRIPTION- LIBERMAN; 2012 MAY ET AL., WILEY INTERDISCIP REV RNA, vol. 3, no. 3, pages 369 - 84-
DESCRIPTION- LIBERMAN ET AL., WILEY INTERDISCIP REV RNA, (201205), vol. 3, no. 3, pages 369 - 84-
DESCRIPTION- LI; DAVIDSON, PNAS, (1995), vol. 92, pages 7700 - 7704-
DESCRIPTION- LI ET AL., INVEST OPTHALMOL VIS SCI, (1994), vol. 35, pages 2543 - 2549-
DESCRIPTION- LI ET AL., J. CELL BIOL., (1996), vol. 132, pages 849 - 859-
DESCRIPTION- LINN ET AL., CIRC. RES., (1995), vol. 76, pages 584 - 591-
DESCRIPTION- LIU ET AL., GENE THERAPY, (2004), vol. 11, pages 52 - 60-
DESCRIPTION- LLEWELLYN ET AL., NAT. MED., (2010), vol. 16, no. 10, pages 1161 - 1166-
DESCRIPTION- MANOHARAN ET AL., ANN. N.Y. ACAD. SCI., (1992), vol. 660, pages 306 - 309-
DESCRIPTION- MANOHARAN ET AL., BIOORG. MED. CHEM. LET., (1993), vol. 3, pages 2765 - 2770-
DESCRIPTION- MANOHARAN ET AL., BIOORG. MED. CHEM. LET., (1994), vol. 4, pages 1053 - 1060-
DESCRIPTION- MANOHARAN ET AL., NUCLEOSIDES & NUCLEOTIDES, (1995), vol. 14, pages 969 - 973-
DESCRIPTION- MANOHARAN ET AL., TETRAHEDRON LETT., (1995), vol. 36, pages 3651 - 3654-
DESCRIPTION- MARTIN ET AL., HELV. CHIM. ACTA, (1995), vol. 78, pages 486 - 504-
DESCRIPTION- MASON ET AL., ENDOCRINOL, (1998), vol. 139, page 101-
DESCRIPTION- MASON ET AL., ENDOCRINOL., (1998), vol. 139, page 1013-
DESCRIPTION- MATSUI, Y. ET AL., CELL, (1992), vol. 70, page 841-
DESCRIPTION- MAYFORD ET AL., PROC. NATL. ACAD. SCI. USA, (1996), vol. 93, page 13250-
DESCRIPTION- MCBRIDE ET AL., PROC. NATI. ACAD. SCI. USA, (1994), vol. 91, pages 7301 - 7305-
DESCRIPTION- M. CHRISTIAN ET AL., GENETICS, (2010), vol. 186, page 757-
DESCRIPTION- MENDELSON ET AL., VIROL., (1988), vol. 166, pages 154 - 165-
DESCRIPTION- M. G. CAPARON; J. R. SCOTT, "Genetic manipulation of pathogenic streptococci", METHODS ENZYMOL., (1991), vol. 204, page 556-
DESCRIPTION- MISHRA ET AL., BIOCHIM. BIOPHYS. ACTA, (1995), vol. 1264, pages 229 - 237-
DESCRIPTION- MIYAGISHI ET AL., NATURE BIOTECHNOLOGY, (2002), vol. 20, pages 497 - 500-
DESCRIPTION- MIYOSHI ET AL., PNAS, (1997), vol. 94, pages 10319 - 23-
DESCRIPTION- MOESSLER ET AL., DEVELOPMENT, (1996), vol. 122, pages 2415 - 2425-
DESCRIPTION- MORRISON ET AL., CELL, (1997), vol. 88, pages 287 - 298-
DESCRIPTION- M. P. TERNS; R. M. TERNS, CURR. OPIN. MICROBIOL., (2011), vol. 14, page 321-
DESCRIPTION- NAKAMURA ET AL., GENES CELLS, (201205), vol. 17, no. 5, pages 344 - 64-
DESCRIPTION- NAT.-
DESCRIPTION- NEHLS ET AL., SCIENCE, (1996), vol. 272, pages 886 - 889-
DESCRIPTION- N. G. LINTNER ET AL., J. BIOL. CHEM., (2011), vol. 286, page 21643-
DESCRIPTION- NICOUD ET AL., J. GENE MED., (2007), vol. 9, page 1015-
DESCRIPTION- NOGUCHI ET AL., DIABETES, (2003), vol. 52, no. 7, pages 1732 - 1737-
DESCRIPTION- OBERDICK ET AL., SCIENCE, (1990), vol. 248, pages 223 - 226-
DESCRIPTION- OBERHAUSE ET AL., NUCL. ACIDS RES., (1992), vol. 20, pages 533 - 538-
DESCRIPTION- OH ET AL., GENE THER, (2009), vol. 16, page 437-
DESCRIPTION- O'NEILL ET AL., PLANT J., (1993), vol. 3, pages 729 - 738-
DESCRIPTION- PARMACEK ET AL., MOL. CELL. BIOL., (1994), vol. 14, pages 1870 - 1885-
DESCRIPTION- PAVJANI ET AL., NAT. MED., (2005), vol. 11, page 797-
DESCRIPTION- PLATT ET AL., PROC. NATL. ACAD. SCI. USA, (1989), vol. 86, page 7490-
DESCRIPTION- PROC. NATL. ACAD. SCI. USA-
DESCRIPTION- RADOVICK ET AL., PROC. NATL. ACAD. SCI. USA, (1991), vol. 88, pages 3402 - 3406-
DESCRIPTION- R. BARRANGOU ET AL., SCIENCE, (2007), vol. 315, page 1709-
DESCRIPTION- R. B. DENMAN, "Using RNAFOLD to predict the activity of small catalytic RNAs", BIOTECHNIQUES, (1993), vol. 15, page 1090-
DESCRIPTION- R. E. HAURWITZ; M. JINEK; B. WIEDENHEFT; K. ZHOU; J. A. DOUDNA, SCIENCE, (2010), vol. 329, page 1355-
DESCRIPTION- ROBBINS ET AL., ANN. N.Y. ACAD. SCI., (1995), vol. 752, pages 492 - 505-
DESCRIPTION- ROLLING ET AL., HUM GENE THER, (1999), vol. 10, pages 641 - 648-
DESCRIPTION- ROSS ET AL., PROC. NATL. ACAD. SCI. USA, (1990), vol. 87, page 9590-
DESCRIPTION- R. SAPRANAUSKAS ET AL., NUCLEIC ACIDS RES., (2011), vol. 39, page 9275-
DESCRIPTION- R. WANG; G. PREAMPLUME; M. P. TERNS; R. M. TERNS; H. LI, STRUCTURE, (2011), vol. 19, page 257-
DESCRIPTION- SAISON-BEHMOARAS ET AL., EMBO J., (1991), vol. 10, pages 1111 - 1118-
DESCRIPTION- SAKAMOTO ET AL., H GENE THER, (1999), vol. 5, pages 1088 - 1097-
DESCRIPTION- SAMULSKI ET AL., J. VIR, (1989), vol. 63, pages 3822 - 3828-
DESCRIPTION- SAMULSKI ET AL., J. VIR., (1989), vol. 63, pages 3822 - 3828-
DESCRIPTION- SANGHVI ET AL.,, Antisense Research and Applications, CRC PRESS, (1993), pages 276 - 278-
DESCRIPTION- SANGHVI, Y. S., Antisense Research and Applications, CRC PRESS, (1993), pages 289 - 302-
DESCRIPTION- SARTORELLI ET AL., PROC. NATL. ACAD. SCI. USA, (1992), vol. 89, pages 4047 - 4051-
DESCRIPTION- SASAOKA ET AL., MOL. BRAIN RES., (1992), vol. 16, page 274-
DESCRIPTION- SATO ET AL., J. BIOL. CHEM., (2002), vol. 277, page 15703-
DESCRIPTION- SCHOEBER ET AL., "Conditional fast expression and function of multimeric TRPV5 channels using Shield-1", AM J PHYSIOL RENAL PHYSIOL., (200901), vol. 296, no. 1, pages F204 - 11-
DESCRIPTION- SEO ET AL., MOLEC. ENDOCRINOL, (2003), vol. 17, page 1522-
DESCRIPTION- SEO ET AL., MOLEC. ENDOCRINOL., (2003), vol. 17, page 1522-
