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枯草芽孢杆菌的信号肽肽酶和ClpP样蛋白是分泌蛋白有效转运和加工所必需的。

Signal peptide peptidase- and ClpP-like proteins of Bacillus subtilis required for efficient translocation and processing of secretory proteins.

作者信息

Bolhuis A, Matzen A, Hyyryläinen H L, Kontinen V P, Meima R, Chapuis J, Venema G, Bron S, Freudl R, van Dijl J M

机构信息

Department of Genetics, Groningen Biomolecular Sciences and Biotechnology Institute, Kerklaan 30, 9751 NN Haren, The Netherlands.

出版信息

J Biol Chem. 1999 Aug 27;274(35):24585-92. doi: 10.1074/jbc.274.35.24585.

Abstract

Signal peptides direct the export of secretory proteins from the cytoplasm. After processing by signal peptidase, they are degraded in the membrane and cytoplasm. The resulting fragments can have signaling functions. These observations suggest important roles for signal peptide peptidases. The present studies show that the Gram-positive eubacterium Bacillus subtilis contains two genes for proteins, denoted SppA and TepA, with similarity to the signal peptide peptidase A of Escherichia coli. Notably, TepA also shows similarity to ClpP proteases. SppA of B. subtilis was only required for efficient processing of pre-proteins under conditions of hyper-secretion. In contrast, TepA depletion had a strong effect on pre-protein translocation across the membrane and subsequent processing, not only under conditions of hyper-secretion. Unlike SppA, which is a typical membrane protein, TepA appears to have a cytosolic localization, which is consistent with the observation that TepA is involved in early stages of the secretion process. Our observations demonstrate that SppA and TepA have a role in protein secretion in B. subtilis. Based on their similarity to known proteases, it seems likely that SppA and TepA are specifically required for the degradation of proteins or (signal) peptides that are inhibitory to protein translocation.

摘要

信号肽引导分泌蛋白从细胞质中输出。经信号肽酶加工后,它们在膜和细胞质中被降解。产生的片段可能具有信号传导功能。这些观察结果表明信号肽肽酶具有重要作用。目前的研究表明,革兰氏阳性真细菌枯草芽孢杆菌含有两个蛋白质基因,分别命名为SppA和TepA,与大肠杆菌的信号肽肽酶A相似。值得注意的是,TepA也与ClpP蛋白酶相似。枯草芽孢杆菌的SppA仅在超分泌条件下对前体蛋白的有效加工是必需的。相比之下,TepA的缺失对前体蛋白跨膜转运及后续加工有强烈影响,不仅在超分泌条件下如此。与典型膜蛋白SppA不同,TepA似乎定位于细胞质,这与TepA参与分泌过程早期阶段的观察结果一致。我们的观察结果表明,SppA和TepA在枯草芽孢杆菌的蛋白质分泌中起作用。基于它们与已知蛋白酶的相似性,SppA和TepA似乎特别需要用于降解对蛋白质转运有抑制作用的蛋白质或(信号)肽。

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