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细胞壁相关多糖是噬菌体吸附到嗜热链球菌细胞表面所必需的。

A cell wall-associated polysaccharide is required for bacteriophage adsorption to the Streptococcus thermophilus cell surface.

机构信息

School of Microbiology and APC Microbiome Ireland, University College Cork, Cork, Ireland.

DSM Biotechnology Center, Delft, the Netherlands.

出版信息

Mol Microbiol. 2020 Jul;114(1):31-45. doi: 10.1111/mmi.14494. Epub 2020 Mar 5.

Abstract

Streptococcus thermophilus strain ST64987 was exposed to a member of a recently discovered group of S. thermophilus phages (the 987 phage group), generating phage-insensitive mutants, which were then characterized phenotypically and genomically. Decreased phage adsorption was observed in selected bacteriophage-insensitive mutants, and was partnered with a sedimenting phenotype and increased cell chain length or aggregation. Whole genome sequencing of several bacteriophage-insensitive mutants identified mutations located in a gene cluster presumed to be responsible for cell wall polysaccharide production in this strain. Analysis of cell surface-associated glycans by methylation and NMR spectroscopy revealed a complex branched rhamno-polysaccharide in both ST64987 and phage-insensitive mutant BIM3. In addition, a second cell wall-associated polysaccharide of ST64987, composed of hexasaccharide branched repeating units containing galactose and glucose, was absent in the cell wall of mutant BIM3. Genetic complementation of three phage-resistant mutants was shown to restore the carbohydrate and phage resistance profiles of the wild-type strain, establishing the role of this gene cluster in cell wall polysaccharide production and phage adsorption and, thus, infection.

摘要

嗜热链球菌菌株 ST64987 暴露于最近发现的一组嗜热链球菌噬菌体(987 噬菌体组)的成员中,产生了噬菌体不敏感突变体,然后对其进行了表型和基因组特征分析。在选定的噬菌体不敏感突变体中观察到噬菌体吸附减少,并与沉淀表型和增加的细胞链长度或聚集有关。对几个噬菌体不敏感突变体的全基因组测序鉴定出位于假定负责该菌株细胞壁多糖产生的基因簇中的突变。通过甲基化和 NMR 光谱分析细胞表面相关聚糖,发现 ST64987 和噬菌体不敏感突变体 BIM3 中均存在复杂的支链鼠李多糖。此外,ST64987 的第二种细胞壁相关多糖,由含有半乳糖和葡萄糖的六糖支链重复单元组成,在突变体 BIM3 的细胞壁中不存在。对三个噬菌体抗性突变体的遗传互补表明,恢复了野生型菌株的碳水化合物和噬菌体抗性特征,从而确立了该基因簇在细胞壁多糖产生和噬菌体吸附以及感染中的作用。

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