DESCRIPTION- S. GOTTESMAN, NATURE, (2011), vol. 471, page 588-
DESCRIPTION- SHAMBLOTT ET AL., PROC. NATL. ACAD. SCI. USA, (1998), vol. 95, page 13726-
DESCRIPTION- SHAMBLOTT, M. ET AL., PROC. NATL. ACAD. SCI. USA, (1998), vol. 95, page 13726-
DESCRIPTION- SHAMBLOTT, M. ET AL., PROC. NATL. ACAD. SCI. USA, (2001), vol. 98, page 113-
DESCRIPTION- SHEA ET AL., NUCL. ACIDS RES., (1990), vol. 18, pages 3777 - 3783-
DESCRIPTION- SINGH ET AL., CHEM. COMMUN., (1998), vol. 4, pages 455 - 456-
DESCRIPTION- S. J. J. BROUNS ET AL., SCIENCE, (2008), vol. 321, page 960-
DESCRIPTION- SMITH; WATERMAN, ADV. APPL. MATH., (1981), vol. 2, pages 482 - 489-
DESCRIPTION- STAUB ET AL., NAT. BIOTECHNOL, (2000), vol. 18, pages 333 - 338-
DESCRIPTION- SVAB ET AL., PROC. NATL. ACAD. SCI. USA, (1993), vol. 90, pages 913 - 917-
DESCRIPTION- SVINARCHUK ET AL., BIOCHIMIE, (1993), vol. 75, pages 49 - 54-
DESCRIPTION- TABOR ET AL., J. BIOL. CHEM., (1999), vol. 274, page 20603-
DESCRIPTION- TAKAHASHI, CELL, (20071130), vol. 131, no. 5, pages 861 - 72-
DESCRIPTION- TAKAHASHI ET AL., J VIROL, (1999), vol. 73, pages 7812 - 7816-
DESCRIPTION- TAKAHASHI, NAT PROTOC., (2007), vol. 2, no. 12, pages 3081 - 9-
DESCRIPTION- TANKA ET AL., "Conformational variations in an infectious protein determine prion strain differences", NATURE, (20040318), vol. 428, no. 6980, pages 323 - 8-
DESCRIPTION- THOMSON ET AL., BIOL. REPROD., (1996), vol. 55, page 254-
DESCRIPTION- THOMSON ET AL., PROC. NATL. ACAD. SCI USA, (1995), vol. 92, page 7844-
DESCRIPTION- THOMSON ET AL., SCIENCE, (1998), vol. 282, page 1145-
DESCRIPTION- THOMSON, SCIENCE, (19981106), vol. 282, no. 5391, pages 1145 - 7-
DESCRIPTION- TOZZO ET AL., ENDOCRINOL, (1997), vol. 138, page 1604-
DESCRIPTION- TOZZO ET AL., ENDOCRINOL., (1997), vol. 138, page 1604-
DESCRIPTION- TREHIN ET AL., PHARM. RESEARCH, (2004), vol. 21, pages 1248 - 1256-
DESCRIPTION- VASIL, BIO/TECHNOLO, (1993), vol. 10, pages 667 - 674-
DESCRIPTION- VAVALLE ET AL., FUTURE CARDIOL., (201205), vol. 8, no. 3, pages 371 - 82-
DESCRIPTION- WAHLESTEDT ET AL., PROC. NATL. ACAD. SCI. U.S.A., (2000), vol. 97, pages 5633 - 5638-
DESCRIPTION- WAN; LEMEAUX, PLANT PHYSIOL, (1994), vol. 104, pages 37 - 48-
DESCRIPTION- WEEKS ET AL., PLANT PHYSIOL, (1993), vol. 102, pages 1077 - 1084-
DESCRIPTION- WENDER ET AL., PROC. NATL. ACAD. SCI. U.S.A, (20001121), vol. 97, no. 24, pages 13003 - 8-
DESCRIPTION- WENDER ET AL., PROC. NATL. ACAD. SCI. USA, (2000), vol. 97, pages 13003 - 13008-
DESCRIPTION- XIA ET AL., NUCLEIC ACIDS RES., (20030901), vol. 31, no. 17-
DESCRIPTION- YANG ET AL., "Titivated for destruction: the methyl degron", MOL CELL, (20121130), vol. 48, no. 4, pages 487 - 8-
DESCRIPTION- YOKOYAMA ET AL., EXP EYE RES., (1992), vol. 55, page 225-
DESCRIPTION- YOUNG ET AL., OPHTHALMOL. VIS. SCI., (2003), vol. 44, page 4076-
DESCRIPTION- YU, SCIENCE, (20071120), vol. 318, no. 5858, pages 1917 - 20-
DESCRIPTION- ZENDER ET AL., CANCER GENE THER., (2002), vol. 9, no. 6, pages 489 - 96-
DESCRIPTION- ZHANG; MADDEN, GENOME RES., (1997), vol. 7, pages 649 - 656-
OPPOSITION- AGUIRRE et al., "Genomic Copy Number Dictates a Gene -Independent Cell Response to CRISPR/Cas9 Targeting", Cancer Discovery, (20160000), vol. 6, pages 914 - 929, XP055464135-
OPPOSITION- Alberts B; Et Al, "Chapter 12. Intracellular compartments and protein sorting", Molecular Biology of the cell. 4th ed,, Garland Science, pages 671 - 676, XP055486976-
OPPOSITION- Bruce Alberts, "Molecular Biology of the Cell, 4th ed. (passage)", Molecular Biology of the Cell, (20020000), pages 401 - 402, XP055339982-
OPPOSITION- "Cheap and easy technique to snip DNA could revolutionize gene therapy", Berkeley News, (20130107), URL: http://news.berkeley.edu/2013/01/07/cheap-and-easy-technique-to-snip-dna-could-revolutionize-ene-thera, XP055206730-
OPPOSITION- Deltcheva, "Supplementary Information to CRISPR RNA maturation by trans-encoded small RNA and host factor RNase III", Nature, (20110331), pages 1 - 35, XP055458423-
OPPOSITION- FIECK et al., "Modifications of the E.coli Lac repressor for expression in eukaryotic cells: effects of nuclear signal sequences on protein activity and nuclear accumulation", Nucl. Acids Res., (19920000), vol. 29, pages 1785 - 1791, XP002095852-
OPPOSITION- HALL et al., "Effects of inert volume-excluding macromolecules on protein fiber formation. I. Equilibrium models", Biophys. Chem., (20020000), vol. 98, pages 93 - 104, XP055464108-
OPPOSITION- KIMCHI-SARFATY et al., "A 'Silent' Polymorphism in the MDR1 Gene Changes Substrate Specificity", Science, (20070000), vol. 315, pages 525 - 528, XP055464126-
OPPOSITION- KLUG, A., "The discovera of zink fingers and their applications in gene regulation and genome manipulation", Annu. Rev. Biochem., (20100000), vol. 79, pages 213 - 231, XP055536590-
OPPOSITION- "Method of the Year 2011", Nature Methods, (20120100), vol. 9, no. 1, page 1, XP055543411-
OPPOSITION- MOHR et al., "Rules for DNA target-site recognition by a lactococcal group II intron enable retargeting of the intron to specific DNA sequences", Genes & Development, (20000000), vol. 14, pages 559 - 573, XP055464117-
