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Structural basis of chaperone–subunit complex recognition by the type 1 pilus assembly platform FimD

机译:1型菌毛组装平台FimD识别伴侣-亚基复合物的结构基础

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摘要

Adhesive type 1 pili from uropathogenic Escherichia coli are filamentous protein complexes that are attached to the assembly platform FimD in the outer membrane. During pilus assembly, FimD binds complexes between the chaperone FimC and type 1 pilus subunits in the periplasm and mediates subunit translocation to the cell surface. Here we report nuclear magnetic resonance and X-ray protein structures of the N-terminal substrate recognition domain of FimD (FimDN) before and after binding of a chaperone–subunit complex. FimDN consists of a flexible N-terminal segment of 24 residues, a structured core with a novel fold, and a C-terminal hinge segment. In the ternary complex, residues 1–24 of FimDN specifically interact with both FimC and the subunit, acting as a sensor for loaded FimC molecules. Together with in vivo complementation studies, we show how this mechanism enables recognition and discrimination of different chaperone–subunit complexes by bacterial pilus assembly platforms.
机译:来自尿路致病性大肠杆菌的粘性1型菌毛是丝状蛋白复合物,附着在外膜的装配平台FimD上。在菌毛组装过程中,FimD结合分子伴侣FimC和周质中的1型菌毛亚基之间的复合物,并介导亚基移位到细胞表面。在这里,我们报告分子伴侣-亚基复合物结合前后FimD(FimDN)N末端底物识别域的核磁共振和X射线蛋白质结构。 FimDN由24个残基的柔性N末端片段,具有新颖折叠的结构化核心和C末端铰链片段组成。在三元复合物中,FimDN的残基1-24与FimC和亚基特异性相互作用,充当加载的FimC分子的传感器。连同体内互补研究,我们展示了这种机制如何通过细菌菌毛组装平台实现对不同伴侣-亚基复合物的识别和区分。

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