| Literature DB >> 29345807 |
Lalit Deshmukh1,2, Vitali Tugarinov1, Daniel H Appella3, G Marius Clore1.
Abstract
HIV-1 nucleocapsid (NCp7) is a two Cys2 HisCys zinc knuckle (N-Zn and C-Zn) protein that plays a key role in viral replication. NCp7 conformational dynamics is characterized by NMR relaxation dispersion and chemical exchange saturation transfer measurements. While the N-Zn knuckle is conformationally stable, the C-Zn knuckle interconverts on the millisecond timescale between the major state, in which the zinc is coordinated by three cysteines and a histidine, and two folded minor species (with populations around 1 %) in which one of the coordination bonds (Cys413-Sγ-Zn or His421-Nϵ2-Zn) is hydrolyzed. These findings explain why antiretroviral thioesters specifically disrupt the C-Zn knuckle by initial acylation of Cys413, and show that transient, sparsely-populated ("dark"), excited states of proteins can present effective targets for rational drug design.Entities:
Keywords: HIV-1 nucleocapsid; antiretrovirals; conformational exchange; relaxation dispersion; zinc
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Year: 2018 PMID: 29345807 PMCID: PMC6034507 DOI: 10.1002/anie.201713172
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336