OPPOSITION- MOSCOU, MJ et al., "A simple cipher governs DNA recognition TAL effectors", Science, (20090000), vol. 326, page 1501, XP002599998-
OPPOSITION- PANDIKA, "Jennifer Doudna, CRISPR code killer", (20140107), URL: http://www.ozy.com/fast-forward/ill-fitting-genes/1261, XP003035502-
OPPOSITION- PANDIKA, "Jennifer Doudna, CRISPR Code Killer", ozy, (20140107), URL: www.ozy.com/rising -stars-and-provocateurs/j ennifer-doudna-crispr-code- killer/4690, XP003035502-
OPPOSITION- Rabuka et al., "Genomics redux", Catalyst Magazine, (20140000), vol. 9, no. 1, pages 18 - 20, XP055538309-
OPPOSITION- Sanders R., "Cheap and easy technique to snip DNA could revolutionize gene therapy", UC Berkeley Press Release, pages 1 - 3, URL: http://newscenter.berkelev.edu/2013/01/07/cheap-and-easy-technique-to- snip-dna-could-revolutionize-eene-therapy, XP055543406-
OPPOSITION- Stedman's Medical Dictionary, (20000000), page 601-
OPPOSITION- VAN DEN BERG et al., "Effects of macromolecular crowding on protein folding and aggregation", EMBO J., (19990000), vol. 18, no. 24, pages 6827 - 6933, XP055464113-
OPPOSITION- MAERTENS et al., "Gene optimization mechanisms: a multi- gene study reveals a high success rate of full-length human proteins expressed in Escherichia coli", Protein Sci., (20100000), vol. 19, pages 1312 - 1326, XP055441307
OPPOSITION- FEIL et al., "Regulation of Cre recombinase activity by mutated estrogen receptor ligand-binding domains", Biochem. Biophys. Res. Commun., (19970000), vol. 237, pages 752 - 757, XP026088101
OPPOSITION- CORBI et al., "Chapter 9 Synthetic Zinc Finger Transcription Factors", Zinc finger proteins, (20050000), XP055344640
OPPOSITION- CORBI et al., "Chapter 9 ynthetic Zinc Finger Transcription Factors", Zinc finger proteins: from atomic contact to cellular function, Landes Bioscience, (20050000), pages 47 - 55, XP055344640
OPPOSITION- XU et al., "Efficient genome engineering in eukaryotes using Cas9 from Streptococcus thermophilus", Cell . Mol. Life Sci., (20140000), vol. 72, no. 2, pages 383 - 399, XP035419503
OPPOSITION- MOJICA, F.J. et al., "Intervening Sequences of Regularly Spaced Prokaryotic Repeats Derive from Foreign Genetic Elements", J. Mol. Evol., (20050000), vol. 60, pages 174 - 182, XP019363173
OPPOSITION- MAHFOUZ et al., "Targeted transcriptional repression using a chimeric TALE-SRDX repressor protein", Plant Mol. Biol., (20120000), vol. 78, pages 311 - 321, XP035003111
OPPOSITION- MAHFOUZ et al., "Targeted transcriptional repression using a chimeric TALE-SRDX repressor protein", Plant Molecular Biology, (20120000), vol. 78, no. 3, pages 311 - 321, XP035003111
OPPOSITION- LI et al., "Rapid and highly efficient construction of TALE-based transcriptional regulators and nucleases for genome modification", Plant Mol. Biol., (20120000), vol. 78, pages 407 - 416, XP035014466
OPPOSITION- HALL et al., "Effects of inert volume-excluding macromolecules on protein fiber formation. II. Kinetic models for nucleated fiber growth", Biophys. Chem., (20040000), vol. 107, pages 299 - 316, XP055464109
OPPOSITION- QI et al., "Repurposing CRISPR as an RNA-Guided Platform for Sequence-Specific Control of Gene Expression", Cell, (20130000), vol. 152, no. 5, pages 1173 - 1183, XP055299671
OPPOSITION- QI, L. S. et al., "Repurposing CRISPR as an RNA-Guided Platform for Sequence-Specific Control of Gene Expression", Cell, (20130000), vol. 152, pages 1173 - 1183, XP055299671
OPPOSITION- NISHIMASU et al., "Crystal structure of Cas9 in complex with guide RNA and target DNA", Cell, (20140000), vol. 1565, pages 935 - 949, XP055423859
OPPOSITION- NISHIMASU et al., "Crystal Structure of Cas9 in Complex with Guide RNA and Target DNA", Cell, (20140000), vol. 156, no. 5, pages 935 - 949, XP028622533
OPPOSITION- BURNETT et al., "RNA-based therapeutics: current progress and future prospects", Chemistry & Biology, (20120000), vol. 19, pages 60 - 71, XP055087578
OPPOSITION- PAPWORTH et al., "Designer zinc-finger proteins and their applications", Gene, (20060000), vol. 366, no. 1, pages 27 - 38, XP005282076
OPPOSITION- MEI et al., "Recent Progress in CRISPR/Cas9 Technology", J. Genetics and Genomics, (20160000), vol. 43, pages 63 - 75, XP029434259
OPPOSITION- MEI, YUE et al., "Recent Progress in CRISPR/Cas9 Technology", Genomics, (20160000), vol. 43, pages 63 - 72, XP029434259
OPPOSITION- MA et al., "Single-Stranded DNA Cleavage by Divergent CRISPR-Cas9 Enzymes", Molecular Cell, (20150000), vol. 60, pages 398 - 407, XP055448872
OPPOSITION- LEENAY et al., "Identifying and Visualizing Functional PAM Diversity across CRISPR- Cas Systems", Mol. Cell, (20160000), vol. 62, pages 1 - 11, XP029496719
OPPOSITION- LEENAY et al., "Identifying and visualizing functional PAM diversity across CRISPR-Cas systems", Molecular Cell, (20160000), vol. 61, pages 1 - 11, XP029496719
OPPOSITION- LEENAY et al., "Identifying and Visualizing Functional PAM Diversity across CRISPR-Cas Systems", Molecular Cell, (20160000), vol. 62, pages 137 - 147, XP029496719
OPPOSITION- MAURO et al., "A critical analysis of codon optimization in human therapeutics", Trends Mol Med., (20140000), vol. 20, no. 11, pages 604 - 613, XP055391316
