IP Library Patent Application 18109550
Patent Application
App. No. 18/109,550

CRISPR-CAS COMPONENT SYSTEMS, METHODS AND COMPOSITIONS FOR SEQUENCE MANIPULATION

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Patent No.
US None
App. No.
18/109,550
Abstract

The invention provides for systems, methods, and compositions for manipulation of sequences and/or activities of target sequences. 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 selecting specific cells by introducing precise mutations utilizing the CRISPR/Cas system.

Claims (49)

1 - 30 . (canceled)

31 . A eukaryotic cell comprising:

(i) a Cas9,

(ii) a first polynucleotide sequence comprising a sequence complementary to a target DNA sequence in the eukaryotic cell and further comprising a tracr-mate sequence, and

(iii) a second polynucleotide sequence comprising a sequence complementary to the tracr-mate sequence,

wherein the first polynucleotide sequence and the second polynucleotide sequence are hybridized to form a hybridized polynucleotide,

wherein the Cas9 is complexed with the hybridized polynucleotide, and

wherein the hybridized polynucleotide and the Cas9 do not occur naturally together.

32 . The eukaryotic cell of claim 31 , wherein the Cas9 comprises one or more SV40 large T-antigen nuclear localization signals.

33 . The eukaryotic cell of claim 32 , wherein the one or more SV40 large T-antigen nuclear localization signals are at either the C-terminus or the N-terminus of the Cas9.

34 . The eukaryotic cell of claim 32 , wherein the one or more SV40 large T-antigen nuclear localization signals are at the C-terminus and the N-terminus of the Cas9.

35 . The eukaryotic cell of claim 31 , wherein the Cas9 is flanked on each end by at least one nuclear localization signal.

36 . The eukaryotic cell of claim 32 , wherein the SV40 large T-antigen nuclear localization signals comprise the sequence PKKKRKV (SEQ ID NO: 1).

37 . The eukaryotic cell of claim 31 , wherein the Cas9 is an S. pyogenes Cas9 protein.

38 . The eukaryotic cell of claim 31 , wherein the sequence complementary to the target DNA sequence in the eukaryotic cell is between 15-25 nucleotides in length.

39 . The eukaryotic cell of claim 31 , wherein the tracr-mate sequence comprises the sequence GUUUUAGAGCUA (SEQ ID NO: 30).

40 . The eukaryotic cell of claim 31 , wherein the first polynucleotide sequence comprises one or more methylated nucleotides.

41 . The eukaryotic cell of claim 31 , wherein the second polynucleotide sequence comprises one or more methylated nucleotides.

42 . The eukaryotic cell of claim 31 , wherein the target sequence comprises a non-coding sequence.

43 . An ex vivo mammalian cell comprising:

(i) an S. pyogenes Cas9,

(ii) a first polynucleotide sequence comprising a sequence complementary to a target DNA sequence in the human cell and further comprising a tracr-mate sequence, and

(iii) a second polynucleotide sequence comprising a sequence complementary to the tracr-mate sequence,

wherein the first polynucleotide sequence and the second polynucleotide sequence are hybridized to form a hybridized polynucleotide,

wherein the Cas9 is complexed with the hybridized polynucleotide, and

wherein the hybridized polynucleotide and the Cas9 do not occur naturally together.

44 . The ex vivo mammalian cell of claim 43 , wherein the S. pyogenes Cas9 comprises one or more SV40 large T-antigen nuclear localization signals.

45 . The ex vivo mammalian cell of claim 44 , wherein the one or more SV40 large T-antigen nuclear localization signals is at either the C-terminus or the N-terminus of the S. pyogenes Cas9.

46 . The ex vivo mammalian cell of claim 44 , wherein the one or more SV40 large T-antigen nuclear localization signals are at the C-terminus and the N-terminus of the S. pyogenes Cas9.

47 . The ex vivo mammalian cell of claim 43 , wherein the S. pyogenes Cas9 is flanked on each end by at least one nuclear localization signal.

48 . The ex vivo mammalian cell of claim 44 , wherein the SV40 large T-antigen nuclear localization signals comprise the sequence PKKKRKV (SEQ ID NO: 1).

49 . The ex vivo mammalian cell of claim 43 , wherein the sequence complementary to the target DNA sequence in the eukaryotic cell is between 15-25 nucleotides in length.

50 . The ex vivo mammalian cell of claim 43 , wherein the tracr-mate sequence comprises the sequence GUUUUAGAGCUA (SEQ ID NO: 30).

51 . The ex vivo mammalian cell of claim 43 , wherein the first polynucleotide sequence and/or the second polynucleotide sequence comprises one or more methylated nucleotides.

52 . An ex vivo human cell comprising:

(i) an S. pyogenes Cas9,

(ii) a first polynucleotide sequence comprising a sequence complementary to a target DNA sequence in the human cell and further comprising a tracr-mate sequence, and wherein the first polynucleotide comprises one or more methylated nucleotides.

(iii) a second polynucleotide sequence comprising a sequence complementary to the tracr-mate sequence,

wherein the first polynucleotide sequence and the second polynucleotide sequence are hybridized to form a hybridized polynucleotide,

wherein the Cas9 is complexed with the hybridized polynucleotide, and

wherein the hybridized polynucleotide and the Cas9 do not occur naturally together.

53 . The ex vivo human cell of claim 52 , wherein the S. pyogenes Cas9 comprises one or more SV40 large T-antigen nuclear localization signals.

54 . The ex vivo human cell of claim 52 , wherein the one or more SV40 large T-antigen nuclear localization signals are at the C-terminus of the S. pyogenes Cas9 and/or at the N-terminus of the S. pyogenes Cas9.

55 . The ex vivo human cell of claim 53 , wherein the SV40 large T-antigen nuclear localization signals comprise the sequence PKKKRKV (SEQ ID NO: 1).

56 . The ex vivo human cell of claim 52 , wherein the sequence complementary to the target DNA sequence in the eukaryotic cell is between 15-25 nucleotides in length.

57 . The ex vivo human cell of claim 52 , wherein the tracr-mate sequence comprises the sequence GUUUUAGAGCUA (SEQ ID NO: 30).

58 . The ex vivo human cell of claim 52 , wherein the first polynucleotide sequence and/or the second polynucleotide sequence comprises one or more methylated nucleotides.

59 . The ex vivo human cell of claim 52 , wherein the target sequence comprises a non-coding sequence.

60 . The ex vivo human cell of claim 52 , wherein the first polynucleotide sequence comprises a sequence that is hybridized to the target DNA sequence, and wherein the sequence complementary to the target DNA sequence in the eukaryotic cell is between 15-25 nucleotides in length.

Assignments (3)
LICENSE Recorded Apr 3, 2025
From: BROAD INSTITUTE, INC.
To: NATIONAL INSTITUTES OF HEALTH (NIH), U.S. DEPT. OF HEALTH AND HUMAN SERVICES (DHHS), U.S. GOVERNMENT
Reel/Frame 070737/0159 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 18, 2023
From: ZHANG, FENG
To: MASSACHUSETTS INSTITUTE OF TECHNOLOGY
Reel/Frame 062737/0787 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 14, 2023
From: ZHANG, FENG
To: THE BROAD INSTITUTE, INC.
Reel/Frame 062694/0833 →