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枯草芽孢杆菌的两种A类高分子量青霉素结合蛋白在芽孢形成过程中发挥冗余作用。

Two class A high-molecular-weight penicillin-binding proteins of Bacillus subtilis play redundant roles in sporulation.

作者信息

McPherson D C, Driks A, Popham D L

机构信息

Department of Biology, Virginia Polytechnic Institute and State University, Blacksburg, Virginia 24061, USA.

出版信息

J Bacteriol. 2001 Oct;183(20):6046-53. doi: 10.1128/JB.183.20.6046-6053.2001.

Abstract

The four class A penicillin-binding proteins (PBPs) of Bacillus subtilis appear to play functionally redundant roles in polymerizing the peptidoglycan (PG) strands of the vegetative-cell and spore walls. The ywhE product was shown to bind penicillin, so the gene and gene product were renamed pbpG and PBP2d, respectively. Construction of mutant strains lacking multiple class A PBPs revealed that, while PBP2d plays no obvious role in vegetative-wall synthesis, it does play a role in spore PG synthesis. A pbpG null mutant produced spore PG structurally similar to that of the wild type; however, electron microscopy revealed that in a significant number of these spores the PG did not completely surround the spore core. In a pbpF pbpG double mutant this spore PG defect was apparent in every spore produced, indicating that these two gene products play partially redundant roles. A normal amount of spore PG was produced in the double mutant, but it was frequently produced in large masses on either side of the forespore. The double-mutant spore PG had structural alterations indicative of improper cortex PG synthesis, including twofold decreases in production of muramic delta-lactam and L-alanine side chains and a slight increase in cross-linking. Sporulation gene expression in the pbpF pbpG double mutant was normal, but the double-mutant spores failed to reach dormancy and subsequently degraded their spore PG. We suggest that these two forespore-synthesized PBPs are required for synthesis of the spore germ cell wall, the first layer of spore PG synthesized on the surface of the inner forespore membrane, and that in the absence of the germ cell wall the cells lack a template needed for proper synthesis of the spore cortex, the outer layers of spore PG, by proteins on the outer forespore membrane.

摘要

枯草芽孢杆菌的四种A类青霉素结合蛋白(PBPs)似乎在聚合营养细胞和孢子壁的肽聚糖(PG)链中发挥功能冗余的作用。ywhE产物被证明能结合青霉素,因此该基因和基因产物分别被重新命名为pbpG和PBP2d。构建缺乏多种A类PBPs的突变菌株表明,虽然PBP2d在营养细胞壁合成中没有明显作用,但它在孢子PG合成中发挥作用。pbpG缺失突变体产生的孢子PG在结构上与野生型相似;然而,电子显微镜显示,在大量这些孢子中,PG并没有完全包围孢子核心。在pbpF pbpG双突变体中,这种孢子PG缺陷在产生的每个孢子中都很明显,表明这两种基因产物发挥部分冗余作用。双突变体产生的孢子PG数量正常,但经常在前芽孢两侧大量产生。双突变体孢子PG有结构改变,表明皮层PG合成不当,包括胞壁酸δ-内酰胺和L-丙氨酸侧链产量降低两倍以及交联略有增加。pbpF pbpG双突变体中的芽孢形成基因表达正常,但双突变体孢子未能进入休眠状态,随后降解了它们的孢子PG。我们认为,这两种在前芽孢中合成的PBPs是孢子生殖细胞壁合成所必需的,孢子生殖细胞壁是在内前芽孢膜表面合成的第一层孢子PG,并且在没有生殖细胞壁的情况下,细胞缺乏前芽孢外膜上的蛋白质正确合成孢子皮层(孢子PG的外层)所需的模板。

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本文引用的文献

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REQUIREMENTS FOR TRANSFORMATION IN BACILLUS SUBTILIS.枯草芽孢杆菌转化的要求。
J Bacteriol. 1961 May;81(5):741-6. doi: 10.1128/jb.81.5.741-746.1961.

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