OPPOSITION- Syandan Chakraborty et al, "A CRISPR/Cas9-Based System for Reprogramming Cell Lineage Specification", STEM CELL REPORTS, (20141201), vol. 3, no. 6, pages 940 - 947, XP055389295
OPPOSITION- GAJ et al., "ZFN, TALEN, and CRISPR/Cas-based methods for genome engineering", Trends in Biotechnology, (20130000), vol. 31, no. 7, pages 397 - 405, XP028571313
OPPOSITION- SNOWDEN A. W. et al., "Gene-specific targeting of H3K9 methylation is sufficient for initiating repression in vivo", Curr. Biol., (20021221), vol. 12, no. 24, pages 2159 - 2166, XP009157323
OPPOSITION- SNOWDEN et al., "Gene -specific targeting of H3K9 methylation is sufficient for initiating repression in vivo", Current biology, (20020000), vol. 12, pages 2159 - 2166, XP009157323
OPPOSITION- SNOWDEN et al., "Gene-specific targeting of H3K9 methylation is sufficient for initiating repression in vivo", Current Biology, (20020000), vol. 1, no. 24, pages 2159 - 2166, XP009157323
OPPOSITION- MARTIN, "Requirement for GroEL/GroES-Dependent Protein Folding under Nonpermissive Conditions of Macromolecular Crowding", Biochemistry, (20020000), vol. 41, pages 5050 - 5055, XP055464111
OPPOSITION- NOMURA et al., "In vivo site-specific DNA methylation with a designed sequence-enabled DNA methylase", J. Am. Chem. Soc., (20070000), vol. 129, pages 8676 - 8677, XP055344661
OPPOSITION- NOMURA et al., "In Vivo Site-Specific DNA Methylation with a Designed Sequence-Enabled DNA Methylase", Journal of the American Chemical Society, (20070000), vol. 129, no. 28, pages 8676 - 8677, XP055344661
OPPOSITION- CARROLL, D., "Progress and prospects: Zinc-finger nucleases as gene therapy agents", Gene Ther., (20080000), vol. 15, no. 22, pages 1463 - 1468, XP055041104
OPPOSITION- CARROLL, "Progress and prospects: Zinc-finger nucleases as gene therapy agents", Gene Ther., (20080000), vol. 15, pages 1463 - 1468, XP055041104
OPPOSITION- ESVELT et al., "Genome-scale engineering for systems and synthetic biology", Molecular Systems Biol, (20130901), vol. 641, pages 1 - 17, XP055339996
OPPOSITION- ESVELT et al., "Genome-scale engineering for systems and synthetic biology", Molecular Systems Biology, (20130000), vol. 9, pages 1 - 17, XP055339996
OPPOSITION- ESVELT KM et al., "Genome-scale engineering for systems and synthetic biology", Molecular Systems Biology, (20130000), vol. 9, no. 641, pages 1 - 17, XP055339996
OPPOSITION- CARROLL, "A CRISPR Approach to Gene Targeting", Molecular Therapy, vol. 20, no. 9, pages 1658 - 1660, XP055106489
OPPOSITION- DELTCHEVA, E. et al., "CRISPR RNA maturation by trans-encoded small RNA and host factor RNase III", Nature, (20110000), vol. 471, pages 602 - 607, XP055308803
OPPOSITION- DELTCHEVA et al., "CRISPR RNA maturation by trans-encoded small RNA and host factor RNase III", Nature, (20110000), vol. 471, pages 602 - 607+ 2, XP055308803
OPPOSITION- DELTCHEVA et al., "CRISPR RNA maturation by trans-encoded small RNA and host factor RNase III", Nature, (20110000), vol. 471, pages 602 - 607, XP055068535
OPPOSITION- ANDERS et al., "Structural basis of PAM-dependent target DNA recognition by the Cas9 endonuclease", Europe PMC Funders Group Author Manuscript, (20140925), vol. 513, no. 7519, pages 1 - 22, XP055538018
OPPOSITION- ANDERS et al., "Structural basis of PAM-dependent target DNA recognition by the Cas9 endonuclease", Nature, (20140000), vol. 513, pages 569 - 573, XP055240929
OPPOSITION- RAN et al., "In vivo genome editing using Staphylococcus aureus Cas9", Nature, (20150000), vol. 520, pages 186 - 191, XP055206733
OPPOSITION- MILLER et al., "A TALE nuclease architecture for efficient genome editing", Nat. Biotechnol., (20110000), vol. 29, pages 143 - 150, XP002685898
OPPOSITION- MILLER, J.C. et al., "A TALE nuclease architecture for efficient genome editing", Nat. Biotechnol., (20110000), vol. 29, pages 143 - 150, XP002685898
OPPOSITION- ZHANG et al., "Efficient construction of sequence-specific TAL effectors for modulating mammalian transcription", Nat. Biotechnol., (20110000), vol. 29, pages 149 - 153, XP055005146
OPPOSITION- ZHANG et al., "Efficient construction of sequence-specific TAL effectors for modulating mammalian transcription", Nature Biotechnology advance online publication, (20110000), vol. 29, no. 2, pages 1 - 6, XP055458270
OPPOSITION- BARRANGOU, "RNA-mediated programmable DNA cleavage", Nat. Biotechnol., (20120000), vol. 30, no. 9, pages 836 - 838, XP055118675
OPPOSITION- HWANG et al., "Efficient In Vivo Genome Editing Using RNA-Guided Nucleases", HHS Public Access Author Manuscript, (20130000), vol. 31, pages 1 - 12, XP055538294
OPPOSITION- CHO et al., "Targeted genome engineering in human cells with the Cas9 RNA- guided endonuclease", Nat. Biotechnol., (20130000), vol. 313, pages 230 - 232, XP002699850
OPPOSITION- MALI, P. et al., "CAS9 transcriptional activators for target specificity screening and paired nickases for cooperative genome engineering", Nat Biotechnol, (20130000), vol. 31, doi:10.1038/nbt.2675, pages 833 - 838, XP055294730
OPPOSITION- GUILINGER, J. et al., "Fusion of catalytically inactive Cas9 to Fokl nuclease improves the specificity of genome modification", Nat Biotechnol, (20140000), vol. 32, doi:10.1038/nbt.2909, pages 577 - 582, XP055157221
