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首页> 外文期刊>eLife journal >Competing scaffolding proteins determine capsid size during mobilization of Staphylococcus aureus pathogenicity islands
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Competing scaffolding proteins determine capsid size during mobilization of Staphylococcus aureus pathogenicity islands

机译:竞争性支架蛋白在金黄色葡萄球菌致病岛动员期间确定衣壳大小

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摘要

Staphylococcus aureus pathogenicity islands (SaPIs), such as SaPI1, exploit specific helper bacteriophages, like 80α, for their high frequency mobilization, a process termed ‘molecular piracy’. SaPI1 redirects the helper’s assembly pathway to form small capsids that can only accommodate the smaller SaPI1 genome, but not a complete phage genome. SaPI1 encodes two proteins, CpmA and CpmB, that are responsible for this size redirection. We have determined the structures of the 80α and SaPI1 procapsids to near-atomic resolution by cryo-electron microscopy, and show that CpmB competes with the 80α scaffolding protein (SP) for a binding site on the capsid protein (CP), and works by altering the angle between capsomers. We probed these interactions genetically and identified second-site suppressors of lethal mutations in SP. Our structures show, for the first time, the detailed interactions between SP and CP in a bacteriophage, providing unique insights into macromolecular assembly processes.
机译:金黄色葡萄球菌致病岛(SaPIs)(例如SaPI1)利用特定的辅助噬菌体(如80α)进行高频动员,这一过程称为“分子盗版”。 SaPI1重定向了辅助基因的组装途径,形成了只能容纳较小SaPI1基因组而不容纳完整噬菌体基因组的小衣壳。 SaPI1编码两种蛋白质,CpmA和CpmB,负责这种大小重定向。我们已经通过冷冻电子显微镜确定了80α和SaPI1衣壳的结构至接近原子分辨率,并显示CpmB与80α支架蛋白(SP)竞争衣壳蛋白(CP)上的结合位点,并通过改变衣壳之间的角度。我们从基因上探讨了这些相互作用,并确定了SP致死突变的第二位抑制子。我们的结构首次显示了噬菌体中SP和CP之间的详细相互作用,从而提供了对大分子组装过程的独特见解。

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