首页> 外文期刊>Journal of molecular microbiology and biotechnology: JMMB >Regulation of pho Regulon Gene Expression by the Carbon Control Protein A, CcpA, in Bacillus subtilis
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Regulation of pho Regulon Gene Expression by the Carbon Control Protein A, CcpA, in Bacillus subtilis

机译:碳控制蛋白A CcpA在枯草芽孢杆菌中对pho Regulon基因表达的调节

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摘要

Bacterial regulons involved in carbon, nitrogen and phosphorus metabolism must interact for purposes of coordination, but the mechanisms involved are not understood. We here report that the carbon control pro-tein-A (CcpA) of Bacillus subtilis, primarily concerned with carbon metabolism, influences expression of various phosphorus (pho) regulon genes including the two alkaline phosphatase structural genes, phoA and phoB. The directions and magnitudes of the effects of glucose and the loss of CcpA on these two genes depend on growth conditions, but they always correlate inversely. Absolute expression levels of phoA and phoB depend on a rich nitrogen source, and gene activation by a fermentable substrate such as glucose depends on the presence of a respiratory substrate such as succinate. We show that these CcpA-dependent glucose effects can be explained by the effects of glucose and CcpA acting on the phoPR operon. Although a good CcpA-binding site (CRE) is found in the control region of the phoPR operon, direct regulation of phoPR gene expression by CcpA via this CRE could not account for the effects of glucose and CcpA on phoA and phoB gene expression. We conclude that CcpA exerts indirect control over the pho regulon by a mechanism that involves CcpA and PhoRP but does not involve the phoPR operon CRE.
机译:为了协调的目的,参与碳,氮和磷代谢的细菌调节子必须相互作用,但是所涉及的机制尚不清楚。我们在这里报告,枯草芽孢杆菌的碳控制蛋白A(CcpA),主要与碳代谢有关,影响各种磷(pho)regulon基因的表达,包括两个碱性磷酸酶结构基因phoA和phoB。葡萄糖和CcpA丢失对这两个基因的影响的方向和大小取决于生长条件,但它们总是成反比。 phoA和phoB的绝对表达水平取决于丰富的氮源,而可发酵底物(如葡萄糖)的基因激活取决于呼吸底物(如琥珀酸盐)的存在。我们表明,这些CcpA依赖性葡萄糖作用可以通过作用于phoPR操纵子的葡萄糖和CcpA的作用来解释。尽管在phoPR操纵子的控制区中发现了一个良好的CcpA结合位点(CRE),但是CcpA通过该CRE对phoPR基因表达的直接调节不能解释葡萄糖和CcpA对phoA和phoB基因表达的影响。我们得出结论,CcpA通过涉及CcpA和PhoRP但不涉及phoPR操纵子CRE的机制对pho regulon进行间接控制。

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