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A Distinct Type of Pilus from the Human Microbiome

机译:人类微生物组中不同类型的毛lu

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摘要

Pili are proteinaceous polymers of linked pilins that protrude from the cell surface of many bacteria and often mediate adherence and virulence. We investigated a set of 20 Bacteroidia pilins from the human microbiome whose structures and mechanism of assembly were unknown. Crystal structures and biochemical data revealed a diverse protein superfamily with a common Greek-key b sandwich fold with two transthyretin-like repeats that polymerize into a pilus through a strand-exchange mechanism. The assembly mechanism of the central, structural pilins involves proteinase-assisted removal of their N-terminal beta strand, creating an extended hydrophobic groove that binds the C-terminal donor strands of the incoming pilin. Accessory pilins at the tip and base have unique structural features specific to their location, allowing initiation or termination of the assembly. The Bacteroidia pilus, therefore, has a biogenesis mechanism that is distinct from other known pili and likely represents a different type of bacterial pilus.
机译:菌毛是连接菌毛蛋白的蛋白质聚合物,从许多细菌的细胞表面突出,通常介导粘附和毒力。我们调查了来自人类微生物组的20种细菌菌毛素的集合,其结构和组装机制尚不清楚。晶体结构和生化数据显示,蛋白质具有一个超家族,具有普通的希腊钥匙b三明治折叠,带有两个像甲状腺素蛋白一样的重复序列,通过链交换机制聚合成菌毛。中央结构性菌毛蛋白的组装机制涉及蛋白酶协助去除其N端β链,从而形成一个延伸的疏水沟,该疏水沟与进入的菌毛的C末端供体链结合。针尖和针尖上的附件毛毡具有特定于其位置的独特结构特征,从而可以启动或终止组件。因此,细菌菌毛具有不同于其他已知菌毛的生物发生机制,并且可能代表了不同类型的细菌菌毛。

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