| Literature DB >> 27591890 |
Mihails Shishovs1, Janis Rumnieks1, Christoph Diebolder2, Kristaps Jaudzems3, Loren B Andreas3, Jan Stanek3, Andris Kazaks1, Svetlana Kotelovica1, Inara Akopjana1, Guido Pintacuda3, Roman I Koning4, Kaspars Tars5.
Abstract
AP205 is a single-stranded RNA bacteriophage that has a coat protein sequence not similar to any other known single-stranded RNA phage. Here, we report an atomic-resolution model of the AP205 virus-like particle based on a crystal structure of an unassembled coat protein dimer and a cryo-electron microscopy reconstruction of the assembled particle, together with secondary structure information from site-specific solid-state NMR data. The AP205 coat protein dimer adopts the conserved Leviviridae coat protein fold except for the N-terminal region, which forms a beta-hairpin in the other known single-stranded RNA phages. AP205 has a similar structure at the same location formed by N- and C-terminal beta-strands, making it a circular permutant compared to the other coat proteins. The permutation moves the coat protein termini to the most surface-exposed part of the assembled particle, which explains its increased tolerance to long N- and C-terminal fusions.Entities:
Keywords: Leviviridae; RNA bacteriophage; circular permutation; coat protein; virus-like particle
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Year: 2016 PMID: 27591890 DOI: 10.1016/j.jmb.2016.08.025
Source DB: PubMed Journal: J Mol Biol ISSN: 0022-2836 Impact factor: 5.469