IP Library Granted Patent US 9,157,098
Granted Patent B2
US 9,157,098 · App. 13/855,640 · Granted Oct 13, 2015

Transduction efficiency, capsid-modified rAAV vectors and methods of use

Inventors: Li Zhong (Gainesville, FL); Sergei Zolotukhin (Gainesville, FL); Lakshmanan Govindasamy (Gainesville, FL); Mavis Agbandje-McKenna (Gainesville, FL); Arun Srivastava (Gainesville, FL)
Assignee: University of Florida Research Foundation, Inc.
C12N15/8645A61K48/005A61K48/0091C12N15/86C12N2750/14143
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Quick Facts
Patent No.
US 9,157,098
App. No.
13/855,640
Granted
Oct 13, 2015
Kind
B2
Abstract

Disclosed are tyrosine-modified rAAV vectors, as well as infectious virions, compositions, and pharmaceutical formulations that comprise them. Also disclosed are methods of preparing and methods for using the disclosed tyrosine-phosphorylated capsid protein mutant rAAV vectors in a variety of diagnostic and therapeutic applications including in vivo and ex vivo gene therapy, and large-scale production of rAAV vectors.

Claims (30)

1. A composition, comprising:

a recombinant adeno-associated viral (rAAV) particle that comprises a modified capsid protein, wherein the modified capsid protein comprises at least a first non-tyrosine amino acid at a position that corresponds to a surface-exposed tyrosine residue selected from the group consisting of Tyr252, Tyr272, Tyr275, Tyr281, Tyr508, Tyr612, Tyr704, Tyr720, Tyr730, and Tyr673 in a wild-type AAV2 capsid protein;

wherein the transduction efficiency of the rAAV particle comprising the modified capsid protein is higher than that of a rAAV particle comprising a corresponding, unmodified AAV capsid protein.

2. The composition of claim 1 , wherein the modified capsid protein further comprises at least a second non-tyrosine amino acid at a position that corresponds to a second, distinct, surface-exposed tyrosine residue in the wild-type AAV2 capsid protein.

3. The composition of claim 1 , wherein the transduction efficiency of the rAAV particle comprising the modified capsid protein is at least 4-fold higher than that of the rAAV particle comprising the corresponding, unmodified capsid protein.

4. The composition of claim 1 , wherein the transduction efficiency of the rAAV particle comprising the modified capsid protein is about 8- to about 11-fold than that of the rAAV particle comprising the corresponding, unmodified capsid protein.

5. The composition of claim 1 , wherein the at least first non-tyrosine amino acid is a phenylalanine.

6. The composition of claim 1 , wherein the transduction efficiency into HeLa cells of the rAAV particle comprising the modified capsid protein is higher than that of the rAAV particle comprising the corresponding, unmodified capsid protein.

7. A composition, comprising:

a recombinant adeno-associated viral (rAAV) particle that comprises a modified AAV2 capsid protein, wherein the modified AAV2 capsid protein comprises at least a first non-tyrosine amino acid at a position that corresponds to a surface-exposed tyrosine residue selected from the group consisting of Tyr252, Tyr272, Tyr275, Tyr281, Tyr444, Tyr500, Tyr508, Tyr612, Tyr704, Tyr720, Tyr730, and Tyr673 in a wild-type AAV2 capsid protein;

wherein the transduction efficiency of the rAAV particle comprising the modified AAV2 capsid protein is higher than that of a rAAV particle comprising a corresponding, unmodified AAV2 capsid protein.

8. The composition of claim 7 , wherein the modified AAV2 capsid protein further comprises at least a second non-tyrosine amino acid at a position that corresponds to a second, distinct, surface-exposed tyrosine residue in the wild-type AAV2 capsid protein.

9. The composition of claim 7 , wherein the at least first non-tyrosine amino acid is a phenylalanine.

10. The composition of claim 7 , wherein the transduction efficiency into HeLa cells of the rAAV particle comprising the modified AAV2 capsid protein is higher than that of the rAAV particle comprising the corresponding, unmodified AAV2 capsid protein.

11. A method for administering a therapeutic or a diagnostic agent to a mammal in need thereof, the method comprising:

administering to the mammal the composition of claim 1 .

