Centre for Bacterial Cell Biology, Medical School, Newcastle University, Newcastle upon Tyne, UK.
EMBO J. 2011 Sep 30;30(24):4931-41. doi: 10.1038/emboj.2011.358.
Teichoic acids and acidic capsular polysaccharides are major anionic cell wall polymers (APs) in many bacteria, with various critical cell functions, including maintenance of cell shape and structural integrity, charge and cation homeostasis, and multiple aspects of pathogenesis. We have identified the widespread LytR-Cps2A-Psr (LCP) protein family, of previously unknown function, as novel enzymes required for AP synthesis. Structural and biochemical analysis of several LCP proteins suggest that they carry out the final step of transferring APs from their lipid-linked precursor to cell wall peptidoglycan (PG). In Bacillus subtilis, LCP proteins are found in association with the MreB cytoskeleton, suggesting that MreB proteins coordinate the insertion of the major polymers, PG and AP, into the cell wall.
磷壁酸和酸性荚膜多糖是许多细菌中主要的带负电荷的细胞壁聚合物 (APs),具有多种关键的细胞功能,包括维持细胞形状和结构完整性、电荷和阳离子平衡以及发病机制的多个方面。我们已经确定了广泛存在的 LytR-Cps2A-Psr (LCP) 蛋白家族,该家族以前功能未知,是合成 AP 所必需的新型酶。对几种 LCP 蛋白的结构和生化分析表明,它们完成了将 APs 从其脂连接前体转移到细胞壁肽聚糖 (PG) 的最后一步。在枯草芽孢杆菌中,LCP 蛋白与 MreB 细胞骨架相关联,这表明 MreB 蛋白协调主要聚合物 PG 和 AP 插入细胞壁。