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鞭毛生物合成和III型分泌中输出伴侣对多肽的识别模式相似。

Similar modes of polypeptide recognition by export chaperones in flagellar biosynthesis and type III secretion.

作者信息

Evdokimov Artem G, Phan Jason, Tropea Joseph E, Routzahn Karen M, Peters Howard K, Pokross Matthew, Waugh David S

机构信息

Macromolecular Crystallography Laboratory, Center for Cancer Research, National Cancer Institute at Frederick, National Institutes of Health, PO Box B, Frederick, Maryland 21702-1201, USA.

出版信息

Nat Struct Biol. 2003 Oct;10(10):789-93. doi: 10.1038/nsb982. Epub 2003 Sep 7.

Abstract

Assembly of the bacterial flagellum and type III secretion in pathogenic bacteria require cytosolic export chaperones that interact with mobile components to facilitate their secretion. Although their amino acid sequences are not conserved, the structures of several type III secretion chaperones revealed striking similarities between their folds and modes of substrate recognition. Here, we report the first crystallographic structure of a flagellar export chaperone, Aquifex aeolicus FliS. FliS adopts a novel fold that is clearly distinct from those of the type III secretion chaperones, indicating that they do not share a common evolutionary origin. However, the structure of FliS in complex with a fragment of FliC (flagellin) reveals that, like the type III secretion chaperones, flagellar export chaperones bind their target proteins in extended conformation and suggests that this mode of recognition may be widely used in bacteria.

摘要

病原菌中细菌鞭毛的组装和III型分泌需要胞质输出分子伴侣,这些分子伴侣与可移动成分相互作用以促进它们的分泌。尽管它们的氨基酸序列不保守,但几种III型分泌分子伴侣的结构显示出它们在折叠和底物识别模式上有惊人的相似性。在此,我们报道了鞭毛输出分子伴侣嗜热栖热菌FliS的首个晶体结构。FliS采用了一种与III型分泌分子伴侣明显不同的新折叠方式,表明它们没有共同的进化起源。然而,FliS与FliC(鞭毛蛋白)片段形成的复合物结构显示,与III型分泌分子伴侣一样,鞭毛输出分子伴侣以伸展构象结合其靶蛋白,这表明这种识别模式可能在细菌中广泛存在。

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