OPPOSITION- CONG et al., "Comprehensive Interrogation of Natural TALE DNA Binding Modules and Transcriptional Repressor Domains", Nature Commun, (20120000), vol. 3, pages 1 - 9, XP002700145
OPPOSITION- CONG et al., "Comprehensive interrogation of natural TALE DNA-binding modules and transcriptional repressor domains", Nature Communications, (20120000), vol. 3, pages 1 - 6, XP002700145
OPPOSITION- CONG, L. et al., "Comprehensive interrogation of natural TALE DNA-binding modules and transcriptional repressor domains", Nature Comm, (20120000), vol. 3, no. 968, pages 1 - 6, XP002700145
OPPOSITION- CHAVEZ, A. et al., "Highly efficient Cas9-mediated transcriptional programming", Nat Methods, (20150000), vol. 12, doi:10.1038/nmeth.3312, pages 326 - 328, XP055694813
OPPOSITION- SANJANA et al., "A Transcription Activator-Like Effector (TALE) Toolbox for Genome Engineering", Nat. Proto., (20110000), vol. 7, pages 171 - 192, XP009170390
OPPOSITION- SANJANA et al., "A transcription activator-like effector toolbox for genome engineering", Nature Protocols, (20120000), vol. 7, no. 1, pages 171 - 192, XP009170390
OPPOSITION- SANJANA, N. E. et al., "A transcription activator-like effector toolbox for genome engineering", Nature Prot., (20120000), vol. 7, no. 1, pages 171 - 192, XP009170390
OPPOSITION- URNOV et al., "Genome editing with engineered zinc finger nucleases", Nat. Rev. Genet., (20100000), vol. 11, pages 636 - 646, XP008150557
OPPOSITION- URNOV, F. D. et al., "Genome editing with engineered zinc finger nucleases", Nature Rev. Genet., (20101106), pages 636 - 646, XP055198280
OPPOSITION- URNOV, F. et al., "Genome editing with engineered zinc finger nucleases", Nat. Rev. Gene, (20100000), vol. 11, pages 636 - 646, XP055198280
OPPOSITION- DOMINGUEZ et al., "Beyond editing: repurposing CRISPR-Cas9 for precision genome regulation and interrogation", Nat. Rev. Mol. Cell . Biol., (20160000), vol. 17, pages 5 - 15, XP055345154
OPPOSITION- JOUNG et al., "TALENS: a widely applicable technology for targeted genome editing", Nat. Rev. Mol. Cell Biol., (20120000), vol. 14, pages 49 - 55, XP055282847
OPPOSITION- JOUNG et al, "'TALENS: A WIDELY APPLICABLE TECHNOLOGY FOR TARGETED GENOME EDITING", Nat. Rev. Mol. Cell . Biol., (20130100), vol. 14, no. 1, pages 49 - 55, XP055282847
OPPOSITION- JOUNG et al., "TALENs: a widely applicable technology for targeted genome editing", Nature Rev. Mol Cell Biol., (20130100), vol. 14, no. 1, pages 49 - 55, XP055282847
OPPOSITION- JOUNG, J. et al., "TALENs: a widely applicable technology for targeted genome editing", Nat. Rev. Mol. Cell Biol., (20120000), vol. 14, pages 49 - 55, XP055282847
OPPOSITION- MAKAROVA, K.S. et al., "An Updated Evolutionary Classification of CRISPR- Cas Systems", Nature, (20150000), vol. 13, pages 722 - 736, XP055271841
OPPOSITION- BEERLI et al., "Positive and negative regulation of endogenous genes by designed transcription factors", PNAS, (20000000), vol. 97, no. 4, pages 1495 - 1500, XP001050653
OPPOSITION- BEERLI et al., "Positive and negative regulation of endogenous genes by designed transcription factors", PNAS, (20000000), vol. 97, pages 1495 - 1500, XP002188512
OPPOSITION- BEERLI, R. R. et al., "POSITIVE AND NEGATIVE REGULATION OF ENDOGENOUS GENES BY DESIGNED TRANSCRIPTION FACTORS", Proc. Natl. Acad. Sci. USA, (20000000), vol. 97, pages 1495 - 1500, XP001050653
OPPOSITION- GRYLLOS et al., "The CsrR/CsrS two-component system of group A Streptococcus responds to environmental Mg2+", PNAS, (20030000), vol. 100, pages 4227 - 4232, XP055464121
OPPOSITION- GORDLEY et al., "Synthesis of programmable integrases", PNAS, (20090000), vol. 106, no. 13, pages 5053 - 5058, XP002544501
OPPOSITION- GORDLEY et al., "Synthesis of programmable integrases", PNAS, (20090000), vol. 106, pages 5053 - 5058, XP002544501
OPPOSITION- GORDLEY, R. M. et al., "Synthesis of programmable integrases", Proc. Natl. Acad. Sci. USA, (20090000), vol. 106, no. 13, pages 5053 - 5058, XP002544501
OPPOSITION- GASIUNAS et al., "Cas9-crRNA ribonucleoprotein complex mediates specif- ic DNA cleavage for adaptive immunity in bacteria", PNAS, (20120000), vol. 109, no. 39, pages E2579 - E2586, XP055068588
OPPOSITION- GASIUNAS et al., "Cas9-crRNA ribonucleoprotein complex mediates specific DNA cleavage for adaptive immunity in bacteria", PNAS, (20120000), vol. 109, pages E2579 - E2586, XP055068588
OPPOSITION- GASIUNAS, G. et al., "Cas9-crRNA ribonucleoprotein complex mediates specific DNA cleavage for adaptive immunity in bacteria", PNAS, (20120000), vol. 109, no. 39, pages E2579 - E2586, XP055068588
OPPOSITION- AKOPIAN et al., "Chimeric recombinases with designed DNA sequence recognition", PNAS, (20030000), vol. 100, no. 15, pages 8688 - 8691, XP002289806
OPPOSITION- AKOPIAN et al., "Chimeric recombinases with designed DNA sequence recognition", PNAS, (20030000), vol. 100, pages 8688 - 8691, XP002289806
OPPOSITION- AKOPIAN et al., "Chimeric recombinases with designed DNA sequence recognition", Proc. Natl. Acad. Sci. USA, (20030000), vol. 100, pages 8688 - 8691, XP002289806
OPPOSITION- TAN et al., "Zinc-finger protein-targeted gene regulation: Genomewide single-gene specificity", PNAS, (20030000), vol. 100, no. 21, pages 11997 - 12002, XP002541834
