AAV capsid proteins for nucleic acid transfer
Recombinant adeno-associated viral (AAV) capsid proteins are provided. Methods for generating the recombinant adeno-associated viral capsid proteins and a library from which the capsids are selected are also provided.
1 . A recombinant viral vector, comprising: a capsid protein with an amino acid sequence comprising, relative to wildtype AAV3B, at least one amino acid substitution selected from the group consisting of (i) a conservative substitution at amino acid residues 26, 29, 105 and/or 125, (ii) a semi-conservative substitution at amino acid residue 29, and (iii) a non-conservative amino acid substitution at amino acid residue 42 and/or 67.
2 . The recombinant viral vector of claim 1 , wherein the at least one amino acid substitution comprises a glutamine substitution relative to wildtype AAV3B at position 26.
3 . The recombinant viral vector of claim 1 , wherein the at least one amino acid substitution comprises an alanine substitution relative to wildtype AAV3B at position 29.
4 . The recombinant viral vector of claim 1 , further comprising a lysine substitution relative to wildtype AAV3B at position 31.
5 . The recombinant viral vector of claim 1 , further comprising an alanine substitution relative to wildtype AAV3B at position 42.
6 . The recombinant viral vector of claim 1 , wherein the at least one amino acid substitution comprises an alanine substitution relative to wildtype AAV3B at position 67.
7 . The recombinant viral vector of claim 1 , wherein the at least one amino acid substitution comprises a lysine substitution relative to wildtype AAV3B at position 105.
8 . The recombinant viral vector of claim 1 , further comprising a proline substitution relative to wildtype AAV3B at position 735.
9 . A recombinant viral vector, comprising: a capsid protein with an amino acid sequence comprising, relative to wildtype AAV3B, one or more of a substitution at amino acid residues 26, 29, 31, 42, 67, 105 and/or 735.
10 . The recombinant viral vector of claim 9 , wherein the amino acid sequence comprises a glutamine substitution relative to wildtype AAV3B at residue 26.
11 . The recombinant viral vector of claim 9 , wherein the amino acid sequence comprises an alanine substitution relative to wildtype AAV3B at residue 29.
12 . The recombinant viral vector of claim 9 , wherein the amino acid sequence comprises a lysine substitution relative to wildtype AAV3B at residue 31.
13 . The recombinant viral vector of claim 9 , wherein the amino acid sequence comprises an alanine substitution relative to wildtype AAV3B at residue 42.
14 . The recombinant viral vector of claim 9 , wherein the amino acid sequence comprises an alanine substitution relative to wildtype AAV3B at residue 67.
15 . The recombinant viral vector of claim 9 , wherein the amino acid sequence comprises a lysine substitution relative to wildtype AAV3B at residue 105.
16 . The recombinant viral vector of claim 9 , wherein the amino acid sequence comprises a proline substitution relative to wildtype AAV3B at residue 735.
17 . A method for transduction of a gene of interest, comprising, providing a recombinant viral vector having a capsid protein, where the capsid protein comprises mutations at positions 26, 29, 31, 42, 67, 105 and 735, relative to wildtype AAV3B.
18 . The recombinant viral vector of claim 1 , further comprising an insertion of Val and Glu between positions 680 and 681 of wildtype AAV3B.
19 . The recombinant viral vector of claim 1 , further comprising an alanine substitution at position 29, a lysine substitution at position 31, and an alanine substitution at position 67.
20 . The recombinant viral vector of claim 19 , wherein the at least one amino acid substitution comprises a conservative substitution at amino acid residue 125.
21 . The recombinant viral vector of claim 19 , further comprising an insertion of Val and Glu between positions 680 and 681 of wildtype AAV3B.