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  1. 1.   Crystal structures of the reverse transcriptase-associated ribonuclease H domain of xenotropic murine leukemia-virus related virus
  2. Zhou, D. W.; Chung, S. H.; Miller, M.; Le Grice, S. F. J.; Wlodawer, A.
  3. Journal of Structural Biology. 2012, Mar; 177(3): 638-645.
  1. 2.   Mechanisms and Factors that Influence High Frequency Retroviral Recombination
  2. Delviks-Frankenberry, K.; Galli, A.; Nikolaitchik, O.; Mens, H.; Pathak, V. K.; Hu, W. S.
  3. Viruses-Basel. 2011, Sep; 3(9): 1650-1680.
  1. 3.   Synthesis, Activity, and Structural Analysis of Novel alpha-Hydroxytropolone Inhibitors of Human Immunodeficiency Virus Reverse Transcriptase-Associated Ribonuclease H
  2. Chung, S. M.; Himmel, D. M.; Jiang, J. K.; Wojtak, K.; Bauman, J. D.; Rausch, J. W.; Wilson, J. A.; Beutler, J. A.; Thomas, C. J.; Arnold, E.; Le Grice, S. F. J.
  3. Journal of Medicinal Chemistry. 2011, Jul; 54(13): 4462-4473.
  1. 4.   Mechanisms of HIV-1 drug resistance to nucleoside and nonnucleoside reverse transcriptase inhibitors
  2. Nikolenko, G. N.; Kotelkin, A. T.; Oreshkova, S. F.; Ilyichev, A. A.
  3. Molecular Biology. 2011, Feb; 45(1): 93-109.
  1. 5.   Structure-Activity Analysis of Vinylogous Urea Inhibitors of Human Immunodeficiency Virus-Encoded Ribonuclease H
  2. Chung, S. M.; Wendeler, M.; Rausch, J. W.; Beilhartz, G.; Gotte, M.; O'Keefe, B. R.; Bermingham, A.; Beutler, J. A.; Liu, S. X.; Zhuang, X. W.; Le Grice, S. F. J.
  3. Antimicrobial Agents and Chemotherapy. 2010, Sep; 54(9): 3913-3921.
  1. 6.   Reverse transcriptase in motion: Conformational dynamics of enzyme-substrate interactions
  2. Gotte, M.; Rausch, J. W.; March, B.; Sarafianos, S.; Le Grice, S. F. J.
  3. Biochimica Et Biophysica Acta-Proteins and Proteomics. 2010, May; 1804(5): 1202-1212.
  1. 7.   A Novel Molecular Mechanism of Dual Resistance to Nucleoside and Nonnucleoside Reverse Transcriptase Inhibitors
  2. Nikolenko, G. N.; Delviks-Frankenberry, K. A.; Pathak, V. K.
  3. Journal of Virology. 2010, May; 84(10): 5238-5249.
  1. 8.   Synthesis of nucleoside 5 '-O-alpha,beta-methylene-beta-triphosphates and evaluation of their potency towards inhibition of HIV-1 reverse transcriptase
  2. Ahmadibeni, Y.; Dash, C.; Hanley, M. J.; Le Grice, S. F. J.; Agarwal, H. K.; Parang, K.
  3. Organic & Biomolecular Chemistry. 2010, Mar; 8(6): 1271-1274.
  1. 10.   Revisiting Plus-Strand DNA Synthesis in Retroviruses and Long Terminal Repeat Retrotransposons: Dynamics of Enzyme: Substrate Interactions
  2. Fabris, D.; Marino, J. P.; Le Grice, S. F. J.
  3. Viruses-Basel. 2009, Dec; 1(3): 657-677.
  1. 11.   Subtype-Specific Differences in the Human Immunodeficiency Virus Type 1 Reverse Transcriptase Connection Subdomain of CRF01_AE Are Associated with Higher Levels of Resistance to 3 '-Azido-3 '-Deoxythymidine
  2. Delviks-Frankenberry, K. A.; Nikolenko, G. N.; Maldarelli, F.; Hase, S.; Takebe, Y.; Pathak, V. K.
  3. Journal of Virology. 2009 83(17): 8502-8513.
  1. 12.   Mutations in the Thumb Allow Human Immunodeficiency Virus Type 1 Reverse Transcriptase To Be Cleaved by Protease in Virions
  2. Dunn, L. L.; McWilliams, M. J.; Das, K.; Arnold, E.; Hughes, S. H.
  3. Journal of Virology. 2009 83(23): 12336-12344.
  1. 13.   Fidelity of plus-strand priming requires the nucleic acid chaperone activity of HIV-1 nucleocapsid protein
  2. Post, K.; Kankia, B.; Gopalakrishnan, S.; Yang, V.; Cramer, E.; Saladores, P.; Gorelick, R. J.; Guo, J. H.; Musier-Forsyth, K.; Levin, J. G.
