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两种不同机制介导枯草芽孢杆菌果聚糖酶操纵子的分解代谢物阻遏。

Two different mechanisms mediate catabolite repression of the Bacillus subtilis levanase operon.

作者信息

Martin-Verstraete I, Stülke J, Klier A, Rapoport G

机构信息

Unité de Biochimie Microbienne, Institut Pasteur, URA 1300 du Centre National de la Recherche Scientifique, Paris, France.

出版信息

J Bacteriol. 1995 Dec;177(23):6919-27. doi: 10.1128/jb.177.23.6919-6927.1995.

Abstract

There are two levels of control of the expression of the levanase operon in Bacillus subtilis: induction by fructose, which involves a positive regulator, LevR, and the fructose phosphotransferase system encoded by this operon (lev-PTS), and a global regulation, catabolite repression. The LevR activator interacts with its target, the upstream activating sequence (UAS), to stimulate the transcription of the E sigma L complex bound at the "-12, -24" promoter. Levanase operon expression in the presence of glucose was tested in strains carrying a ccpA gene disruption or a ptsH1 mutation in which Ser-46 of HPr is replaced by Ala. In a levR+ inducible genetic background, the expression of the levanase operon was partially resistant to catabolite repression in both mutants, indicating that the CcpA repressor and the HPr-SerP protein are involved in the glucose control of this operon. In addition, a cis-acting catabolite-responsive element (CRE) of the levanase operon was identified and investigated by site-directed mutagenesis. The CRE sequence TGAAAACGCTT(a)ACA is located between positions -50 and -36 from the transcriptional start site, between the UAS and the -12, -24 promoter. However, in a background constitutive for levanase, neither HPr, CcpA, nor CRE is involved in glucose repression, suggesting the existence of a different pathway of glucose regulation. Using truncated LevR proteins, we showed that this CcpA-independent pathway required the presence of the domain of LevR (amino acids 411 to 689) homologous to the BglG family of bacterial antiterminators.

摘要

枯草芽孢杆菌中果聚糖酶操纵子的表达存在两个调控水平

果糖诱导,这涉及一个正向调节因子LevR以及该操纵子编码的果糖磷酸转移酶系统(lev-PTS),还有全局调控——分解代谢物阻遏。LevR激活剂与其靶标,即上游激活序列(UAS)相互作用,以刺激结合在“-12,-24”启动子处的E sigma L复合物的转录。在携带ccpA基因缺失或ptsH1突变(其中HPr的Ser-46被Ala取代)的菌株中,测试了葡萄糖存在下果聚糖酶操纵子的表达。在levR+可诱导的遗传背景下,两个突变体中果聚糖酶操纵子的表达对分解代谢物阻遏均有部分抗性,这表明CcpA阻遏物和HPr-SerP蛋白参与了该操纵子的葡萄糖调控。此外,通过定点诱变鉴定并研究了果聚糖酶操纵子的一个顺式作用分解代谢物响应元件(CRE)。CRE序列TGAAAACGCTT(a)ACA位于转录起始位点上游-50至-36位之间,在UAS和“-12,-24”启动子之间。然而,在果聚糖酶组成型的背景下,HPr、CcpA和CRE均不参与葡萄糖阻遏,这表明存在一条不同的葡萄糖调控途径。使用截短的LevR蛋白,我们发现这条不依赖CcpA的途径需要LevR中与细菌抗终止子BglG家族同源的结构域(氨基酸411至689)的存在。

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