Lavelle Katherine, Sinderen Douwe van, Mahony Jennifer
School of Microbiology & APC Microbiome Ireland, University College Cork, Western Road, Cork T12 YT20, Ireland.
Comput Struct Biotechnol J. 2021 Jul 14;19:4018-4031. doi: 10.1016/j.csbj.2021.07.011. eCollection 2021.
Gram-positive bacterial cell walls are characterised by the presence of a thick peptidoglycan layer which provides protection from extracellular stresses, maintains cell integrity and determines cell morphology, while it also serves as a foundation to anchor a number of crucial polymeric structures. For ovococcal species, including streptococci, enterococci and lactococci, such structures are represented by rhamnose-containing cell wall polysaccharides, which at least in some instances appear to serve as a functional replacement for wall teichoic acids. The biochemical composition of several streptococcal, lactococcal and enterococcal rhamnose-containing cell wall polysaccharides have been elucidated, while associated functional genomic analyses have facilitated the proposition of models for individual biosynthetic pathways. Here, we review the genomic loci which encode the enzymatic machinery to produce rhamnose-containing, cell wall-associated polysaccharide (Rha cwps) structures of the afore-mentioned ovococcal bacteria with particular emphasis on gene content, biochemical structure and common biosynthetic steps. Furthermore, we discuss the role played by these saccharidic polymers as receptors for bacteriophages and the important role phages play in driving Rha cwps diversification and evolution.
革兰氏阳性菌的细胞壁具有一层厚厚的肽聚糖层,这层肽聚糖可保护细菌免受细胞外压力,维持细胞完整性并决定细胞形态,同时它还作为锚定许多关键聚合物结构的基础。对于包括链球菌、肠球菌和乳球菌在内的卵形球菌属物种,此类结构由含鼠李糖的细胞壁多糖代表,至少在某些情况下,这些多糖似乎可作为壁磷壁酸的功能替代物。几种链球菌、乳球菌和肠球菌含鼠李糖的细胞壁多糖的生化组成已得到阐明,而相关的功能基因组分析有助于提出各个生物合成途径的模型。在此,我们综述了编码上述卵形球菌产生含鼠李糖的细胞壁相关多糖(Rha cwps)结构的酶机制的基因组位点,特别强调基因内容、生化结构和常见的生物合成步骤。此外,我们讨论了这些糖类聚合物作为噬菌体受体所起的作用,以及噬菌体在推动Rha cwps多样化和进化中所起的重要作用。