Illing N, Errington J
Sir William Dunn School of Pathology, University of Oxford, UK.
Mol Microbiol. 1991 Aug;5(8):1927-40. doi: 10.1111/j.1365-2958.1991.tb00816.x.
We have cloned and characterized a 5 kbp region of the Bacillus subtilis chromosome and show that it contains the promoter-proximal part of the spoIIIA locus. The locus consists of a polycistronic operon containing at least three genes. We show that the operon is regulated at the transcriptional level, from a promoter that is first activated about 80 minutes after the induction of sporulation, immediately after septation. Expression of spoIIIA in different spo mutant backgrounds correlates with the ability of each strain to synthesize the sporulation-specific sigma factor, sigma E. Moreover, synthesis of sigma E in vegetative cells by use of an inducible promoter causes expression of mother-cell-specific genes spoIID, spoIIIA, and spoIIID, but not the prespore-specific genes, spoIIIG and spoVA. We suggest that sigma E may be the primary determinant of mother-cell-specific gene expression and that the SpoIIID protein exerts an additional level of regulation on spoIIIA, apparently by acting as a transcriptional repressor. Since the onset of spoIIID expression occurs about 10 minutes after that of spoIIIA, spoIIIA expression is transient. Thus spoIIIA defines a third temporal class of gene controlled by the sigma E form of RNA polymerase.
我们克隆并鉴定了枯草芽孢杆菌染色体上一个5kbp的区域,结果表明该区域包含spoIIIA基因座的启动子近端部分。该基因座由一个多顺反子操纵子组成,其中至少包含三个基因。我们发现该操纵子在转录水平受到调控,其启动子在芽孢形成诱导后约80分钟,即隔膜形成后立即被激活。spoIIIA在不同spo突变背景下的表达与各菌株合成芽孢形成特异性σ因子σE的能力相关。此外,利用诱导型启动子在营养细胞中合成σE会导致母细胞特异性基因spoIID、spoIIIA和spoIIID的表达,但不会导致前芽孢特异性基因spoIIIG和spoVA的表达。我们认为σE可能是母细胞特异性基因表达的主要决定因素,并且SpoIIID蛋白显然通过作为转录阻遏物对spoIIIA施加额外的调控水平。由于spoIIID表达的起始时间比spoIIIA晚约10分钟,因此spoIIIA的表达是短暂的。因此,spoIIIA定义了由RNA聚合酶的σE形式控制的第三类时间调控基因。