12. A method for administering a therapeutic or a diagnostic agent to a mammal in need thereof, the method comprising:

administering to the mammal the composition of claim 7 .

13. The method of claim 11 , wherein the rAAV particle in the composition further comprises a polynucleotide that encodes a therapeutic agent operably linked to a promoter.

14. The method of claim 12 , wherein the rAAV particle in the composition further comprises a polynucleotide that encodes a therapeutic agent operably linked to a promoter.

15. The method of claim 13 , wherein the therapeutic agent is a polypeptide, a peptide, an antibody or an antigen-binding fragment thereof, a ribozyme, a peptide-nucleic acid, an siRNA, an RNAi, an antisense oligonucleotide, or an antisense polynucleotide.

16. The method of claim 14 , wherein the therapeutic agent is a polypeptide, a peptide, an antibody or an antigen-binding fragment thereof, a ribozyme, a peptide-nucleic acid, an siRNA, an RNAi, an antisense oligonucleotide, or an antisense polynucleotide.

17. The method of claim 13 , wherein the therapeutic agent is a polypeptide and wherein the polypeptide is selected from the group consisting of α-1 antitrypsin, factor IX (F.IX), BDNF, TGF, TNF, VEGF, interleukin, and neurotrophin.

18. The method of claim 14 , wherein the therapeutic agent is a polypeptide and wherein the polypeptide is selected from the group consisting of α-1 antitrypsin, factor IX (F.IX), BDNF, TGF, TNF, VEGF, interleukin, and neurotrophin.

19. The method of claim 11 , wherein the mammal has cancer, diabetes, autoimmune disease, kidney disease, cardiovascular disease, pancreatic disease, intestinal disease, liver disease, neurological disease, neuromuscular disease, Bratten's disease, Alzheimer's disease, Huntington disease, Parkinson's disease, pulmonary disease, an α-1 antitrypsin deficiency, neurological disability, neuromotor deficit, neuroskeletal impairment, ischemia, stroke, or any combination thereof.

20. The method of claim 12 , wherein the mammal has cancer, diabetes, autoimmune disease, kidney disease, cardiovascular disease, pancreatic disease, intestinal disease, liver disease, neurological disease, neuromuscular disease, Bratten's disease, Alzheimer's disease, Huntington disease, Parkinson's disease, pulmonary disease, an α-1 antitrypsin deficiency, neurological disability, neuromotor deficit, neuroskeletal impairment, ischemia, stroke, or any combination thereof.

21. A composition, comprising:

a recombinant adeno-associated viral (rAAV) particle that comprises a modified capsid protein, wherein the modified capsid protein comprises at least a first phenylalanine at a position that corresponds to a surface-exposed tyrosine residue selected from the group consisting of Tyr252, Tyr272, Tyr275, Tyr281, Tyr444, Tyr500, Tyr508, Tyr612, Tyr704, Tyr720, Tyr730, and Tyr673 in a wild-type AAV2 capsid protein.

22. The composition of claim 21 , wherein the modified capsid protein further comprises at least a second phenylalanine at a position that corresponds to a second, distinct, surface-exposed tyrosine residue in the wild-type AAV2 capsid protein.

23. The composition of claim 21 , wherein the modified capsid protein is a modified AAV2 capsid protein.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 6, 2013
From: ZHONG, LI; ZOLOTUKHIN, SERGEI; GOVINDASAMY, LAKSHMANAN; AGBANDJE-MCKENNA, MAVIS; SRIVASTAVA, ARUN
To: UNIVERSITY OF FLORIDA RESEARCH FOUNDATION, INC.
Reel/Frame 031552/0626 →
CONFIRMATORY LICENSE Recorded May 7, 2013
From: UNIVERSITY OF FLORIDA
To: NATIONAL INSTITUTES OF HEALTH (NIH), U.S. DEPT. OF HEALTH AND HUMAN SERVICES (DHHS), U.S. GOVERNMENT
Reel/Frame 030369/0906 →
Continuity (3)
Continuation 12595196
Provisional Application 60910798 · Apr 9, 2007
Related Publication 20130203841A1 · Aug 8, 2013