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炭疽芽孢杆菌 Sterne 中同源 spx 基因功能的转录组学和表型分析。

Transcriptomic and phenotypic analysis of paralogous spx gene function in Bacillus anthracis Sterne.

机构信息

Division of Environmental and Biomolecular Systems, Institute of Environmental Health, Oregon Health and Science University, Beaverton, Oregon.

出版信息

Microbiologyopen. 2013 Aug;2(4):695-714. doi: 10.1002/mbo3.109. Epub 2013 Jul 22.

Abstract

Spx of Bacillus subtilis is a redox-sensitive protein, which, under disulfide stress, interacts with RNA polymerase to activate genes required for maintaining thiol homeostasis. Spx orthologs are highly conserved among low %GC Gram-positive bacteria, and often exist in multiple paralogous forms. In this study, we used B. anthracis Sterne, which harbors two paralogous spx genes, spxA1 and spxA2, to examine the phenotypes of spx null mutations and to identify the genes regulated by each Spx paralog. Cells devoid of spxA1 were sensitive to diamide and hydrogen peroxide, while the spxA1 spoxA2 double mutant was hypersensitive to the thiol-specific oxidant, diamide. Bacillus anthracis Sterne strains expressing spxA1DD or spxA2DD alleles encoding protease-resistant products were used in microarray and quantitative real-time polymerase chain reaction (RT-qPCR) analyses in order to uncover genes under SpxA1, SpxA2, or SpxA1/SpxA2 control. Comparison of transcriptomes identified many genes that were upregulated when either SpxA1DD or SpxA2DD was produced, but several genes were uncovered whose transcript levels increased in only one of the two SpxADD-expression strains, suggesting that each Spx paralog governs a unique regulon. Among genes that were upregulated were those encoding orthologs of proteins that are specifically involved in maintaining intracellular thiol homeostasis or alleviating oxidative stress. Some of these genes have important roles in B. anthracis pathogenesis, and a large number of upregulated hypothetical genes have no homology outside of the B. cereus/thuringiensis group. Microarray and RT-qPCR analyses also unveiled a regulatory link that exists between the two spx paralogous genes. The data indicate that spxA1 and spxA2 are transcriptional regulators involved in relieving disulfide stress but also control a set of genes whose products function in other cellular processes.

摘要

枯草芽孢杆菌的 Spx 是一种氧化还原敏感蛋白,在二硫键应激下,它与 RNA 聚合酶相互作用,激活维持硫醇动态平衡所需的基因。Spx 同源物在低 GC%的革兰氏阳性菌中高度保守,并且经常以多个旁系同源形式存在。在这项研究中,我们使用含有两个旁系同源 spx 基因 spxA1 和 spxA2 的炭疽芽孢杆菌 Sterne 来检查 spx 缺失突变的表型,并确定每个 Spx 旁系同源物调节的基因。缺乏 spxA1 的细胞对二酰胺和过氧化氢敏感,而 spxA1 spoxA2 双突变体对硫醇特异性氧化剂二酰胺高度敏感。枯草芽孢杆菌 Sterne 菌株表达编码抗蛋白酶产物的 spxA1DD 或 spxA2DD 等位基因,用于微阵列和定量实时聚合酶链反应 (RT-qPCR) 分析,以揭示 SpxA1、SpxA2 或 SpxA1/SpxA2 控制下的基因。转录组比较鉴定了许多当 SpxA1DD 或 SpxA2DD 产生时上调的基因,但发现了几个仅在两个 SpxADD 表达株中的一个中增加转录水平的基因,这表明每个 Spx 旁系同源物控制独特的调控区。上调的基因包括编码专门参与维持细胞内硫醇动态平衡或缓解氧化应激的蛋白质的同源物。这些基因中的一些在炭疽芽孢杆菌发病机制中具有重要作用,并且大量上调的假设基因在芽孢杆菌/苏云金芽孢杆菌组之外没有同源性。微阵列和 RT-qPCR 分析还揭示了两个 spx 旁系同源基因之间存在调节联系。数据表明,spxA1 和 spxA2 是参与缓解二硫键应激的转录调节剂,但也控制一组其产物在其他细胞过程中起作用的基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a669/3831629/120d032cff42/mbo30002-0695-f1.jpg

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