| Literature DB >> 19914170 |
In-Ja L Byeon1, Xin Meng, Jinwon Jung, Gongpu Zhao, Ruifeng Yang, Jinwoo Ahn, Jiong Shi, Jason Concel, Christopher Aiken, Peijun Zhang, Angela M Gronenborn.
Abstract
Mature HIV-1 particles contain conical-shaped capsids that enclose the viral RNA genome and perform essential functions in the virus life cycle. Previous structural analysis of two- and three-dimensional arrays of the capsid protein (CA) hexamer revealed three interfaces. Here, we present a cryoEM study of a tubular assembly of CA and a high-resolution NMR structure of the CA C-terminal domain (CTD) dimer. In the solution dimer structure, the monomers exhibit different relative orientations compared to previous X-ray structures. The solution structure fits well into the EM density map, suggesting that the dimer interface is retained in the assembled CA. We also identified a CTD-CTD interface at the local three-fold axis in the cryoEM map and confirmed its functional importance by mutagenesis. In the tubular assembly, CA intermolecular interfaces vary slightly, accommodating the asymmetry present in tubes. This provides the necessary plasticity to allow for controlled virus capsid dis/assembly.Entities:
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Year: 2009 PMID: 19914170 PMCID: PMC2782912 DOI: 10.1016/j.cell.2009.10.010
Source DB: PubMed Journal: Cell ISSN: 0092-8674 Impact factor: 41.582