OPPOSITION- TAN et al., "Zinc-finger protein-targeted gene regulation: genomewide single- gene specificity", PNAS, (20030000), vol. 100, pages 11997 - 12002, XP002541834
OPPOSITION- PAPWORTH et al., "Inhibition of herpes simplex virus 1 gene expression by designer zinc-finger transcription factors", PNAS, (20030000), vol. 100, no. 4, pages 1621 - 1626, XP002514674
OPPOSITION- PAPWORTH et al., "Inhibition of herpes simplex virus 1 gene expression by designer zinc-finger transcription factors", PNAS, (20030000), vol. 100, pages 1621 - 1626, XP002514674
OPPOSITION- BEERLI et al., "Toward controlling gene expression at will: Specific regulation of the erbB-2/HER-2 promoter by using polydactyl zinc finger proteins constructed from modular building blocks", PNAS, (19980000), vol. 95, no. 25, pages 14628 - 14633, XP002187156
OPPOSITION- BEERLI et al., "Toward controlling gene expression at will: specific regulation of the erbB-2/HER-2 promoter by using polydactyl zinc finger proteins constructed from modular building blocks", PNAS, (19980000), vol. 95, pages 14628 - 14633, XP002187156
OPPOSITION- BEERLI, R. R. et al., "Toward controlling gene expression at will: Specific regulation of the erbB-2/HER-2 promoter by using polydactyl zinc finger proteins constructed from modular building blocks", Proc. Natl. Acad. Sci. USA, (19980000), vol. 95, pages 14628 - 14633, XP002187156
OPPOSITION- HANDEL et al., "Versatile and efficient genome editing in human cells by combining zinc-finger nucleases with adeno-associated viral vectors", Human Gene Ther, (20120000), vol. 23, pages 321 - 329, XP002730956
OPPOSITION- LACASSE et al., "Nuclear localization signals overlap DNA- or RNA-binding domains in nucleic acid-bindin proteins", Nucleic Acids Research, (19950000), vol. 23, pages 1647 - 1656, XP055464125
OPPOSITION- CERMAK T et al., "Efficient design and assembly of custom TALEN and other TAL effector-based constructs for DNA targeting", Nucleic Acid research, (20110000), vol. 39, no. 12, XP002659530
OPPOSITION- SAPRANAUSKAS, "The Streptococcus thermophilus CRISPR/Cas system provides immunity in Escherichia coli", Nucl. Acids Res., (20110000), vol. 39, pages 9275 - 9282, XP055011535
OPPOSITION- FONFARA et al., "Phylogeny of Cas9 determines functional exchangeability of dual-RNA and Cas9 among orthologous type II CRISPR-Cas systems", Nucleic Acids Research, (20140000), vol. 42, no. 4, pages 2577 - 2590, XP055097853
OPPOSITION- GAO, X. et al., "Comparison of TALE designer transcription factors and the CRISPR/dCas9 in regulation of gene expression by targeting enhancers", Nucleic Acids Research, (20140000), vol. 42, no. 20, doi:10.1093/nar/gku836, page e155, XP055194437
OPPOSITION- POURCEL, C. et al., "CRISPR elements in Yersinia pestis acquire new repeats by preferential uptake of bacteriophage DNA, and provide additional tools for evolutionary studies", JOURNAL OF GENERAL MICROBIOLOGY, (20050000), vol. 151, pages 653 - 663, XP002460396
OPPOSITION- BOLOTIN, A. et al., "Clustered regularly interspaced short palindrome repeats (CRISPRs) have spacers of extrachromosomal origin", Microbiology, (20050000), vol. 151, pages 2551 - 2561, XP002424872
OPPOSITION- IHRY et al., "P53 toxicity is a hurdle to CRISPR/CAS9 screening and engineering in human pluripotent stem cells", BIORXIV, (20170000), XP055464138
OPPOSITION- PADDISON et al., "Short hairpin RNAs (shRNAs) induce sequence-specific silencing in mammalian cells", Genes & Development, (20020000), vol. 16, pages 948 - 958, XP002204653
OPPOSITION- PENG, R. et al., "Potential pitfalls of CRISPR/Cas9-mediated genome editing", FEBS Journal, (20160000), vol. 283, pages 1218 - 1231, XP055377561
OPPOSITION- BLANCAFORT et al., "Designing transcription factor architectures for drug discovery", Molecular Pharmacol., (20040000), vol. 66, pages 1361 - 1371, XP055015595
OPPOSITION- BLANCAFORT et al., "Designing Transcription Factor Architectures for Drug Discovery", Molecular pharmacology, (20040000), vol. 66, no. 6, pages 1361 - 1371, XP055015595
OPPOSITION- BLANCAFORT, P. et al., "Designing Transcription Factor Architectures for Drug Discovery", Mol. Pharmacol., (20040000), vol. 66, no. 6, pages 1361 - 1371, XP055015595
OPPOSITION- BARRANGOU, R. et al., "CRISPR provides acquired resistance against viruses in prokaryotes", Science, (20070000), vol. 315, pages 1709 - 1712, XP002428071
OPPOSITION- BROUNS, S. J. J. et al., "Small CRISPR RNAs guide antiviral defense in prokaryotes", Science, (20080000), vol. 321, pages 960 - 964, XP002559962
OPPOSITION- MARRAFFINI, L.A. et al., "CRISPR interference limits horizontal gene transfer in Staphylococci by targeting DNA", NIH Public Acces Author Manuscript, (20080000), vol. 322, pages 1843 - 1845, XP055463182
OPPOSITION- BOGDANOVE et al., "TAL Effectors: Customizable Proteins for DNA Targeting", Science, (20110930), vol. 333, no. 6051, pages 1843 - 1846, XP055093385
OPPOSITION- JINEK et al., "A Programmable Dual-RNA-Guided DNA Endonuclease in Adaptive Bacterial Immunity", including Supplementary Materials , Sci- ence, (20120817), vol. 337, XP055299674
OPPOSITION- JINEK et al., "A programmable Dual-RNA-Guided DNA Endonuclease in Adaptive Bacterial Immunity", Science, (20120000), vol. 337, pages 816 - 821, XP055299674
