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枯草芽孢杆菌的SpoIIE突变体包含两个不同的表型类别,这与SpoIIE蛋白的双重功能作用相一致。

SpoIIE mutants of Bacillus subtilis comprise two distinct phenotypic classes consistent with a dual functional role for the SpoIIE protein.

作者信息

Barák I, Youngman P

机构信息

Department of Genetics, University of Georgia, Athens 30602, USA.

出版信息

J Bacteriol. 1996 Aug;178(16):4984-9. doi: 10.1128/jb.178.16.4984-4989.1996.

Abstract

Mutations in the spoIIE locus of Bacillus subtilis block sporulation at the stage of asymmetric septation and prevent compartment-specific activation of the transcription factor delta F. Recent ultrastructural studies of spoIIE mutants led to the conclusion that cells blocked at the stage of asymmetric septation form primarily thick septal structures similar to those formed at the mid-cell site during vegetative growth, although in an earlier study Piggot (J. Bacteriol. 114:1241-1253, 1973) clearly detected a more complex range of phenotypes. We have examined the phenotypes of six spoIIE mutants, including one example of the previously studied null type, spoIIE21. We confirmed that the spoIIE21 mutant and two other null mutants exhibit the classic thick-septum phenotype. However, two of the missense mutants, the spoIIE64 and spoIIE71 mutants, were found to display a strikingly different phenotype characterized by the presence of only thin asymmetric septa, frequently at both polar positions, as noted by Piggot. This phenotype is essentially identical to those of spoIIA (delta F) and spoIIG (delta E) null mutants, which also form sporulation septa that appear structurally normal at the level of electron microscopy. Despite the formation of apparently normal asymmetric septa, spoIIE64 and spoIIE71 mutants are fully defective in activation of delta F-dependent gene expression. These results indicate that the functional roles performed by SpoIIE in septum assembly and sigma factor regulation are distinct and separable.

摘要

枯草芽孢杆菌spoIIE基因座的突变会在不对称隔膜形成阶段阻断芽孢形成,并阻止转录因子δF的隔室特异性激活。最近对spoIIE突变体的超微结构研究得出结论,在不对称隔膜形成阶段受阻的细胞主要形成类似于营养生长期间在细胞中部形成的厚隔膜结构,尽管在早期的一项研究中,皮戈特(《细菌学杂志》114:1241 - 1253,1973年)清楚地检测到了更复杂的一系列表型。我们研究了六个spoIIE突变体的表型,包括之前研究过的无效型spoIIE21的一个例子。我们证实spoIIE21突变体和其他两个无效突变体表现出典型的厚隔膜表型。然而,发现两个错义突变体,即spoIIE64和spoIIE71突变体,表现出截然不同的表型,其特征是仅存在薄的不对称隔膜,如皮戈特所指出的,这些隔膜经常出现在两个极性位置。这种表型与spoIIA(δF)和spoIIG(δE)无效突变体的表型基本相同,spoIIA和spoIIG无效突变体也形成在电子显微镜水平上结构看似正常的芽孢形成隔膜。尽管形成了明显正常的不对称隔膜,但spoIIE64和spoIIE71突变体在δF依赖性基因表达的激活方面完全有缺陷。这些结果表明,SpoIIE在隔膜组装和σ因子调节中所起的功能作用是不同且可分离的。

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