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表面上 Caf1A 上的保守疏水区簇对于 F1 抗原组装是重要的。

Conserved hydrophobic clusters on the surface of the Caf1A usher C-terminal domain are important for F1 antigen assembly.

机构信息

Department of Molecular Biology, Uppsala BioCenter, Swedish University of Agricultural Sciences, Box 590, SE-75124 Uppsala, Sweden.

出版信息

J Mol Biol. 2010 Oct 22;403(2):243-59. doi: 10.1016/j.jmb.2010.08.034. Epub 2010 Aug 24.

Abstract

The outer membrane usher protein Caf1A of the plague pathogen Yersinia pestis is responsible for the assembly of a major surface antigen, the F1 capsule. The F1 capsule is mainly formed by thin linear polymers of Caf1 (capsular antigen fraction 1) protein subunits. The Caf1A usher promotes polymerization of subunits and secretion of growing polymers to the cell surface. The usher monomer (811 aa, 90.5 kDa) consists of a large transmembrane β-barrel that forms a secretion channel and three soluble domains. The periplasmic N-terminal domain binds chaperone-subunit complexes supplying new subunits for the growing fiber. The middle domain, which is structurally similar to Caf1 and other fimbrial subunits, serves as a plug that regulates the permeability of the usher. Here we describe the identification, characterization, and crystal structure of the Caf1A usher C-terminal domain (Caf1A(C)). Caf1A(C) is shown to be a periplasmic domain with a seven-stranded β-barrel fold. Analysis of C-terminal truncation mutants of Caf1A demonstrated that the presence of Caf1A(C) is crucial for the function of the usher in vivo, but that it is not required for the initial binding of chaperone-subunit complexes to the usher. Two clusters of conserved hydrophobic residues on the surface of Caf1A(C) were found to be essential for the efficient assembly of surface polymers. These clusters are conserved between the FGL family and the FGS family of chaperone-usher systems.

摘要

鼠疫耶尔森氏菌的外膜 usher 蛋白 Caf1A 负责组装主要表面抗原 F1 荚膜。F1 荚膜主要由 Caf1(荚膜抗原 F1 分 1)蛋白亚基的细线性聚合物组成。Caf1A usher 促进亚基的聚合和生长聚合物向细胞表面的分泌。 usher 单体(811 aa,90.5 kDa)由一个大的跨膜 β-桶组成,该桶形成一个分泌通道和三个可溶性结构域。周质 N 端结构域结合伴侣-亚基复合物,为生长纤维提供新的亚基。中间结构域在结构上与 Caf1 和其他菌毛亚基相似,充当调节 usher 通透性的塞子。在这里,我们描述了 Caf1A usher C 端结构域(Caf1A(C))的鉴定、表征和晶体结构。结果表明,Caf1A(C)是一个周质结构域,具有七股β-桶折叠。对 Caf1A 末端截断突变体的分析表明,Caf1A(C)的存在对于 usher 在体内的功能至关重要,但对于伴侣-亚基复合物与 usher 的初始结合不是必需的。在 Caf1A(C)表面发现了两个保守的疏水性残基簇,对于表面聚合物的有效组装是必需的。这些簇在 FGL 家族和 FGS 家族的伴侣 usher 系统之间是保守的。

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