OPPOSITION- JINEK, M et al., "A Programmable Dual-RNA-Guided DNA Endonuclease in Adaptive Bacterial Immunity", Science, (20120000), vol. 337, pages 816 - 821, XP055299674
OPPOSITION- JINEK, M. et al., "A Programmable Dual-RNA-Guided DNA Endonuclease in Adaptive Bacterial Immunity", Science, (20120628), vol. 337, pages 816 - 821, XP055067740
OPPOSITION- CONG et al., "Multiplex Genome Engineering Using CRISPR/Cas Systems", including Supplementary Materials, Science, (20130103), vol. 339, no. 6121, XP055067744
OPPOSITION- CONG et al., "Multiplex Genome Engineering Using CRISPR/Cas Systems", Science, (20130000), vol. 339, pages 819 - 823, XP055067741
OPPOSITION- Cong et al., "Supplementary Material to : Multiplex Genome Engineering Using CRISPR/Cas Systems", SCIENCE,, (20120705), pages 1 - 28, XP055067744
OPPOSITION- CONG, L. et al., "Multiplex Genome Engineering Using CRISPR/Cas Systems", Science, (20130000), vol. 339, pages 819 - 823, XP055181426
OPPOSITION- CONG, L. et al., "Multiplex Genome Engineering Using CRISPR/Cas Systems", Science, (20130215), vol. 339, no. 6121, pages 819 - 23, XP055181426
OPPOSITION- MALI et al., "RNA-Guided Human Genome Engineering via Cas9", Science, (20130000), vol. 339, pages 823 - 826, XP055111247
OPPOSITION- MALI et al., "RNA-Guided Human Genome Engineering via Cas9", Science, (20130103), vol. 339, pages 823 - 826, XP055111247
OPPOSITION- Mali et al., "Supplementary Materials for RNA-Guided Human Genome Engineering via Cas9", Science, (20130215), pages 1 - 36, XP002723674
OPPOSITION- MALI, P. et al., "RNA Guided Human Genome Engineering via Cas9", Science, (20130000), vol. 339, no. 6121, pages 823 - 826, XP055469277
OPPOSITION- MALI, P. et al., "RNA-Guided Human Genome Engineering via Cas9", Science, (20130000), vol. 339, pages 823 - 826, XP055111247
OPPOSITION- DOUDNA et al., "The new frontier of genome engineering with CRISPR-Cas9", Science, (20140000), vol. 346, no. 6213, XP055162699
OPPOSITION- JIANG et al., "Successful transient expression of Cas9 and single guide RNA genes in Chlamydomonas reinhardtii", Eukaryot Cell, (20140000), vol. 13, pages 1465 - 1469, XP055435460
OPPOSITION- NEEF et al., "Deletion of a cation transporter promotes lysis in Streptococcus pneumoniae", Infection and immunity, (20110000), vol. 79, pages 2314 - 2323, XP055464123
OPPOSITION- ISHINO Y et al., "Nucleotide sequence of the iap gene, responsible for alkaline phosphatase isozyme conversion in Escherichia coli, and identification of the gene product", Journal of Bacteriology, (19870000), vol. 169, no. 12, pages 5429 - 5433, XP055463130
OPPOSITION- TAN et al., "Human immunodeficiency virus type 1 incorporated with fusion proteins consisting of integrase and the designed polydactyl zinc finger protein E2C can bias integration of viral DNA into a predetermined chromosomal region in human cells", Journal of virology, (20060000), vol. 80, pages 1939 - 1948, XP055344657
OPPOSITION- TAN et al., "Human Immunodeficiency Virus Type 1 Incorporated with Fusion Proteins Consisting of Integrase and the Designed Polydactyl Zinc Finger Protein E2C Can Bias Integration of Viral DNA into a Predetermined Chromosomal Region in Human Cells", J Virol, (20060000), vol. 80, no. 4, pages 1939 - 1948, XP055344657
OPPOSITION- WANG, H. et al., "CRISPR/Cas9 in Genome Editing and Beyond", Annu. Rev. Biochem., (20160000), vol. 85, pages 227 - 64, XP055290311
OPPOSITION- JIANG, F. et al., "CRISPR-Cas9 Structures and Mechanisms", Annu. Rev. Biophys., (20170000), vol. 46, pages 505 - 529, XP055362997
OPPOSITION- ENYEART et al., "Biotechnological applications of mobile group II introns and their reverse transcriptases", RNA-seq, and non-coding RNA analysis'' Mob DNA, (20140000), vol. 5, no. 1, pages 1 - 19, XP021175117
OPPOSITION- MINTON, "How can biochemical reactions within cells differ from those in test tubes?", J. Cell . Sci., (20060000), vol. 119, pages 2862 - 2866+1pp, XP055464107
OPPOSITION- PRUETT-MILLER et al., "Attenuation of zinc finger nuclease toxicity by small-molecule regulation of protein levels", PLoS Genetics, (20090000), vol. 5, no. 2, pages 1 - 11, XP055089245
OPPOSITION- MASTROIANNI et al., "Group II Intron-Based Gene Targeting Reactions in Eukaryotes", PLoS One, (20080000), vol. 3, no. 9, pages 1 - 15, XP055149290
OPPOSITION- GEI(3LER et al., "Transcriptional Activators of Human Genes with Programmable DNA-Specificity", PLOS ONE, (20110000), vol. 6, no. 5, pages 1 - 7, XP055077345
OPPOSITION- LAWHORN, I.E.B. et al., "Evaluation of sgRNA Target Sites for CRISPR-Mediated Repression of TP53", PLoS ONE, (20140000), vol. 9, no. 11, doi:10.1371/journal.pone.0113232, page e113232, XP055194435
OPPOSITION- CHRISTIAN et al., "Targeting DNA Double-Strand Breaks with TAL Effector Nucleases (plus supporting information)", Genetics, (20100000), vol. 186, pages 757 - S1, XP002632806
OPPOSITION- CARROLL, "Genome Engineering With Zinc-Finger Nucleases", Genetics, (20110000), vol. 188, pages 773 - 782, XP055036700
OPPOSITION- RICHTER, C. et al., "Function and Regulation of Clustered Regularly Interspaced Short Palindromic Repeats (CRISPR) / CRISPR Associated (Cas) Systems", Viruses, (20120000), vol. 4, no. 12, pages 2291 - 2311, XP055299758
