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spoIIAB基因的缺失在早期阶段阻断了枯草芽孢杆菌的芽孢形成。

Deletion of spoIIAB blocks endospore formation in Bacillus subtilis at an early stage.

作者信息

Coppolecchia R, DeGrazia H, Moran C P

机构信息

Department of Microbiology and Immunology, Emory University School of Medicine, Atlanta, Georgia 30322.

出版信息

J Bacteriol. 1991 Nov;173(21):6678-85. doi: 10.1128/jb.173.21.6678-6685.1991.

Abstract

During an early stage of endospore formation in Bacillus subtilis, the cell divides asymmetrically into two compartments that follow different developmental paths. The differential expression of genes in these two compartments is controlled in part by the production of compartment-specific transcription factors, sigma G and sigma K. It is not known how sigma G accumulation is restricted to one of the two compartments, the forespore. However, the observations that sigma F directs transcription of the structural gene for sigma G and that sigma F activity can be modified by the product of a gene, spoIIAB, has led us to investigate the role of spoIIAB during sporulation. We have isolated mutants that carry deletion alleles of spoIIAB. Electron microscopic examination of these mutants revealed that these mutations blocked endospore formation at an early stage before septation and caused extensive cell lysis. The spoIIAB deletion alleles caused hyperexpression of genes that are normally expressed exclusively in the forespore compartments of sporulating wild-type cells, whereas these alleles reduced expression of other genes, including spoIIE, which is expressed before septation in wild-type cells. These observations confirm that spoIIAB is essential for sporulation and are consistent with models in which the product of spoIIAB plays a role in regulating the timing and/or compartment specificity of sigma F- and sigma G-directed transcription.

摘要

在枯草芽孢杆菌芽孢形成的早期阶段,细胞不对称地分裂为两个遵循不同发育路径的区室。这两个区室中基因的差异表达部分受区室特异性转录因子σG和σK的产生所控制。目前尚不清楚σG的积累是如何局限于两个区室之一,即前芽孢的。然而,σF指导σG结构基因的转录以及σF活性可被一个基因spoIIAB的产物所修饰这些观察结果,促使我们研究spoIIAB在芽孢形成过程中的作用。我们分离出了携带spoIIAB缺失等位基因的突变体。对这些突变体的电子显微镜检查显示,这些突变在隔膜形成之前的早期阶段阻断了芽孢形成,并导致广泛的细胞裂解。spoIIAB缺失等位基因导致通常仅在野生型芽孢形成细胞的前芽孢区室中表达的基因过度表达,而这些等位基因降低了其他基因的表达,包括spoIIE,spoIIE在野生型细胞隔膜形成之前表达。这些观察结果证实spoIIAB对芽孢形成至关重要,并且与spoIIAB产物在调节σF和σG指导的转录的时间和/或区室特异性中起作用的模型一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5feb/209015/a559b5bc7931/jbacter01039-0043-a.jpg

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