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  1. 1.   High-efficiency enrichment enables identification of aptamers to circulating Plasmodium falciparum-infected erythrocytes
  2. Oteng, Eugene K; Gu, Wenjuan; McKeague, Maureen
  3. Scientific reports. 2020, Jun 16; 10(1): 9706.
  1. 2.   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. 3.   Structural Basis for the Role of the K65R Mutation in HIV-1 Reverse Transcriptase Polymerization, Excision Antagonism, and Tenofovir Resistance
  2. Das, K.; Bandwar, R. P.; White, K. L.; Feng, J. Y.; Sarafianos, S. G.; Tuske, S.; Tu, X. Y.; Clark, A. D.; Boyer, P. L.; Hou, X. R.; Gaffney, B. L.; Jones, R. A.; Miller, M. D.; Hughes, S. H.; Arnold, E.
  3. Journal of Biological Chemistry. 2009 284(50): 35092-35100.
  1. 4.   Characterization of novel non-nucleoside reverse transcriptase (RT) inhibitor resistance mutations at residues 132 and 135 in the 51 kDa subunit of HIV-1 RT
  2. Nissley, D. V.; Radzio, J.; Ambrose, Z.; Sheen, C. W.; Hamamouch, N.; Moore, K. L.; Tachedjian, G.; Sluis-Cremer, N.
  3. Biochemical Journal. 2007, May; 404: 151-157.
  1. 5.   Action of Anti-HIV drugs and resistance: Reverse transcriptase inhibitors and protease inhibitors
  2. Imamichi, T.
  3. Current Pharmaceutical Design. 2004 10(32): 4039-4053.
  1. 6.   HIV protease: Enzyme function and drug resistance
  2. Gulnik, S.; Erickson, J. W.; Xie, D.
  3. Vitamins and Hormones - Advances in Research and Applications, Vol 58. 2000 58: 213-256.
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