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鼠疫耶尔森菌周质伴侣蛋白Caf1M的FGL序列的结构和功能意义

Structural and functional significance of the FGL sequence of the periplasmic chaperone Caf1M of Yersinia pestis.

作者信息

Chapman D A, Zavialov A V, Chernovskaya T V, Karlyshev A V, Zav'yalova G A, Vasiliev A M, Dudich I V, Abramov V M, Zav'yalov V P, MacIntyre S

机构信息

Microbiology Division, School of Animal and Microbial Sciences, University of Reading, Reading RG6 6AJ, United Kingdom.

出版信息

J Bacteriol. 1999 Apr;181(8):2422-9. doi: 10.1128/JB.181.8.2422-2429.1999.

Abstract

The periplasmic molecular chaperone Caf1M of Yersinia pestis is a typical representative of a subfamily of specific chaperones involved in assembly of surface adhesins with a very simple structure. One characteristic feature of this Caf1M-like subfamily is possession of an extended, variable sequence (termed FGL) between the F1 and subunit binding G1 beta-strands. In contrast, FGS subfamily members, characterized by PapD, have a short F1-G1 loop and are involved in assembly of complex pili. To elucidate the structural and functional significance of the FGL sequence, a mutant Caf1M molecule (dCaf1M), in which the 27 amino acid residues between the F1 and G1 beta-strands had been deleted, was constructed. Expression of the mutated caf1M in Escherichia coli resulted in accumulation of high levels of dCaf1M. The far-UV circular dichroism spectra of the mutant and wild-type proteins were indistinguishable and exhibited practically the same temperature and pH dependencies. Thus, the FGL sequence of Caf1M clearly does not contribute significantly to the stability of the protein conformation. Preferential cleavage of Caf1M by trypsin at Lys-119 confirmed surface exposure of this part of the FGL sequence in the isolated chaperone and periplasmic chaperone-subunit complex. There was no evidence of surface-localized Caf1 subunit in the presence of the Caf1A outer membrane protein and dCaf1M. In contrast to Caf1M, dCaf1M was not able to form a stable complex with Caf1 nor could it protect the subunit from proteolytic degradation in vivo. This demonstration that the FGL sequence is required for stable chaperone-subunit interaction, but not for folding of a stable chaperone, provides a sound basis for future detailed molecular analyses of the FGL subfamily of chaperones.

摘要

鼠疫耶尔森菌的周质分子伴侣Caf1M是参与表面黏附素组装的特定伴侣蛋白亚家族的典型代表,其结构非常简单。这个类似Caf1M的亚家族的一个特征是在F1和亚基结合G1β链之间拥有一个延伸的可变序列(称为FGL)。相比之下,以PapD为特征的FGS亚家族成员具有短的F1 - G1环,并参与复杂菌毛的组装。为了阐明FGL序列的结构和功能意义,构建了一个突变的Caf1M分子(dCaf1M),其中F1和G1β链之间的27个氨基酸残基被删除。在大肠杆菌中表达突变的caf1M导致高水平dCaf1M的积累。突变蛋白和野生型蛋白的远紫外圆二色光谱没有区别,并且在温度和pH依赖性方面几乎相同。因此,Caf1M的FGL序列显然对蛋白质构象的稳定性没有显著贡献。胰蛋白酶在Lys - 119处对Caf1M的优先切割证实了FGL序列的这一部分在分离的伴侣蛋白和周质伴侣 - 亚基复合物中的表面暴露。在存在Caf1A外膜蛋白和dCaf1M的情况下,没有证据表明存在表面定位的Caf1亚基。与Caf1M不同,dCaf1M不能与Caf1形成稳定的复合物,也不能在体内保护亚基免受蛋白水解降解。这表明FGL序列是稳定的伴侣 - 亚基相互作用所必需的,但不是稳定伴侣蛋白折叠所必需的,为未来对伴侣蛋白FGL亚家族进行详细的分子分析提供了坚实的基础。

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