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PrsA的结构-功能分析揭示了类小脯氨酸异构酶结构域以及侧翼的N端和C端结构域在枯草芽孢杆菌蛋白质折叠和分泌中的作用。

Structure-function analysis of PrsA reveals roles for the parvulin-like and flanking N- and C-terminal domains in protein folding and secretion in Bacillus subtilis.

作者信息

Vitikainen Marika, Lappalainen Ilkka, Seppala Raili, Antelmann Haike, Boer Harry, Taira Suvi, Savilahti Harri, Hecker Michael, Vihinen Mauno, Sarvas Matti, Kontinen Vesa P

机构信息

Vaccine Development Laboratory, National Public Health Institute, Mannerheimintie 166, FIN-00300 Helsinki, Finland.

出版信息

J Biol Chem. 2004 Apr 30;279(18):19302-14. doi: 10.1074/jbc.M400861200. Epub 2004 Feb 19.

Abstract

The PrsA protein of Bacillus subtilis is an essential membrane-bound lipoprotein that is assumed to assist post-translocational folding of exported proteins and stabilize them in the compartment between the cytoplasmic membrane and cell wall. This folding activity is consistent with the homology of a segment of PrsA with parvulin-type peptidyl-prolyl cis/trans isomerases (PPIase). In this study, molecular modeling showed that the parvulin-like region can adopt a parvulin-type fold with structurally conserved active site residues. PrsA exhibits PPIase activity in a manner dependent on the parvulin-like domain. We constructed deletion, peptide insertion, and amino acid substitution mutations and demonstrated that the parvulin-like domain as well as flanking N- and C-terminal domains are essential for in vivo PrsA function in protein secretion and growth. Surprisingly, none of the predicted active site residues of the parvulin-like domain was essential for growth and protein secretion, although several active site mutations reduced or abolished the PPIase activity or the ability of PrsA to catalyze proline-limited protein folding in vitro. Our results indicate that PrsA is a PPIase, but the essential role in vivo seems to depend on some non-PPIase activity of both the parvulin-like and flanking domains.

摘要

枯草芽孢杆菌的PrsA蛋白是一种必需的膜结合脂蛋白,被认为可协助输出蛋白的翻译后折叠,并使其在细胞质膜和细胞壁之间的区域保持稳定。这种折叠活性与PrsA的一段序列与小菌素型肽基脯氨酰顺/反异构酶(PPIase)的同源性一致。在本研究中,分子建模表明,小菌素样区域可形成具有结构保守活性位点残基的小菌素型折叠。PrsA以依赖于小菌素样结构域的方式表现出PPIase活性。我们构建了缺失、肽插入和氨基酸取代突变体,并证明小菌素样结构域以及侧翼的N端和C端结构域对于PrsA在蛋白质分泌和生长中的体内功能至关重要。令人惊讶的是,小菌素样结构域的预测活性位点残基均对生长和蛋白质分泌不是必需的,尽管一些活性位点突变降低或消除了PPIase活性或PrsA在体外催化脯氨酸受限的蛋白质折叠的能力。我们的结果表明,PrsA是一种PPIase,但在体内的重要作用似乎取决于小菌素样结构域和侧翼结构域的一些非PPIase活性。

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