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枯草芽孢杆菌芽孢形成过程中细胞分裂基因ftsA转录的调控

Regulation of transcription of the cell division gene ftsA during sporulation of Bacillus subtilis.

作者信息

Gholamhoseinian A, Shen Z, Wu J J, Piggot P

机构信息

Department of Microbiology and Immunology, Temple University School of Medicine, Philadelphia, Pennsylvania 19140.

出版信息

J Bacteriol. 1992 Jul;174(14):4647-56. doi: 10.1128/jb.174.14.4647-4656.1992.

Abstract

Three distinct 5' ends of ftsA mRNA were identified by S1 mapping and by primer extension analysis. These are thought to represent three transcription start sites. The transcripts from the downstream and upstream sites were detected throughout growth. The transcript from the middle site was not detected during exponential growth but was detected within 30 min of the start of sporulation, when it was the predominant transcript. Insertion of a cat cassette in the middle promoter, ftsAp2 (p2), did not affect vegetative growth but prevented postexponential symmetrical division and spore formation. Transcription from p2 was dependent on RNA polymerase containing sigma H, and promoter p2 resembled the consensus sigma H promoter. Transcription from p2 did not require expression of the spo0A, spo0B, spo0E, spo0F, or spo0K loci. Northern (RNA) blot analysis indicated that ftsA is cotranscribed with the adjacent ftsZ gene. Multiple promoters provide a mechanism by which essential vegetative genes can be subjected to sporulation control independent of control during vegetative growth. In the case of ftsA,Z, the promoters provide a mechanism to permit septum formation in conditions of nutrient depletion that might be expected to shut down the vegetative division machinery.

摘要

通过S1作图和引物延伸分析鉴定出ftsA mRNA的三个不同的5′末端。这些被认为代表三个转录起始位点。在整个生长过程中都检测到了来自下游和上游位点的转录本。来自中间位点的转录本在指数生长期间未被检测到,但在芽孢形成开始后30分钟内被检测到,此时它是主要的转录本。在中间启动子ftsAp2(p2)中插入一个cat盒,不影响营养生长,但阻止了指数生长后的对称分裂和孢子形成。来自p2的转录依赖于含有σH的RNA聚合酶,并且启动子p2类似于共有σH启动子。来自p2的转录不需要spo0A、spo0B、spo0E、spo0F或spo0K基因座的表达。Northern(RNA)印迹分析表明,ftsA与相邻的ftsZ基因共转录。多个启动子提供了一种机制,通过这种机制,必需的营养基因可以在芽孢形成过程中受到控制,而与营养生长期间的控制无关。就ftsA、Z而言,启动子提供了一种机制,使得在营养耗尽的情况下能够形成隔膜,而营养耗尽可能会使营养分裂机制关闭。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/383e/206260/eb199d1811d5/jbacter00080-0137-a.jpg

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