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Structure of a Chaperone-Usher Pilus Reveals the Molecular Basis of Rod Uncoiling

机译:分子伴侣的结构揭示了杆解开的分子基础

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摘要

Types 1 and P pili are prototypical bacterial cell-surface appendages playing essential roles in mediating adhesion of bacteria to the urinary tract. These pili, assembled by the chaperone-usher pathway, are polymers of pilus subunits assembling into two parts: a thin, short tip fibrillum at the top, mounted on a long pilus rod. The rod adopts a helical quaternary structure and is thought to play essential roles: its formation may drive pilus extrusion by preventing backsliding of the nascent growing pilus within the secretion pore; the rod also has striking spring-like properties, being able to uncoil and recoil depending on the intensity of shear forces generated by urine flow. Here, we present an atomic model of the P pilus generated from a 3.8 angstrom resolution cryo-electron microscopy reconstruction. This structure provides the molecular basis for the rod's remarkable mechanical properties and illuminates its role in pilus secretion.
机译:1型和P菌毛是典型的细菌细胞表面附肢,在介导细菌与尿道的黏附中起重要作用。这些菌毛是由陪伴者-携带者途径组装而成的,是菌毛亚基的聚合物,分为两部分:顶部细而短的纤毛,安装在长的菌毛棒上。该杆采用螺旋四级结构,并被认为起重要作用:杆的形成可通过防止新生的生长中的菌毛在分泌孔内向后滑动来驱动菌毛挤压。杆还具有惊人的类似于弹簧的性能,能够根据尿流产生的剪切力的强度而解开和反冲。在这里,我们介绍了从3.8埃分辨率的冷冻电子显微镜重建生成的P菌毛的原子模型。这种结构为杆的卓越机械性能提供了分子基础,并阐明了杆在菌毛分泌中的作用。

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