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黄色黏球菌中一个早期A信号依赖基因具有一个类σ54启动子。

An early A-signal-dependent gene in Myxococcus xanthus has a sigma 54-like promoter.

作者信息

Keseler I M, Kaiser D

机构信息

Department of Biochemistry, Stanford University School of Medicine, California 94305-5307, USA.

出版信息

J Bacteriol. 1995 Aug;177(16):4638-44. doi: 10.1128/jb.177.16.4638-4644.1995.

Abstract

A-signaling plays an essential role in the early stages of Myxococcus xanthus fruiting body development. Expression of the 452I gene, which is regulated at the level of RNA accumulation, depends on starvation and on A-signaling. To identify the cis-acting regulatory elements which allow gene 4521 to respond to the nutritional and A-factor signals, the 4521 transcription start site was mapped. The region just upstream of the start site showed sequence similarity to the sigma 54 family of promoters and to the developmentally regulated mbhA promoter of M. xanthus. A mutational analysis of this region established that the bases which were conserved between the sigma 54 consensus, mbhA, and 4521 promoters were also important for 4521 promoter activity. Changes which altered the spacing between two conserved regions centered around positions -14 and -24 abolished promoter activity. In contrast, mutations in a putative -10 region for a sigma 70-like promoter had little effect on expression of 4521. Despite their similar promoter regions, the regulation of the 4521 and mbhA genes was shown to differ with respect to timing of expression and requirement for a solid surface and extracellular signals. This suggests a model in which different activator proteins may be responsible for regulating expression of these two genes.

摘要

A信号在黄色粘球菌子实体发育的早期阶段起着至关重要的作用。452I基因的表达在RNA积累水平受到调控,它依赖于饥饿和A信号。为了鉴定使4521基因能够响应营养和A因子信号的顺式作用调控元件,对4521转录起始位点进行了定位。起始位点上游的区域显示出与σ54启动子家族以及黄色粘球菌发育调控的mbhA启动子的序列相似性。对该区域的突变分析表明,在σ54共有序列、mbhA和4521启动子之间保守的碱基对4521启动子活性也很重要。改变围绕-14和-24位置的两个保守区域之间间距的变化消除了启动子活性。相比之下,假定的类σ70启动子的-10区域中的突变对4521的表达影响很小。尽管4521和mbhA基因的启动子区域相似,但它们在表达时间以及对固体表面和细胞外信号的需求方面的调控存在差异。这提示了一种模型,即不同的激活蛋白可能负责调控这两个基因的表达。

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