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| United States Patent | 8,697,359 |
| Zhang | April 15, 2014 |
| **Please see images for: ( Certificate of Correction ) ** |
The invention provides for systems, methods, and compositions for altering expression of target gene sequences and related gene products. Provided are vectors and vector systems, some of which encode one or more components of a CRISPR complex, as well as methods for the design and use of such vectors. Also provided are methods of directing CRISPR complex formation in eukaryotic cells and methods for utilizing the CRISPR-Cas system.
| Inventors: | Zhang; Feng (Cambridge, MA) | ||||||||||
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| Applicant: |
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| Assignee: |
The Broad Institute, Inc.
(Cambridge,
MA)
Massachusetts Institute of Technology (Cambridge, MA) |
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| Family ID: | 50441380 | ||||||||||
| Appl. No.: | 14/054,414 | ||||||||||
| Filed: | October 15, 2013 |
| Application Number | Filing Date | Patent Number | Issue Date | ||
|---|---|---|---|---|---|
| 61842322 | Jul 2, 2013 | ||||
| 61736527 | Dec 12, 2012 | ||||
| 61748427 | Jan 2, 2013 | ||||
| 61791409 | Mar 15, 2013 | ||||
| 61835931 | Jun 17, 2013 | ||||
| Current U.S. Class: | 435/6.1; 435/195; 424/94.1; 536/23.1; 424/94.61; 435/6.13; 536/23.7; 536/22.1; 536/24.1; 435/320.1; 435/220; 424/94.6; 435/199; 536/23.2 |
| Current CPC Class: | C12N 15/85 (20130101); C12N 15/902 (20130101); C12Q 1/68 (20130101); C12N 9/96 (20130101); C12N 9/22 (20130101); C12N 15/907 (20130101); C12N 15/102 (20130101); C12N 15/111 (20130101); C12N 15/63 (20130101); A61K 38/43 (20130101); C12N 2800/90 (20130101); C12N 2310/20 (20170501); C12N 2310/10 (20130101); C12N 15/00 (20130101); C12N 9/52 (20130101); C12N 2800/80 (20130101); C12N 2800/30 (20130101); A61K 38/47 (20130101); C12N 15/1082 (20130101); A61K 38/46 (20130101); C12N 9/14 (20130101) |
| Current International Class: | C12Q 1/68 (20060101); C12N 15/00 (20060101); C12N 9/14 (20060101); C07H 21/02 (20060101); C07H 21/04 (20060101); A61K 38/43 (20060101); A61K 38/46 (20060101); A61K 38/47 (20060101); C12N 9/52 (20060101); C12N 9/22 (20060101) |
| 2010/0076057 | March 2010 | Sontheimer et al. |
| 2011/0189776 | August 2011 | Terns et al. |
| 2011/0223638 | September 2011 | Wiedenheft et al. |
| 2013/0130248 | May 2013 | Haurwitz et al. |
| WO/2008/108989 | Sep 2008 | WO | |||
| WO/2010/054108 | May 2010 | WO | |||
| WO/2012/164565 | Dec 2012 | WO | |||
| WO/2013/098244 | Jul 2013 | WO | |||
| WO/2013/176772 | Nov 2013 | WO | |||
Makarova et al., "Evolution and classification of the CRISPR-Cas systems" 9(6) Nature Reviews Microbiology 467-477 (1-23) (Jun. 2011). cited by examiner . Wiedenheft et al., "RNA-guided genetic silencing systems in bacteria and archaea" 482 Nature 331-338 (Feb. 16, 2012). cited by examiner . Gasiunas et al., "Cas9-crRNA ribonucleoprotein complex mediates specific DNA cleavage for adaptive immunity in bacteria" 109(39) Proceedings of the National Academy of Sciences USA E2579-E2586 (Sep. 4, 2012). cited by examiner . Jinek et al., "A Programmable Dual-RNA-Guided DNA Endonuclease in Adaptive Bacterial Immunity" 337 Science 816-821 (Aug. 17, 2012). cited by examiner . Carroll, "A CRISPR Approach to Gene Targeting" 20(9) Molecular Therapy 1658-1660 (Sep. 2012). cited by examiner . U.S. Appl. No. 61/652,086, filed May 25, 2012 69 pages. cited by examiner . Al-Attar et al., Clustered Regularly Interspaced Short Palindromic Repeats (CRISPRs): The Hallmark of an Ingenious Antiviral Defense Mechanism in Prokaryotes, Biol Chem. (2011) vol. 392, Issue 4, pp. 277-289. cited by applicant . Hale et al., Essential Features and Rational Design of CRISPR RNAs That Function With the Cas RAMP Module Complex to Cleave RNAs, Molecular Cell, (2012) vol. 45, Issue 3, 292-302. cited by applicant . Erik Sontheimer, Project 7: Establishing RNA-Directed DNA Targeting in Eukaryotic Cells; Project dates: Nov. 16, 2011 to Dec. 31, 2012 (Feb. 4, 2012). cited by applicant. |
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