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cotJ的特性分析,cotJ是一种受σE控制的操纵子,影响枯草芽孢杆菌孢子外壳的多肽组成。

Characterization of cotJ, a sigma E-controlled operon affecting the polypeptide composition of the coat of Bacillus subtilis spores.

作者信息

Henriques A O, Beall B W, Roland K, Moran C P

机构信息

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

出版信息

J Bacteriol. 1995 Jun;177(12):3394-406. doi: 10.1128/jb.177.12.3394-3406.1995.

Abstract

The outermost protective structure found in endospores of Bacillus subtilis is a thick protein shell known as the coat, which makes a key contribution to the resistance properties of the mature spore and also plays a role in its interaction with compounds able to trigger germination. The coat is organized as a lamellar inner layer and an electron-dense outer layer and has a complex polypeptide composition. Here we report the cloning and characterization of an operon, cotJ, located at about 62 degrees on the B. subtilis genetic map, whose inactivation results in the production of spores with an altered pattern of coat polypeptides. The cotJ operon was identified by screening a random library of lacZ transcriptional fusions for a conditional (inducer-dependent) Lac+ phenotype in cells of a strain in which the structural gene (spoIIGB) for the early-acting, mother-cell-specific transcriptional factor sigma E was placed under the control of the IPTG (isopropyl-beta-D-thiogalactopyranoside)-inducible Pspac promoter. Sequence analysis of cloned DNA from the cotJ region complemented by genetic experiments revealed a tricistronic operon preceded by a strong sigma E-like promoter. Expression of an SP beta-borne cotJ-lacZ fusion commences at around h 2 of sporulation, as does expression of other sigma E-dependent genes, and shows an absolute requirement for sigma E. Studies with double-reporter strains bearing a cotJ-gusA fusion and lacZ fusions to other cot genes confirmed that expression of cotJ is initiated during sporulation prior to activation of genes known to encode coat structural proteins (with the sole exception of cotE). An in vitro-constructed insertion-deletion mutation in cotJ resulted in the formation of spores with no detectable morphological or resistance deficiency. However, examination of the profile of electrophoretically separated spore coat proteins from the null mutant revealed a pattern that was essentially identical to that of a wild-type strain in the range of 12 to 65 kDa, except for polypeptides of 17 and 24 kDa, the putative products of the second (cotJB) and third (cotJC) cistrons of the operon, that were missing or reduced in amount in the coat of the mutant. Polypeptides of the same apparent sizes are detected in spores of a cotE null mutant, on which basis we infer that the products of the cotJ operon are required for the normal formation of the inner layers of the coat or are themselves structural components of the coat. Because the onset of cotJ transcription is temporally coincident with the appearance of active sigma E, we speculate that the cotJ-encoded products may be involved in an early state of coat assembly.

摘要

在枯草芽孢杆菌芽孢中发现的最外层保护结构是一种称为外壳的厚蛋白质壳,它对成熟芽孢的抗性特性做出了关键贡献,并且在其与能够触发萌发的化合物的相互作用中也发挥作用。外壳由层状内层和电子致密外层组成,具有复杂的多肽组成。在这里,我们报告了一个位于枯草芽孢杆菌遗传图谱约62度处的操纵子cotJ的克隆和表征,其失活导致产生具有改变的外壳多肽模式的芽孢。通过筛选lacZ转录融合的随机文库,以寻找早期作用的母细胞特异性转录因子σE的结构基因(spoIIGB)置于IPTG(异丙基-β-D-硫代半乳糖苷)诱导型Pspac启动子控制下的菌株细胞中的条件性(诱导剂依赖性)Lac+表型,从而鉴定出cotJ操纵子。通过遗传实验对来自cotJ区域的克隆DNA进行序列分析,发现一个三顺反子操纵子,其前面有一个强的σE样启动子。携带SPβ-borne cotJ-lacZ融合的表达在芽孢形成约2小时时开始,其他σE依赖性基因的表达也是如此,并且显示出对σE的绝对需求。对携带cotJ-gusA融合和lacZ与其他cot基因融合的双报告菌株的研究证实,cotJ的表达在芽孢形成过程中,在已知编码外壳结构蛋白的基因(cotE除外)激活之前就开始了。cotJ中体外构建的插入缺失突变导致形成的芽孢没有可检测到的形态或抗性缺陷。然而,对来自无突变体的电泳分离的芽孢外壳蛋白谱的检查发现,除了17和24 kDa的多肽(操纵子第二个(cotJB)和第三个(cotJC)顺反子的推定产物)在突变体的外壳中缺失或数量减少外,在12至65 kDa范围内的模式与野生型菌株基本相同。在cotE无突变体的芽孢中检测到相同表观大小的多肽,基于此我们推断cotJ操纵子的产物是外壳内层正常形成所必需的,或者它们本身就是外壳的结构成分。由于cotJ转录的开始在时间上与活性σE的出现一致,我们推测cotJ编码的产物可能参与外壳组装的早期阶段。

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