Richard Jude Samulski et al. Helper-Free Stocks of Recombinant Adeno-Associated Viruses: Normal Integration Does Not Require Viral Gene Expression journal of Virology, Sep. 1989,p. 3822-3828.* |
Carter, “Adeno-Associated Virus Helper Functions,” Handbook of Paroviruses 1(13):255-282 (1990). |
Carter et al., “Properties of an Adenovirus Type 2 Mutant, Ad2dl807, Having a Deletion Near the Right-hand Genome Terminus: Failure to Help AAV Replication,” Virology 126:505-516 (1983). |
Georg-Fries et al., “Analysis of Proteins, Helper Dependence, and Seroepidemiology of a New Human Parovirus,” Virology 134:64-71 (1984). |
Handa, “Complementation of Adeno-Associated Virus Growth with Temperature-Sensitive Mutants of Human Adenovirus Types 12 and 5,” J. Gen. Virol. 29:239-242 (1975). |
Hermonat et al., “Use of Adeno-Associated Virus as a Mammalian DNA Cloning Vector: Transduction of Neomycin Resistance into Mammalian Tissue Culture Cells,” PNAS 81:6466-6470 (1984). |
Ishibashi, “The Potentiation of Type A Adeno-Associated Virus by Temperature-Sensitive Conditional-Lethal Mutants of CELO VIrus at the Restrictive Temperature,” Virology 45:317-320 (1971). |
Ito, M., “Adeno-associated Satellite Virus Growth Supported by a Temperature-sensitive Mutant of Human Adenovirus,” J. Gen. Virol. 9:243-245 (1970). |
Janik et al., “Locations of Adenovirus Genes Required for the Replication of Adenovirus-associated Virus,” Proc. Natl. Acad. Sci.USA 78 (3):1925-1929 (1981). |
Jay et al., “Eukaryotic Transitional Control: Adeno-associated Virus Protein Synthesis is Affected by a Mutation in the Adenovirus DNA-binding Protein,” Proc. Natl. Acad. Sci. USA 78(5):2927-2931 (1981). |
Klessig et al., Molecular and Cellular Biology 4(7):1354-1362 (1984). |
Laughlin et al., “Effect of Deletions in Adenovirus Early Region 1 Genes Upon Replication of Adeno-Associated Virus,” J. Virol. 41(3):868-876 (1982). |
McPherson et al., “Human Cytomegalovirus Completely Helps Adeno-Associated Virus Replication,” Virology 147:217-222 (1985). |
Mishra et al., “Adeno-Associated Virus DNA Replication is Induced by Genes that are Essential for HSV-1 DNA Synthesis,” Virology, 179:632-639 (1990). |
Myers et al., “Adeno-Associated Virus Replication,” J. Biol. Chem. 256(2):567-570 (1981). |
Myers et al., “Adenovirus Helper Function for Growth of Adeno-Associated Virus: Effect of Temperature-Sensitive Mutations in Adenovirus Early Gene Region 2,” J. Virol. 35(1):65-75 (1980). |
Ostrove et al., “Adenovirus Early Region 1b Gene Function Required for Rescue of Latent Adeno-Associated Virus,” Virology 104:502-505 (1980). |
Richardson et al., “A cascade of Adenovirus Early Functions is Required for Expression of Adeno-Associated Virus,” Cell 27(2):133-141 (1981). |
Scaria et al., Gene Therapy 2:295-298 (1995). |
Schlehofer et al., “Vaccinia Virus, Herpes Simplex Virus, and Carcinogens Induce DNA Amplification in a Human Cell Line and Support Replication of a Helpervirus Dependent Parovirus,” Virology 152:110-117 (1986). |
Straus et al., “DNA-Minus Temperature-Sensitive Mutants of Adenovirus Type 5 Help Adenovirus-Associated Virus Replication,” J. Virology 17:140-148 (1976). |
Wang et al., “A Packaging Cell Line for Propagation of Recombinant Adenovirus Vectors Containing Two Lethal Gene-Region Deletions,” Gene Therapy 2:775-783 (1995). |
Weindler et al., “A Subset of Herpes Simplex Virus Replication Genes Provides Helper Functions for Productive Adeno-Associated Virus Replication,” J. Virology 65(5):2476-2483 (1991). |