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李斯特菌噬菌体溶素 PlyP35 的细胞壁结合结构域识别细胞壁磷壁酸中的末端 GlcNAc 残基。

The cell wall binding domain of Listeria bacteriophage endolysin PlyP35 recognizes terminal GlcNAc residues in cell wall teichoic acid.

机构信息

Institute of Food, Nutrition and Health, ETH Zurich, Schmelzbergstrasse 7, CH-8092 Zurich, Switzerland.

出版信息

Mol Microbiol. 2011 Sep;81(6):1419-32. doi: 10.1111/j.1365-2958.2011.07774.x. Epub 2011 Aug 2.

Abstract

The cell wall binding domains (CBD) of bacteriophage endolysins target the enzymes to their substrate in the bacterial peptidoglycan with extraordinary specificity. Despite strong interest in these enzymes as novel antimicrobials, little is known regarding their interaction with the bacterial wall and their binding ligands. We investigated the interaction of Listeria phage endolysin PlyP35 with carbohydrate residues present in the teichoic acid polymers on the peptidoglycan. Biochemical and genetic analyses revealed that CBD of PlyP35 specifically recognizes the N-acetylglucosamine (GlcNAc) residue at position C4 of the polyribitol-phosphate subunits. Binding of CBDP35 could be prevented by removal of wall teichoic acid (WTA) polymers from cell walls, and inhibited by addition of purified WTAs or acetylated saccharides. We show that Listeria monocytogenes genes lmo2549 and lmo2550 are required for decoration of WTAs with GlcNAc. Inactivation of either gene resulted in a lack of GlcNAc glycosylation, and the mutants failed to bind CBDP35. We also report that the GlcNAc-deficient phenotype of L. monocytogenes strain WSLC 1442 is due to a small deletion in lmo2550, resulting in synthesis of a truncated gene product responsible for the glycosylation defect. Complementation with lmo2550 completely restored display of characteristic serovar 1/2 specific WTA and the wild-type phenotype.

摘要

噬菌体溶素的细胞壁结合结构域 (CBD) 以极高的特异性将酶靶向细菌肽聚糖中的底物。尽管人们对这些酶作为新型抗菌药物非常感兴趣,但对于它们与细菌细胞壁的相互作用及其结合配体知之甚少。我们研究了李斯特菌噬菌体溶素 PlyP35 与肽聚糖上的磷壁酸聚合物中存在的碳水化合物残基的相互作用。生化和遗传分析表明,PlyP35 的 CBD 特异性识别多核糖醇磷酸亚基 C4 位的 N-乙酰葡萄糖胺 (GlcNAc) 残基。CBDP35 的结合可以通过从细胞壁上去除壁磷壁酸 (WTA) 聚合物来阻止,并通过添加纯化的 WTA 或乙酰化糖来抑制。我们表明,李斯特菌 lmo2549 和 lmo2550 基因是 WTA 用 GlcNAc 修饰所必需的。任一基因的失活导致 GlcNAc 糖基化缺失,突变体无法结合 CBDP35。我们还报告说,李斯特菌 WSLC 1442 菌株的 GlcNAc 缺陷表型是由于 lmo2550 中的小缺失,导致负责糖基化缺陷的截短基因产物的合成。lmo2550 的互补完全恢复了特征血清型 1/2 特异性 WTA 的显示和野生型表型。

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