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通过电子冷冻显微镜技术获得的细菌鞭毛丝的完整原子模型。

Complete atomic model of the bacterial flagellar filament by electron cryomicroscopy.

作者信息

Yonekura Koji, Maki-Yonekura Saori, Namba Keiichi

机构信息

Protonic NanoMachine Project, ERATO, JST.

出版信息

Nature. 2003 Aug 7;424(6949):643-50. doi: 10.1038/nature01830.

Abstract

The bacterial flagellar filament is a helical propeller for bacterial locomotion. It is a helical assembly of a single protein, flagellin, and its tubular structure is formed by 11 protofilaments in two distinct conformations, L- and R-type, for supercoiling. The X-ray crystal structure of a flagellin fragment lacking about 100 terminal residues revealed the protofilament structure, but the full filament structure is still essential for understanding the mechanism of supercoiling and polymerization. Here we report a complete atomic model of the R-type filament by electron cryomicroscopy. A density map obtained from image data up to 4 A resolution shows the feature of alpha-helical backbone and some large side chains. The atomic model built on the map reveals intricate molecular packing and an alpha-helical coiled coil formed by the terminal chains in the inner core of the filament, with its intersubunit hydrophobic interactions having an important role in stabilizing the filament.

摘要

细菌鞭毛丝是用于细菌运动的螺旋推进器。它是单一蛋白质鞭毛蛋白的螺旋组装体,其管状结构由处于两种不同构象(L型和R型)的11条原丝形成超螺旋。缺少约100个末端残基的鞭毛蛋白片段的X射线晶体结构揭示了原丝结构,但完整的丝状体结构对于理解超螺旋和聚合机制仍然至关重要。在此,我们通过电子冷冻显微镜报告了R型丝状体的完整原子模型。从高达4埃分辨率的图像数据获得的密度图显示了α-螺旋主链和一些大侧链的特征。基于该图构建的原子模型揭示了复杂的分子堆积以及由丝状体内核中的末端链形成的α-螺旋卷曲螺旋,其亚基间疏水相互作用在稳定丝状体方面具有重要作用。

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