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Architecture of the Bacterial Flagellar Distal Rod and Hook of Salmonella

机译:细菌鞭毛远端杆和沙门氏菌钩的体系结构

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摘要

The bacterial flagellum is a large molecular complex composed of thousands of protein subunits for motility. The filamentous part of the flagellum, which is called the axial structure, consists of the filament, the hook, and the rods, with other minor components—the cap protein and the hook associated proteins. They share a common basic architecture of subunit arrangement, but each part shows quite distinct mechanical properties to achieve its specific function. The distal rod and the hook are helical assemblies of a single protein, FlgG and FlgE, respectively. They show a significant sequence similarity but have distinct mechanical characteristics. The rod is a rigid, straight cylinder, whereas the hook is a curved tube with high bending flexibility. Here, we report a structural model of the rod constructed by using the crystal structure of a core fragment of FlgG with a density map obtained previously by electron cryomicroscopy. Our structural model suggests that a segment called L-stretch plays a key role in achieving the distinct mechanical properties of the rod using a structurally similar component protein to that of the hook.
机译:细菌鞭毛是一种大分子复合物,由成千上万的运动性蛋白质亚基组成。鞭毛的丝状部分,称为轴向结构,由细丝,钩和杆组成,并具有其他次要成分—帽蛋白和与钩相关的蛋白。它们共享子单元排列的通用基本体系结构,但每个部分都显示出完全不同的机械特性以实现其特定功能。远端杆和钩分别是单个蛋白质FlgG和FlgE的螺旋组装。它们显示出显着的序列相似性,但具有独特的机械特性。杆是刚性的直圆柱,而钩则是具有高弯曲挠性的弯曲管。在这里,我们报告了通过使用FlgG核心片段的晶体结构与先前通过电子低温显微镜获得的密度图构建的棒的结构模型。我们的结构模型表明,一个称为L形拉伸的片段在使用与钩子相似的结构蛋白中,在实现杆的独特机械性能方面起着关键作用。

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