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新型转录因子SgrR协调对磷酸葡萄糖应激的反应。

The novel transcription factor SgrR coordinates the response to glucose-phosphate stress.

作者信息

Vanderpool Carin K, Gottesman Susan

机构信息

Laboratory of Molecular Biology, National Cancer Institute, Bethesda, Maryland 20892, USA.

出版信息

J Bacteriol. 2007 Mar;189(6):2238-48. doi: 10.1128/JB.01689-06. Epub 2007 Jan 5.

Abstract

SgrR is the first characterized member of a family of bacterial transcription factors containing an N-terminal DNA binding domain and a C-terminal solute binding domain. Previously, we reported genetic evidence that SgrR activates the divergently transcribed gene sgrS, which encodes a small RNA required for recovery from glucose-phosphate stress. In this study, we examined the regulation of sgrR expression and found that SgrR negatively autoregulates its own transcription in the presence and absence of stress. An SgrR binding site in the sgrR-sgrS intergenic region is required in vivo for both SgrR-dependent activation of sgrS and autorepression of sgrR. Purified SgrR binds specifically to sgrS promoter DNA in vitro; a mutation in the site required for in vivo activation and autorepression abrogates in vitro SgrR binding. A plasmid library screen identified clones that alter expression of a P(sgrS)-lacZ fusion; some act by titrating endogenous SgrR. The yfdZ gene, encoding a putative aminotransferase, was identified in this screen; the yfdZ promoter contains an SgrR binding site, and transcriptional fusions indicate that yfdZ is activated by SgrR. Clones containing mlc, which encodes a glucose-specific repressor protein, also downregulate P(sgrS)-lacZ. The mlc clones do not appear to titrate the SgrR protein, indicating that Mlc affects sgrS expression by an alternative mechanism.

摘要

SgrR是细菌转录因子家族中第一个被鉴定的成员,该家族包含一个N端DNA结合结构域和一个C端溶质结合结构域。此前,我们报道了遗传学证据,表明SgrR激活了与其反向转录的基因sgrS,sgrS编码一种从葡萄糖-磷酸应激中恢复所需的小RNA。在本研究中,我们检测了sgrR表达的调控,发现SgrR在有应激和无应激情况下均对自身转录进行负向自动调节。sgrR-sgrS基因间区域中的一个SgrR结合位点在体内对于SgrR依赖的sgrS激活和sgrR的自动抑制都是必需的。纯化的SgrR在体外能特异性结合sgrS启动子DNA;体内激活和自动抑制所需位点的突变消除了体外SgrR的结合。一个质粒文库筛选鉴定出了改变P(sgrS)-lacZ融合表达的克隆;一些克隆通过滴定内源性SgrR起作用。在该筛选中鉴定出了编码假定转氨酶的yfdZ基因;yfdZ启动子包含一个SgrR结合位点,转录融合表明yfdZ被SgrR激活。包含编码葡萄糖特异性阻遏蛋白的mlc的克隆也下调P(sgrS)-lacZ。mlc克隆似乎不会滴定SgrR蛋白,这表明Mlc通过另一种机制影响sgrS表达。

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