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编码枯草芽孢杆菌芽孢外被组装所需形态发生蛋白的基因。

Gene encoding a morphogenic protein required in the assembly of the outer coat of the Bacillus subtilis endospore.

作者信息

Zheng L B, Donovan W P, Fitz-James P C, Losick R

机构信息

Department of Cellular and Developmental Biology, Harvard University, Cambridge, Massachusetts 02138.

出版信息

Genes Dev. 1988 Aug;2(8):1047-54. doi: 10.1101/gad.2.8.1047.

Abstract

Endospores of Bacillus subtilis are encased in a two-layer protein shell known as the coat, which consists of a lammellar-like inner layer and an electron-dense outer layer. We report the cloning of the structural gene (designated cotE) for an alkali-soluble coat protein of 24 kD and show that the cotE gene product is a morphogenic protein required in the assembly of the outer coat. The nucleotide sequence of cotE reveals an open reading frame capable of encoding a 181-residue-long polypeptide of 21 kD. A cotE mutant was created by replacing the chromosomal gene, which was located at 145 degrees on the chromosome, with an in vitro constructed, deletion-mutated gene. The resulting cotE mutant formed normal-looking (optically refractile) spores that were heat resistant but were sensitive to lysozyme and somewhat impaired in germination. Ultrastructural analysis indicated that the mutant spores lacked the electron-dense outer layer of the coat but retained a normal-looking inner coat. The mutant spores were pleiotropically deficient in several coat proteins, including the product of cotE and the products of previously cloned cot genes A-C. Based on experiments in which expression of the cotA and cotC genes was found to be unimpaired in cotE mutant cells, we infer that the cotE gene product is involved in the assembly of the products of cotA-cotC, and certain other proteins into the electron-dense outer layer of the coat.

摘要

枯草芽孢杆菌的内生孢子被包裹在一种称为芽孢衣的两层蛋白质外壳中,芽孢衣由类似片层的内层和电子致密的外层组成。我们报道了编码一种24kD碱溶性芽孢衣蛋白的结构基因(命名为cotE)的克隆,并表明cotE基因产物是芽孢衣外层组装所需的一种形态发生蛋白。cotE的核苷酸序列揭示了一个开放阅读框,能够编码一个21kD、由181个残基组成的多肽。通过用体外构建的缺失突变基因取代位于染色体145度位置的染色体基因,创建了一个cotE突变体。产生的cotE突变体形成了外观正常(光学折射)的孢子,这些孢子耐热但对溶菌酶敏感,并且在萌发方面有所受损。超微结构分析表明,突变体孢子缺乏芽孢衣的电子致密外层,但保留了外观正常的内层芽孢衣。突变体孢子在几种芽孢衣蛋白方面存在多效性缺陷,包括cotE的产物以及先前克隆的cot基因A - C的产物。基于在cotE突变体细胞中发现cotA和cotC基因表达未受影响的实验,我们推断cotE基因产物参与了cotA - cotC的产物以及某些其他蛋白质组装到芽孢衣的电子致密外层中。

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