METHODS FOR GENERATING ENDOGENOUSLY TAGGED PROTEINS
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.
1 . 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 the cell produces at least one tagged endogenous protein that is functionally equivalent to the endogenous protein that is not tagged.
2 . The method of claim 1 , wherein the endogenous protein is chosen from tubulin, actin, lamin, HER2, and HMGA.
3 . The method of claim 1 , wherein the endogenous protein is tagged at the C terminus or at the N terminus.
4 . The method of claim 1 , 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.
5 . The method of claim 1 , wherein the cell is a human U2OS cell, a human MCF1 OA cell, a human SKOV3 cell, or a human iPS cell.
6 . The method of claim 1 , wherein the targeting endonuclease is a pair of zinc finger nucleases.
7 . The method of claim 6 , wherein the pair of zinc finger nucleases bind to a pair of sequences having at least about 80% sequence identity to SEQ ID NO:1 and 2; 13 and 14; 18 and 19; 22 and 23; or 25 and 26.
8 . The method of claim 7 , the sequence identity is about 85%, 90%, 95%, 99%, or 100%.
9 . A cell comprising at least one tag sequence integrated in-frame into a chromosomal sequence encoding an endogenous protein, such that the cell produces at least one tagged endogenous protein that is functionally equivalent to the endogenous protein that is not tagged.
10 . The cell of claim 9 , wherein the endogenous protein is chosen from tubulin, actin, lamin, HER2 and HMGA.
11 . The cell of claim 9 , wherein the endogenous protein is tagged at the C terminus or at the N terminus.
12 . The cell of claim 9 , 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.
13 . The cell of claim 9 , wherein the cell expresses one or more fluorescently tagged endogenous proteins.
14 . The cell of claim 9 , wherein the cell is a human U2OS cell, a human MCF10A cell, a human SKOV3 cell, or a human iPS cell.
15 . The cell of claim 9 , 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.
16 . The cell of claim 15 , wherein the targeting endonuclease is a pair of zinc finger nucleases.
17 . The cell of claim 16 , wherein the pair of zinc finger nuclease bind to a pair of sequences having at least about 80% sequence identity to SEQ ID NO:1 and 2; 13 and 14; 18 and 19; 22 and 23; or 25 and 26.
18 . The cell of claim 17 , wherein the sequence identity is about 85%, 90%, 95%, 99%, or 100%.