  3. Nucleic Acids Research. 2009 37(6): 1755-1766.
  1. 14.   A Succession of Mechanisms Stimulate Efficient Reconstituted HIV-1 Minus Strand Strong Stop DNA Transfer
  2. Song, M.; Balakrishnan, M.; Gorelick, R. J.; Bambara, R. A.
  3. Biochemistry. 2009 48(8): 1810-1819.
  1. 15.   Dynamic binding orientations direct activity of HIV reverse transcriptase
  2. Abbondanzieri, E. A.; Bokinsky, G.; Rausch, J. W.; Zhang, J. X.; Le Grice, S.; Zhuang, X. W.
  3. Nature. 2008 453(7192): 184-189.
  1. 17.   Apparent defects in processive DNA synthesis, strand transfer, and primer elongation of met-184 mutants of HIV-1 reverse transcriptase derive solely from a dNTP utilization defect
  2. Gao, L.; Hanson, M. N.; Balakrishnan, M.; Boyer, P. L.; Roques, B. P.; Hughes, S. H.; Kim, B.; Bambara, R. A.
  3. Journal of Biological Chemistry. 2008 283(14): 9196-9205.
  1. 18.   Integration of Rous Sarcoma Virus DNA: a CA Dinucleotide Is Not Required for Integration of the U3 End of Viral DNA
  2. Oh, J.; Chang, K. W.; Hughes, S. H.
  3. Journal of Virology. 2008 82(22): 11480-11483.
  1. 19.   Rous sarcoma virus (RSV) integration in vivo: a CA dinucleotide is not required in U3, and RSV linear DNA does not autointegrate
  2. Oh, J.; Chang, K. W.; Wierzchoslawski, R.; Alvord, W. G.; Hughes, S. H.
  3. Journal of Virology. 2008 82(1): 503-512.
  1. 20.   Vinylogous Ureas as a Novel Class of Inhibitors of Reverse Transcriptase-Associated Ribonuclease H Activity
  2. Wendeler, M.; Lee, H. F.; Bermingham, A.; Miller, J. T.; Chertov, O.; Bona, M. K.; Baichoo, N. S.; Ehteshami, M.; Beutler, J.; O'Keefe, B. R.; Gotte, M.; Kvaratskhelia, M.; Le Grice, S.
  3. Acs Chemical Biology. 2008 3(10): 635-644.
  1. 21.   Human T-cell leukemia virus type 1 integration target sites in the human genome: Comparison with those of other retroviruses
  2. Derse, D.; Crise, B.; Li, Y.; Princler, G.; Lum, N.; Stewart, C.; McGrath, C. F.; Hughes, S. H.; Munroe, D. J.; Wu, X. L.
  3. Journal of Virology. 2007, Jun; 81(12): 6731-6741.
  1. 22.   Analysis of amino acids in the beta 7-beta 8 loop of human immunodeficiency virus type 1 reverse transcriptase for their role in virus replication
  2. Mulky, A.; Vu, B. C.; Conway, J. A.; Hughes, S. H.; Kappes, J. C.
  3. Journal of Molecular Biology. 2007, Feb; 365(5): 1368-1378.
  1. 23.   Purine analog substitution of the HIV-1 polypurine tract primer defines regions controlling initiation of plus-strand DNA synthesis
  2. Rausch, J. W.; Le Grice, S. F. J.
  3. Nucleic Acids Research. 2007, Jan; 35(1): 256-268.
  1. 24.   Mutations in the connection domain of HIV-1 reverse transcriptase increase 3 '-azido-3 '-deoxythymidine resistance
  2. Nikolenko, G. N.; Delviks-Frankenberry, K. A.; Palmer, S.; Maldarelli, F.; Fivash, M. J.; Coffin, J. M.; Pathak, V. K.
  3. Proceedings of the National Academy of Sciences of the United States of America. 2007, Jan; 104(1): 317-322.
  1. 25.   Exploiting structurally diverse nucleoside analogs as probes of reverse transcription complexes
  2. Rausch, J. W.; Le Grice, S. F. J.
  3. Current HIV Research. 2007, Jan; 5(1): 11-22.
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