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首页> 外文期刊>Journal of bacteriology >Transcriptional regulation of Bacillus subtilis glucose starvation-inducible genes: control of gsiA by the ComP-ComA signal transduction system.
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Transcriptional regulation of Bacillus subtilis glucose starvation-inducible genes: control of gsiA by the ComP-ComA signal transduction system.

机译:枯草芽孢杆菌葡萄糖饥饿诱导型基因的转录调控:通过ComP-ComA信号转导系统控制gsiA。

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The Bacillus subtilis glucose starvation-inducible transcription units, gsiA and gsiB, were characterized by DNA sequencing, transcriptional mapping, mutational analysis, and expression in response to changes in environmental conditions. The gsiA operon was shown to consist of two genes, gsiAA and gsiAB, predicted to encode 44.9- and 4.8-kDa polypeptides, respectively. The gsiB locus contains a single cistron which encodes a protein of unusual structure; most of its amino acids are arranged in five highly conserved, tandemly repeated units of 20 amino acids. The 5' ends of gsiA and gsiB mRNAs were located by primer extension analysis; their locations suggest that both are transcribed by RNA polymerase containing sigma A. Expression of both gsiA and gsiB was induced by starvation for glucose or phosphate or by addition of decoyinine, but only gsiA was induced by exhaustion of nutrient broth or by amino acid starvation. Regulation of gsiA expression was shown to be dependent upon the two-component signal transduction system ComP-ComA, which also controls expression of genetic competence genes. Mutations in mecA bypassed the dependency of gsiA expression on ComA. Disruption of gsiA relieved glucose repression of sporulation but did not otherwise interfere with sporulation, development of competence, motility, or glucose starvation survival. We propose that gsiA and gsiB are members of an adaptive pathway of genes whose products are involved in responses to nutrient deprivation other than sporulation.
机译:枯草芽孢杆菌葡萄糖饥饿诱导型转录单位gsiA和gsiB的特征在于DNA测序,转录图谱,突变分析和响应环境条件变化的表达。显示gsiA操纵子由两个基因gsiAA和gsiAB组成,预计分别编码44.9-和4.8-kDa多肽。 gsiB基因座包含一个顺反子,其编码具有异常结构的蛋白质。它的大多数氨基酸都排列成五个高度保守的串联重复单元(20个氨基酸)。通过引物延伸分析定位gsiA和gsiB mRNA的5'末端;它们的位置表明,两者均通过包含sigma A的RNA聚合酶进行转录。gsiA和gsiB的表达都是由于饥饿的葡萄糖或磷酸盐或添加了辅酶的表达而引起的,而只有gsiA是由营养液耗尽或氨基酸饥饿引起的。已显示对gsiA表达的调节依赖于两组分信号转导系统ComP-ComA,该系统还控制遗传能力基因的表达。 mecA中的突变绕过了gsiA表达对ComA的依赖性。 gsiA的破坏可减轻葡萄糖对孢子形成的抑制作用,但不会以其他方式干扰孢子形成,能力发展,运动或葡萄糖饥饿生存。我们建议gsiA和gsiB是其产物参与除孢子形成以外对营养缺乏的响应的基因的适应性途径的成员。

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