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芽孢杆菌属芽孢中GerD孢子萌发蛋白的定位

Localization of the GerD spore germination protein in the Bacillus subtilis spore.

作者信息

Mongkolthanaruk Wiyada, Robinson Carl, Moir Anne

机构信息

Department of Molecular Biology and Biotechnology, University of Sheffield, Firth Court, Western Bank, Sheffield S10 2TN, UK.

出版信息

Microbiology (Reading). 2009 Apr;155(Pt 4):1146-1151. doi: 10.1099/mic.0.023853-0.

Abstract

The GerD protein of Bacillus subtilis is required for efficient spore germination in l-alanine, and for germination in the alternative germinant combination of amino acids plus sugars. Only germination via nutrient receptors is affected in the mutant. The GerD protein is predicted to be a lipoprotein that is produced in the forespore compartment of the sporulating cell. Using antibody raised against the GerD protein, Western blots of proteins from spore fractions revealed that, as might be expected, the protein was detected in the inner membrane of spores, but it was also present at a high level in spore integuments (comprising coat, cortex and germ cell wall layers), and to some extent in the soluble fraction. It is likely that the GerD protein in the outer layers of dormant spores is located in the germ cell wall, as it was detected in coat-defective spores, and in the cell wall fraction of cells that were outgrowing from spores. Which of the multiple locations of GerD is important for its function is not known, but the inner membrane association would be appropriate for any interaction with germinant receptor proteins or SleB cortex lytic enzyme. Substitution of alanine for cysteine in the conserved cleavage site of the predicted prelipoprotein signal sequence of GerD resulted in mutant spores that lacked the GerD protein entirely.

摘要

枯草芽孢杆菌的GerD蛋白对于在L-丙氨酸中高效芽孢萌发以及在氨基酸加糖类的替代萌发剂组合中萌发是必需的。在该突变体中,只有通过营养受体的萌发受到影响。GerD蛋白预计是一种脂蛋白,在芽孢形成细胞的前芽孢区室中产生。使用针对GerD蛋白产生的抗体,对芽孢组分中的蛋白质进行蛋白质印迹分析表明,正如预期的那样,该蛋白在芽孢的内膜中被检测到,但它在芽孢被膜(包括外壳、皮层和芽孢细胞壁层)中也大量存在,并且在一定程度上存在于可溶部分中。休眠芽孢外层中的GerD蛋白可能位于芽孢细胞壁中,因为在外壳缺陷型芽孢以及从芽孢生长出来的细胞的细胞壁组分中都检测到了它。GerD的多个位置中哪一个对其功能重要尚不清楚,但内膜结合对于与萌发剂受体蛋白或SleB皮层裂解酶的任何相互作用来说是合适的。在GerD预测的前脂蛋白信号序列的保守切割位点将丙氨酸替换为半胱氨酸,导致突变芽孢完全缺乏GerD蛋白。

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