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鞭毛蛋白末端的直接相互作用对鞭毛丝的多态性能力至关重要。

Direct interaction of flagellin termini essential for polymorphic ability of flagellar filament.

作者信息

Mimori-Kiyosue Y, Vonderviszt F, Yamashita I, Fujiyoshi Y, Namba K

机构信息

International Institute for Advanced Research, Matsushita Electric Industrial Co., Ltd., Seika, Japan.

出版信息

Proc Natl Acad Sci U S A. 1996 Dec 24;93(26):15108-13. doi: 10.1073/pnas.93.26.15108.

Abstract

We report the structures of flagellar filaments reconstituted from various flagellins with small terminal truncations. Flagellins from Salmonella typhimurium strains SJW1103 (wild type), SJW1660, and SJW1655 were used, which form a left-handed supercoil, the L- and R-type straight forms, respectively. Structure analyses were done by electron cryomicroscopy and helical image reconstruction with a help of x-ray fiber diffraction for determining precise helical symmetries. Truncation of either terminal region, irrespective of the original flagellin species, results in a straight filament having a helical symmetry distinct either from the L- or R-type. This filament structure is named Lt-type. Although the local subunit packing is similar in all three types, a close comparison shows that the Lt-type packing is almost identical to the R-type but distinct from the L-type, which demonstrates the strong two-state preference of the subunit interactions. The structure clearly suggests that both termini are located in the inner tube of the concentric double-tubular structure of the filament core, and their proper interaction is responsible for the correct folding of fairly large terminal regions that form the inner tube. The double tubular structure appears to be essential for the polymorphic ability of flagellar filaments, which is required for the swimming-tumbling of bacterial taxis.

摘要

我们报道了由各种带有小末端截短的鞭毛蛋白重构的鞭毛丝的结构。使用了鼠伤寒沙门氏菌菌株SJW1103(野生型)、SJW1660和SJW1655的鞭毛蛋白,它们分别形成左手超螺旋、L型和R型直丝。通过电子冷冻显微镜和螺旋图像重建,并借助X射线纤维衍射来进行结构分析,以确定精确的螺旋对称性。无论原始鞭毛蛋白种类如何,任一末端区域的截短都会导致形成具有与L型或R型不同的螺旋对称性的直丝。这种丝结构被命名为Lt型。尽管在所有三种类型中局部亚基堆积相似,但仔细比较表明Lt型堆积几乎与R型相同,但与L型不同,这表明亚基相互作用具有强烈的两种状态偏好。该结构清楚地表明,两个末端都位于鞭毛丝核心同心双管状结构的内管中,它们的适当相互作用负责形成内管的相当大的末端区域的正确折叠。双管状结构似乎对于鞭毛丝的多态性能力至关重要,而这是细菌趋化性的游动-翻滚所必需的。

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