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Elizabeth B. Keller grad student 1971 Cornell (Chemistry Tree)
 (The role of methionine tRNA's in protein chain initiation in wheat.)
Jerard Hurwitz post-doc 1973 Albert Einstein (Chemistry Tree)
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Strickland M, Ehrlich LS, Watanabe S, et al. (2017) Tsg101 chaperone function revealed by HIV-1 assembly inhibitors. Nature Communications. 8: 1391
Seo EJ, Leis J. (2012) Budding of Enveloped Viruses: Interferon-Induced ISG15-Antivirus Mechanisms Targeting the Release Process. Advances in Virology. 2012: 532723
Kuang Z, Seo EJ, Leis J. (2011) Mechanism of inhibition of retrovirus release from cells by interferon-induced gene ISG15. Journal of Virology. 85: 7153-61
Pincetic A, Kuang Z, Seo EJ, et al. (2010) The interferon-induced gene ISG15 blocks retrovirus release from cells late in the budding process. Journal of Virology. 84: 4725-36
Pincetic A, Leis J. (2009) The Mechanism of Budding of Retroviruses From Cell Membranes. Advances in Virology. 2009: 6239691-6239699
Dolan J, Chen A, Weber IT, et al. (2009) Defining the DNA substrate binding sites on HIV-1 integrase. Journal of Molecular Biology. 385: 568-79
Dolan J, Leis J. (2009) Integrase: Structure, function, and mechanism Viral Genome Replication. 467-478
Pincetic A, Medina G, Carter C, et al. (2008) Avian sarcoma virus and human immunodeficiency virus, type 1 use different subsets of ESCRT proteins to facilitate the budding process. The Journal of Biological Chemistry. 283: 29822-30
Medina G, Pincetic A, Ehrlich LS, et al. (2008) Tsg101 can replace Nedd4 function in ASV Gag release but not membrane targeting. Virology. 377: 30-8
Chen A, Weber IT, Harrison RW, et al. (2006) Identification of amino acids in HIV-1 and avian sarcoma virus integrase subsites required for specific recognition of the long terminal repeat Ends. The Journal of Biological Chemistry. 281: 4173-82
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