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枯草芽孢杆菌中一个应激和饥饿诱导的dps/pexB同源基因的表达受替代sigma因子sigmaB的调控。

Expression of a stress- and starvation-induced dps/pexB-homologous gene is controlled by the alternative sigma factor sigmaB in Bacillus subtilis.

作者信息

Antelmann H, Engelmann S, Schmid R, Sorokin A, Lapidus A, Hecker M

机构信息

Institut für Mikrobiologie und Molekularbiologie, Ernst-Moritz-Arndt-Universität, Greifswald, Germany.

出版信息

J Bacteriol. 1997 Dec;179(23):7251-6. doi: 10.1128/jb.179.23.7251-7256.1997.

DOI:10.1128/jb.179.23.7251-7256.1997
PMID:9393687
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC179673/
Abstract

SigmaB-dependent general stress proteins (Gsps) of Bacillus subtilis are essential for the development of glucose-starvation-induced cross-resistance to oxidative challenge. However, the proteins directly involved in this nonspecific resistance to oxidative stress have to be identified. We found that one prominent Gsp displayed strong sequence similarity to the previously characterized oxidative-stress-inducible MrgA protein of B. subtilis and to the starvation-induced Dps/PexB protein of Escherichia coli. We therefore designated this prominent Gsp Dps. While MrgA belongs to the peroxide-stress-inducible proteins needed for the H2O2-inducible adaptive response to oxidative stress, Dps belongs to the proteins induced by heat, salt, or ethanol stress and after starvation for glucose but not by a sublethal oxidative challenge. Primer extension experiments identified two overlapping promoters upstream of the coding region of dps, one being sigmaB dependent (PB) and the other being sigmaB independent (P1). Both promoters contribute to the basal level of dps during growth. After stress or during entry into the stationary phase, transcription from PB strongly increased whereas transcription from P1 decreased. Mutant strains lacking Dps completely failed to develop glucose-starvation-induced resistance to oxidative stress. These results confirm our suggestion that sigmaB-dependent general stress proteins of B. subtilis are absolutely required for the development of nonspecific resistance to oxidative stress.

摘要

枯草芽孢杆菌中依赖于SigmaB的一般应激蛋白(Gsps)对于葡萄糖饥饿诱导的对氧化应激的交叉抗性的发展至关重要。然而,必须鉴定出直接参与这种对氧化应激的非特异性抗性的蛋白质。我们发现一种突出的Gsp与先前表征的枯草芽孢杆菌的氧化应激诱导型MrgA蛋白以及大肠杆菌的饥饿诱导型Dps/PexB蛋白具有很强的序列相似性。因此,我们将这种突出的Gsp命名为Dps。虽然MrgA属于对氧化应激的H2O2诱导适应性反应所需的过氧化物应激诱导蛋白,但Dps属于由热、盐或乙醇应激以及葡萄糖饥饿后诱导的蛋白,而不是由亚致死性氧化应激诱导。引物延伸实验确定了dps编码区上游的两个重叠启动子,一个依赖于sigmaB(PB),另一个不依赖于sigmaB(P1)。两个启动子都有助于生长期间dps的基础水平。在应激后或进入稳定期期间,来自PB的转录强烈增加,而来自P1的转录减少。缺乏Dps的突变菌株完全无法产生葡萄糖饥饿诱导的对氧化应激的抗性。这些结果证实了我们的建议,即枯草芽孢杆菌中依赖于sigmaB的一般应激蛋白对于发展对氧化应激的非特异性抗性是绝对必需的。