OPPOSITION- RICHTER et al., "Function and Regulation of Clustered Regularly Interspaced Short Palindromic Repeats (CRISPR) / CRISPR Associated (Cas) Systems", Viruses, (20120000), vol. 4, pages 2291 - 2311, XP055299758
OPPOSITION- RIVENBARK, A. G. et al., "Epigenetic reprogramming of cancer cells via targeted DNA methylation", Epigenetics, (20120000), vol. 7, no. 4, pages 350 - 360, XP002756482
OPPOSITION- RIVENBARK et al., "Epigenetic reprogramming of cancer cells via targeted DNA methylation", Epigenetics, (20120000), vol. 7, no. 4, pages 350 - 360, XP002756482
OPPOSITION- RIVENBARK et al., "Epigenetic reprogramming of cancer cells via targeted DNA methylation", Epigenetics, (20120000), vol. 7, pages 350 - 360, XP002756482
OPPOSITION- KARVELIS et al., "crRNA and tracrRNA guide Cas9-mediated DNA interfer- ence in Streptococcus thermophilus", RNA Biology, (20130500), vol. 10, no. 5, pages 841 - 851, XP055202455
OPPOSITION- CHYLINSKI, K. et al., "The tracrRNA and Cas9 families of type II CRISPR-Cas immunity systems", RNA Biol., (20130000), vol. 10, no. 5, pages 726 - 737, XP055116068
OPPOSITION- JINEK et al., "RNA-programmed genome editing in human cells", eLife, (20130000), vol. 2, pages 1 - 9, XP002699851
OPPOSITION- JINEK et al., "RNA-programmed genome editing in human cells", eLife 2013, (20130129), page e00471, XP002699851
OPPOSITION- JINEK, M. et al., "RNA-programmed genome editing in human cells", eLife, (20130000), pages 1 - 9, XP002699851
OPPOSITION- JINEK M et al., "RNA-programmed genome editing in human cells", eLife, (20130107), pages 1 - 9, URL: http://news.berkelev.edu/ 2013/01/07 /cheap-and-easv- technique-to-snip-dna-could-revolutionize-qene-therapv, XP002699851
SEARCH- PAPWORTH M ET AL, "Designer zinc-finger proteins and their applications", GENE, ELSEVIER, AMSTERDAM, NL, vol. 366, no. 1, doi:10.1016/J.GENE.2005.09.011, ISSN 0378-1119, (20060117), pages 27 - 38, (20060117), XP024934269 [A] 1-21 * the whole document *
SEARCH- ELITZA DELTCHEVA ET AL, "CRISPR RNA maturation by trans-encoded small RNA and host factor RNase III", NATURE, (20110331), vol. 471, no. 7340, doi:10.1038/nature09886, ISSN 0028-0836, pages 602 - 607, XP055308803 [A] 1-21 * the whole document *
SEARCH- BLAKE WIEDENHEFT ET AL, "RNA-guided genetic silencing systems in bacteria and archaea", NATURE, (20120215), vol. 482, no. 7385, doi:10.1038/nature10886, ISSN 0028-0836, pages 331 - 338, XP055116249 [A] 1-21 * the whole document *
SEARCH- MAKAROVA KIRA S ET AL, "Evolution and classification of the CRISPR-Cas systems", NATURE REVIEWS. MICROBIO, NATURE PUBLISHING GROUP, GB, (20110509), vol. 9, no. 6, doi:10.1038/NRMICRO2577, ISSN 1740-1526, pages 467 - 477, XP009155547 [A] 1-21 * the whole document *
SEARCH- M. JINEK ET AL, "A Programmable Dual-RNA-Guided DNA Endonuclease in Adaptive Bacterial Immunity", SCIENCE, (20120817), vol. 337, no. 6096, doi:10.1126/science.1225829, ISSN 0036-8075, pages 816 - 821, XP055299674 [AP] 1-21 * the whole document *
SEARCH- M. JINEK ET AL, "A Programmable Dual-RNA-Guided DNA Endonuclease in Adaptive Bacterial Immunity (Supplementary Material)", SCIENCE, US, (20120628), vol. 337, no. 6096, doi:10.1126/science.1225829, ISSN 0036-8075, page 821, XP055067747 [P] * the whole document *
SEARCH- L. CONG ET AL, "Multiplex Genome Engineering Using CRISPR/Cas Systems", SCIENCE, (20130215), vol. 339, no. 6121, doi:10.1126/science.1231143, ISSN 0036-8075, pages 819 - 823, XP055067741 [AP] 1-21 * the whole document *
SEARCH- L. CONG ET AL, "Supplementary Material to : Multiplex Genome Engineering Using CRISPR/Cas Systems", SCIENCE, (20130103), vol. 339, no. 6121, doi:10.1126/science.1231143, ISSN 0036-8075, pages 819 - 823, XP055067744 [P] * the whole document *
SEARCH- P. MALI ET AL, "RNA-Guided Human Genome Engineering via Cas9", SCIENCE, (20130103), vol. 339, no. 6121, doi:10.1126/science.1232033, ISSN 0036-8075, pages 823 - 826, XP055111247 [AP] 1-21 * the whole document *
SEARCH- P. Mali ET AL, "Supplementary information for RNA-Guided Human Genome Engineering via Cas9 (XP 055337932)", Science, (20130103), vol. 339, no. 6121, doi:10.1126/science.1232033, ISSN 0036-8075, pages 823 - 826, XP055403737 [P] * the whole document *
SEARCH- MARTIN JINEK ET AL, "RNA-programmed genome editing in human cells", E-LIFE, SAM LTD, GB, vol. 2, doi:10.7554/ELIFE.00471, ISSN 2050-084X, (20130129), pages e00471 - 1, (20130628), XP002699851 [AP] 1-21 * the whole document *
SEARCH- Martin Jinek ET AL, "RNA-programmed genome editing in human cells (Figures and figure supplements)", eLife, (20130129), vol. 2, doi:10.7554/eLife.00471, XP055167481 [P] * the whole document *

Download Citation Report

Get a free citation report including examiner, opposition, and international search citations.

Get Citation Report

Dossier Documents

The dossier documents provide a comprehensive record of the patent’s prosecution history - including filings, correspondence, and decisions made by patent offices - and are crucial for understanding the patent’s legal journey and any challenges it may have faced during examination.

  • Date

    Description

  • Get instant alerts for new documents