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类CsoR硫转移酶阻遏蛋白(CstR)是金黄色葡萄球菌中的一种过硫化物传感器。

The CsoR-like sulfurtransferase repressor (CstR) is a persulfide sensor in Staphylococcus aureus.

作者信息

Luebke Justin L, Shen Jiangchuan, Bruce Kevin E, Kehl-Fie Thomas E, Peng Hui, Skaar Eric P, Giedroc David P

机构信息

Department of Chemistry, Indiana University, Bloomington, IN, 47405-7102, USA.

出版信息

Mol Microbiol. 2014 Dec;94(6):1343-60. doi: 10.1111/mmi.12835. Epub 2014 Nov 17.

Abstract

How cells regulate the bioavailability of utilizable sulfur while mitigating the effects of hydrogen sulfide toxicity is poorly understood. CstR [Copper-sensing operon repressor (CsoR)-like sulfurtransferase repressor] represses the expression of the cst operon encoding a putative sulfide oxidation system in Staphylococcus aureus. Here, we show that the cst operon is strongly and transiently induced by cellular sulfide stress in an acute phase and specific response and that cst-encoded genes are necessary to mitigate the effects of sulfide toxicity. Growth defects are most pronounced when S. aureus is cultured in chemically defined media with thiosulfate (TS) as a sole sulfur source, but are also apparent when cystine is used or in rich media. Under TS growth conditions, cells fail to grow as a result of either unregulated expression of the cst operon in a ΔcstR strain or transformation with a non-inducible C31A/C60A CstR that blocks cst induction. This suggests that the cst operon contributes to cellular sulfide homeostasis. Tandem high-resolution mass spectrometry reveals derivatization of CstR by both inorganic tetrasulfide and an organic persulfide, glutathione persulfide, to yield a mixture of Cys31-Cys60' interprotomer cross-links, including di-, tri- and tetrasulfide bonds, which allosterically inhibit cst operator DNA binding by CstR.

摘要

细胞如何调节可利用硫的生物利用度,同时减轻硫化氢毒性的影响,目前还知之甚少。CstR [铜感应操纵子阻遏物(CsoR)样硫转移酶阻遏物] 抑制金黄色葡萄球菌中编码假定硫化物氧化系统的cst操纵子的表达。在这里,我们表明,cst操纵子在急性期由细胞硫化物应激强烈且短暂地诱导,并且是一种特异性反应,并且cst编码的基因对于减轻硫化物毒性的影响是必需的。当金黄色葡萄球菌在以硫代硫酸盐(TS)作为唯一硫源的化学限定培养基中培养时,生长缺陷最为明显,但在使用胱氨酸或在丰富培养基中时也很明显。在TS生长条件下,由于ΔcstR菌株中cst操纵子的表达不受调控,或者用阻止cst诱导的非诱导性C31A/C60A CstR进行转化,细胞无法生长。这表明cst操纵子有助于细胞硫化物稳态。串联高分辨率质谱分析揭示了无机四硫化物和有机过硫化物谷胱甘肽过硫化物对CstR的衍生化作用,产生了Cys31-Cys60' 蛋白间交联的混合物,包括二硫键、三硫键和四硫键,这些键变构抑制CstR与cst操纵子DNA的结合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/244f/4264537/e18d41c5dc7d/nihms635680f1.jpg

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