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PMID: 8805568 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Structure of unliganded HIV-1 reverse transcriptase at 2.7 A resolution: implications of conformational changes for polymerization and inhibition mechanisms.

Structure (London, England : 1993) ·Vol. 4 ·No. 7 ·1996-07-15 ·Pages 853-60

Hsiou Y, Ding J, Das K, Clark AD, Hughes SH, Arnold E

Abstract

HIV-1 reverse transcriptase (RT) is a major target for anti-HIV drugs. A considerable amount of information about the structure of RT is available, both unliganded and in complex with template-primer or non-nucleoside RT inhibitors (NNRTIs). But significant conformational differences in the p66 polymerase domain among the unliganded structures have complicated the interpretation of these data, leading to different proposals for the mechanisms of polymerization and inhibition. We report the structure of an unliganded RT at 2.7 A resolution, crystallized in space group C2 with a crystal packing similar to that of the RT-NNRTI complexes. The p66 thumb subdomain is folded into the DNA-binding cleft. Comparison of the unliganded RT structures with the DNA-bound RT and the NNRTI-bound RT structures reveals that the p66 thumb subdomain can exhibit two different upright conformations. In the DNA-bound RT, the p66 thumb subdomain adopts an upright position that can be described as resulting from a rigid-body rotation of the p66 thumb along the "thumb's knuckle' located near residues Trp239 (in strand beta 14) and Val317 (in beta 15) compared with the thumb position in the unliganded RT structure. NNRTI binding induces an additional hinge movement of the p66 thumb near the thumb's knuckle, causing the p66 thumb to adopt a configuration that is even more extended than in the DNA-bound RT structure. The p66 thumb subdomain is extremely flexible. NNRTI binding induces both short-range and long-range structural distortions in several domains of RT, which are expected to alter the position and conformation of the template-primer. These changes may account for the inhibition of polymerization and the alteration of the cleavage specificity of RNase H by NNRTI binding.

MeSH Terms
Anti-HIV Agents/pharmacology Binding Sites Biopolymers HIV Reverse Transcriptase/chemistry HIV-1/enzymology Molecular Sequence Data Protein Conformation Reverse Transcriptase Inhibitors/pharmacology X-Ray Diffraction
Chemicals
Anti-HIV Agents Biopolymers Reverse Transcriptase Inhibitors HIV Reverse Transcriptase
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Hsiou Y
Center for Advanced Biotechnology and Medicine (CABM), Piscataway, NJ, USA.
Ding J
Das K
Clark A D
Hughes S H
Arnold E
Article Info
Journal
Structure (London, England : 1993)
Abbr.
Structure
ISSN
0969-2126
Published
1996-07-15
Pages
853-60
Language
English
Region
United States
NLM ID
101087697
Subset
IM
Grants
NIAID NIH HHS · AI 27690 · United States
NIAID NIH HHS · AI 36144 · United States
Databases
PDB
Analysis Services
Analysis Services

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