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  1. 1.   Purification of Circular RNAs Using Poly(A) Tailing Followed by RNase R Digestion
  2. Xiao, Mei-Sheng; Wilusz, Jeremy E
  3. Methods in Molecular Biology (Clifton, N.J.). 2024 2765: 3-19.
  1. 2.   Reverse Transcription in the Saccharomyces cerevisiae Long-Terminal Repeat Retrotransposon Ty3
  2. Rausch, Jason; Miller, Jennifer; Legrice, Stuart
  3. VIRUSES-BASEL. 2017, Mar; 9(3):
  1. 3.   The Functional Cycle of Rnt1p: Five Consecutive Steps of Double-Stranded RNA Processing by a Eukaryotic RNase III
  2. Song, He; Fang, Xianyang; Jin, Lan; Shaw, Gary; Wang, Yun-Xing; Ji, Xinhua
  3. STRUCTURE. 2017, Feb 7; 25(2): 353-363.
  1. 4.   Structure of a eukaryotic RNase III postcleavage complex reveals a double-ruler mechanism for substrate selection
  2. Liang, Y. H.; Lavoie, M.; Comeau, M. A.; Abou Elela, S.; Ji, X.
  3. Molecular Cell. 2014, 8-May; 54(3): 431-44.
  1. 5.   Guide RNA biogenesis involves a novel RNase III family endoribonuclease in Trypanosoma brucei
  2. Madina, B. R.; Kuppan, G.; Vashisht, A. A.; Liang, Y. H.; Downey, K. M.; Wohlschlegel, J. A.; Ji, X. H.; Sze, S. H.; Sacchettini, J. C.; Read, L. K.; Cruz-Reyes, J.
  3. Rna-a Publication of the Rna Society. 2011, Oct; 17(10): 1821-1830.
  1. 6.   The effects of RNase H inhibitors and nevirapine on the susceptibility of HIV-1 to AZT and 3TC
  2. Davis, C. A.; Parniak, M. A.; Hughes, S. H.
  3. Virology. 2011, Oct; 419(2): 64-71.
  1. 7.   Integrating the intrinsic conformational preferences of noncoded alpha-amino acids modified at the peptide bond into the Noncoded Amino acids Database
  2. Revilla-Lopez, G.; Rodriguez-Ropero, F.; Curco, D.; Torras, J.; Calaza, M. I.; Zanuy, D.; Jimenez, A. I.; Cativiela, C.; Nussinov, R.; Aleman, C.
  3. Proteins-Structure Function and Bioinformatics. 2011, Jun; 79(6): 1841-1852.
  1. 8.   New monoterpene glycosides and phenolic compounds from Distylium racemosum and their inhibitory activity against ribonuclease H
  2. Kim, J. A.; Yang, S. Y.; Wamiru, A.; McMahon, J. B.; Le Grice, S. F. J.; Beutler, J. A.; Kim, Y. H.
  3. Bioorganic & Medicinal Chemistry Letters. 2011, May; 21(10): 2840-2844.
  1. 9.   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. 10.   The "Connection" Between HIV Drug Resistance and RNase H
  2. Delviks-Frankenberry, K. A.; Nikolenko, G. N.; Pathak, V. K.
  3. Viruses-Basel. 2010, Jul; 2(7): 1476-1503.
  1. 11.   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. 12.   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. 14.   Novel approaches to inhibiting HIV-1 replication
  2. Adamson, C. S.; Freed, E. O.
  3. Antiviral Research. 2010, Jan; 85(1): 119-141.
  1. 15.   Identification and analysis of novel transcripts and promoters in the human killer cell immunoglobulin-like receptor (KIR) genes
  2. Li, H.; Wright, P. W.; Anderson, S. K.
  3. Methods in molecular biology (Clifton, N.J.). 2010 612: 377-91.
  1. 16.   HIV-1 Reverse Transcriptase Can Simultaneously Engage Its DNA/RNA Substrate at Both DNA Polymerase and RNase H Active Sites: Implications for RNase H Inhibition
  2. Beilhartz, G. L.; Wendeler, M.; Baichoo, N.; Rausch, J.; Le Grice, S.; Gotte, M.
  3. Journal of Molecular Biology. 2009 388(3): 462-474.
  1. 17.   Structure of HIV-1 Reverse Transcriptase with the Inhibitor beta-Thujaplicinol Bound at the RNase H Active Site
  2. Himmel, D. M.; Maegley, K. A.; Pauly, T. A.; Bauman, J. D.; Das, K.; Dharia, C.; Clark, A. D.; Ryan, K.; Hickey, M. J.; Love, R. A.; Hughes, S. H.; Bergqvist, S.; Arnold, E.
  3. Structure. 2009 17(12): 1625-1635.
  1. 19.   The mechanism of RNase III action: How Dicer dices
  2. Ji, X. H.
  3. Rna Interference. 2008 320: 99-116.
  1. 20.   Madurahydroxylactone derivatives as dual inhibitors of human immunodeficiency virus type 1 integrase and RNase H
  2. March, C.; Beutler, J. A.; Wamiru, A.; Budihas, S.; Mollmann, U.; Heinisch, L.; Mellors, J. W.; Le Grice, S. F.; Pommier, Y.
  3. Antimicrobial Agents and Chemotherapy. 2008 52(1): 361-364.
  1. 21.   Mutations in the U5 region adjacent to the primer binding site affect tRNA cleavage by human immunodeficiency virus type 1 reverse transcriptase in vivo
  2. Oh, J.; McWilliams, M. J.; Julias, J. G.; Hughes, S. H.
  3. Journal of Virology. 2008 82(2): 719-727.
  1. 22.   Structural probing of the HIV-1 polypurine tract RNA : DNA hybrid using classic nucleic acid ligands
  2. Turner, K. B.; Brinson, R. G.; Yi-Brunozzi, H. Y.; Rausch, J. W.; Miller, J. T.; Le Grice, S.; Marino, J. P.; Fabris, D.
  3. Nucleic Acids Research. 2008 36(8): 2799-2810.
  1. 23.   Human immunodeficiency virus type 1 cDNAs produced in the presence of APOBEC3G exhibit defects in plus-strand DNA transfer and integration
  2. Mbisa, J. L.; Barr, R.; Thomas, J. A.; Vandegraaff, N.; Dorweiler, I. J.; Svarovskaia, E. S.; Brown, W. L.; Mansky, L. M.; Gorelick, R. J.; Harris, R. S.; Engelman, A.; Pathak, V. K.
  3. Journal of Virology. 2007, Jul; 81(13): 7099-7110.
  1. 24.   Conformation of 3'CMP bound to RNase a using TrNOESY
  2. Lee, Y. C.; Jackson, P. L.; Jablonsky, M. J.; Muccio, D. D.
  3. Archives of Biochemistry and Biophysics. 2007, Jul; 463(1): 37-46.
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