IP Library Patent Application 13641023
Patent Application
App. No. 13/641,023

METHODS FOR GENERATING ENDOGENOUSLY TAGGED PROTEINS

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Patent No.
US None
App. No.
13/641,023
Abstract

The present disclosure provides a method for endogenously tagging an endogenous protein in a cell, and a cell comprising an endogenously tagged protein. Also described are cells produced using such a method and a kit comprising a cell having tagged endogenous protein.

Claims (23)

1 - 35 . (canceled)

36 . A method for tagging at least one endogenous protein, the method comprising:

a) introducing into a cell (i) at least one targeting endonuclease or nucleic acid encoding a targeting endonuclease, the targeting endonuclease binding a target site and able to cleave a cleavage site in a chromosomal sequence encoding the endogenous protein, and (ii) at least one donor polynucleotide comprising a tag sequence, the tag sequence being flanked by an upstream sequence and a downstream sequence, the upstream sequence and the downstream sequence sharing substantial sequence identity with either side of the cleavage site in the chromosomal sequence; and

b) maintaining the cell under conditions such that a double-stranded break introduced at the cleavage site by the targeting endonuclease is repaired by a homology-directed process such that the tag sequence in the donor polynucleotide is integrated in-frame into the chromosomal sequence encoding the endogenous protein such that a tagged endogenous protein is produced.

37 . The method of claim 36 , wherein the targeting endonuclease is a zinc finger nuclease.

38 . The method of claim 36 , wherein the endogenous protein is chosen from tubulin, actin, lamin, HER2, and HMGA.

39 . The method of claim 36 , wherein the endogenous protein is tagged at the C terminus or at the N terminus.

40 . The method of claim 36 , wherein the tag sequence encodes a green fluorescent protein, a blue fluorescent protein, a cyan fluorescent protein, a yellow fluorescent protein, an orange fluorescent protein, or a red fluorescent protein.

41 . The method of claim 36 , wherein the cell is a human U2OS cell, a human MCF1 OA cell, a human SKOV3 cell, or a human iPS cell.

42 . The method of claim 36 , wherein the targeting endonuclease is a zinc finger nuclease that binds to a sequence having at least about 80% sequence identity to a sequence chosen from SEQ ID NO:1, 2, 13, 14, 18, 19, 22, 23, 25 and 26.

43 . The method of claim 42 , the sequence identity is about 85%, 90%, 95%, 99%, or 100%.

44 . A cell comprising at least one tag sequence integrated in-frame into a chromosomal sequence encoding an endogenous protein, such that the cell expresses at least one tagged endogenous protein.

45 . The cell of claim 44 , wherein the endogenous protein is chosen from tubulin, actin, lamin, HER2 and HMGA.

46 . The cell of claim 44 , wherein the endogenous protein is tagged at the C terminus or at the N terminus.

47 . The cell of claim 44 , wherein the tag sequence encodes a green fluorescent protein, a blue fluorescent protein, a cyan fluorescent protein, a yellow fluorescent protein, an orange fluorescent protein, or a red fluorescent protein.

48 . The cell of claim 44 , wherein the cell expresses one or more fluorescently tagged endogenous proteins.

49 . The cell of claim 44 , wherein the cell is a human U2OS cell, a human MCF10A cell, a human SKOV3 cell, or a human iPS cell.

50 . The cell of claim 44 , wherein the cell is produced by:

a) introducing into a parental cell (i) at least one targeting endonuclease or nucleic acid encoding a targeting endonuclease, the targeting endonuclease binding a target site and able to cleave a cleavage site in a chromosomal sequence encoding the endogenous protein, and (ii) at least one donor polynucleotide comprising a tag sequence, the tag sequence being flanked by an upstream sequence and a downstream sequence, the upstream sequence and the downstream sequence sharing substantial sequence identity with either side of the cleavage site in the chromosomal sequence; and

b) maintaining the cell under conditions such that a double-stranded break introduced at the cleavage site by the targeting endonuclease is repaired by a homology-directed process such that the tag sequence in the donor polynucleotide is integrated in-frame into the chromosomal sequence encoding the endogenous protein.

51 . The cell of claim 50 , wherein the targeting endonuclease is a zinc finger nuclease.

52 . The cell of claim 51 , wherein the zinc finger nuclease binds to a sequence having at least about 80% sequence identity to a sequence chosen from SEQ ID NO: 1, 2, 13, 14, 18, 19, 22, 23, 25 and 26.

53 . The cell of claim 52 , the sequence identity is about 85%, 90%, 95%, 99%, or 100%.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 12, 2012
From: MALKOV, DMITRY; ZENSER, NATHAN; VASSAR, DEBORAH; ZHANG, FAN; ZHANG, HONGYI
To: SIGMA-ALDRICH CO. LLC
Reel/Frame 029280/0864 →