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枯草芽孢杆菌盐胁迫适应的综合蛋白质组学和转录组学分析。

A comprehensive proteomics and transcriptomics analysis of Bacillus subtilis salt stress adaptation.

机构信息

Institut für Mikrobiologie, Ernst-Moritz-Arndt Universität Greifswald, Friedrich-Ludwig-Jahn-Str. 15, D-17489 Greifswald, Germany.

出版信息

J Bacteriol. 2010 Feb;192(3):870-82. doi: 10.1128/JB.01106-09. Epub 2009 Nov 30.

Abstract

In its natural habitats, Bacillus subtilis is exposed to changing osmolarity, necessitating adaptive stress responses. Transcriptomic and proteomic approaches can provide a picture of the dynamic changes occurring in salt-stressed B. subtilis cultures because these studies provide an unbiased view of cells coping with high salinity. We applied whole-genome microarray technology and metabolic labeling, combined with state-of-the-art proteomic techniques, to provide a global and time-resolved picture of the physiological response of B. subtilis cells exposed to a severe and sudden osmotic upshift. This combined experimental approach provided quantitative data for 3,961 mRNA transcription profiles, 590 expression profiles of proteins detected in the cytosol, and 383 expression profiles of proteins detected in the membrane fraction. Our study uncovered a well-coordinated induction of gene expression subsequent to an osmotic upshift that involves large parts of the SigB, SigW, SigM, and SigX regulons. Additionally osmotic upregulation of a large number of genes that do not belong to these regulons was observed. In total, osmotic upregulation of about 500 B. subtilis genes was detected. Our data provide an unprecedented rich basis for further in-depth investigation of the physiological and genetic responses of B. subtilis to hyperosmotic stress.

摘要

在其自然栖息地中,枯草芽孢杆菌会暴露在渗透压不断变化的环境中,这需要其做出适应性应激反应。转录组学和蛋白质组学方法可以提供盐胁迫枯草芽孢杆菌培养物中动态变化的图片,因为这些研究可以公正地观察细胞应对高盐度的情况。我们应用全基因组微阵列技术和代谢标记,结合最先进的蛋白质组学技术,为枯草芽孢杆菌细胞在受到剧烈和突然的渗透压上升时的生理反应提供了一个全面和时间分辨的图片。这种综合的实验方法为 3961 个 mRNA 转录谱、细胞质中检测到的 590 个蛋白质表达谱和膜部分检测到的 383 个蛋白质表达谱提供了定量数据。我们的研究揭示了一个在渗透压上升后,涉及 SigB、SigW、SigM 和 SigX 调控子的大部分的基因表达的良好协调诱导。此外,还观察到大量不属于这些调控子的基因的渗透压上调。总的来说,大约 500 个枯草芽孢杆菌基因被检测到渗透压上调。我们的数据为进一步深入研究枯草芽孢杆菌对高渗透压胁迫的生理和遗传反应提供了前所未有的丰富基础。

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