外壳蛋白
核糖核酸
衣壳
噬菌体
生物
二聚体
结晶学
外套
化学
生物物理学
病毒
病毒学
遗传学
基因
大肠杆菌
有机化学
古生物学
作者
M. Shishovs,J. Rumnieks,Christoph A. Diebolder,Kristaps Jaudzems,Loren B. Andreas,Jan Staněk,Andris Kazāks,Svetlana Kotelovica,Ināra Akopjana,Guido Pintacuda,Roman I. Koning,Kaspars Tārs
标识
DOI:10.1016/j.jmb.2016.08.025
摘要
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.
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