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应激反应系统为枯草芽孢杆菌中膜蛋白的过度产生设定了特定的限制。

Stress-responsive systems set specific limits to the overproduction of membrane proteins in Bacillus subtilis.

机构信息

Department of Medical Microbiology, University Medical Center Groningen, Hanzeplein 1, 9700 RB Groningen, The Netherlands.

出版信息

Appl Environ Microbiol. 2009 Dec;75(23):7356-64. doi: 10.1128/AEM.01560-09. Epub 2009 Oct 9.

Abstract

Essential membrane proteins are generally recognized as relevant potential drug targets due to their exposed localization in the cell envelope. Unfortunately, high-level production of membrane proteins for functional and structural analyses is often problematic. This is mainly due to their high overall hydrophobicity. To develop new concepts for membrane protein overproduction, we investigated whether the biogenesis of overproduced membrane proteins is affected by stress response-related proteolytic systems in the membrane. For this purpose, the well-established expression host Bacillus subtilis was used to overproduce eight essential membrane proteins from B. subtilis and Staphylococcus aureus. The results show that the sigma(W) regulon (responding to cell envelope perturbations) and the CssRS two-component regulatory system (responding to unfolded exported proteins) set critical limits to membrane protein production in large quantities. The identified sigW or cssRS mutant B. subtilis strains with significantly improved capacity for membrane protein production are interesting candidate expression hosts for fundamental research and biotechnological applications. Importantly, our results pinpoint the interdependent expression and function of membrane-associated proteases as key parameters in bacterial membrane protein production.

摘要

必需膜蛋白通常被认为是相关的潜在药物靶点,因为它们在细胞包膜中的暴露位置。不幸的是,膜蛋白的高水平生产对于功能和结构分析往往存在问题。这主要是由于它们的整体疏水性很高。为了开发膜蛋白过表达的新概念,我们研究了过表达的膜蛋白的生物发生是否会受到膜中与应激反应相关的蛋白水解系统的影响。为此,使用成熟的表达宿主枯草芽孢杆菌来过表达来自枯草芽孢杆菌和金黄色葡萄球菌的八种必需膜蛋白。结果表明,σ(W)调控子(响应细胞包膜扰动)和CssRS 双组分调节系统(响应未折叠的输出蛋白)对大量膜蛋白生产设定了关键限制。鉴定出的 sigW 或 cssRS 突变枯草芽孢杆菌菌株具有显著提高的膜蛋白生产能力,是基础研究和生物技术应用的有趣候选表达宿主。重要的是,我们的结果指出了膜相关蛋白酶的表达和功能的相互依赖性是细菌膜蛋白生产的关键参数。

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