Structural features in common of HBV and HIV-1 resistance against chirally-distinct nucleoside analogues entecavir and lamivudine.

Yoshiaki Yasutake, Shin-Ichiro Hattori, Noriko Tamura, Kouki Matsuda, Satoru Kohgo, Kenji Maeda, Hiroaki Mitsuya

Journal: Scientific reports 2020;10(1):3021

PMID: 32080249

Abstract

Chronic hepatitis B virus (HBV) infection is a major public health problem that affects millions of people worldwide. Nucleoside analogue reverse transcriptase (RT) inhibitors, such as entecavir (ETV) and lamivudine (3TC), serve as crucial anti-HBV drugs. However, structural studies of HBV RT have been hampered due to its unexpectedly poor solubility. Here, we show that human immunodeficiency virus type-1 (HIV-1) with HBV-associated amino acid substitutions Y115F/F116Y/Q151M in its RT (HIV) is highly susceptible to ETV and 3TC. Additionally, we experimentally simulated previously reported ETV/3TC resistance for HBV using HIV with F160M/M184V (L180M/M204V in HBV RT) substituted. We determined crystal structures for HIV-1 RT:DNA complexed with 3TC-triphosphate (3TC-TP)/ETV-triphosphate (ETV-TP)/dCTP/dGTP. These structures revealed an atypically tight binding conformation of 3TC-TP, where the Met184 side-chain is pushed away by the oxathiolane of 3TC-TP and exocyclic methylene of ETV-TP. Structural analysis of RT:DNA:3TC-TP also demonstrated that the loosely bound 3TC-TP is misaligned at the active site to prevent a steric clash with the side chain γ-methyl of Val184. These findings shed light on the common structural mechanism of HBV and HIV-1 resistance to 3TC and ETV and should aid in the design of new agents to overcome drug resistance to 3TC and ETV.

Address: Bioproduction Research Institute, National Institute of Advanced Industrial Science and Technology (AIST), Sapporo, 062-8517, Japan. [email protected].; Computational Bio Big-Data Open Innovation Laboratory (CBBD-OIL), AIST, Tokyo, 169-8555, Japan. [email protected].; National Center for Global Health and Medicine Research Institute, Tokyo, 162-8655, Japan.; Bioproduction Research Institute, National Institute of Advanced Industrial Science and Technology (AIST), Sapporo, 062-8517, Japan.; National Center for Global Health and Medicine Research Institute, Tokyo, 162-8655, Japan.; Faculty of Pharmaceutical Sciences, Sojo University, Kumamoto, 860-0082, Japan.; National Center for Global Health and Medicine Research Institute, Tokyo, 162-8655, Japan. [email protected].; National Center for Global Health and Medicine Research Institute, Tokyo, 162-8655, Japan.; Experimental Retrovirology Section, HIV and AIDS Malignancy Branch, National Cancer Institute, National Institutes of Health, Bethesda, MD, 20892, USA.; Department of Clinical Sciences, Kumamoto University Hospital, Kumamoto, 860-8556, Japan.
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