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交联肽聚糖介导溶葡萄球菌素与金黄色葡萄球菌细胞壁包膜的结合。

Cross-linked peptidoglycan mediates lysostaphin binding to the cell wall envelope of Staphylococcus aureus.

作者信息

Gründling Angelika, Schneewind Olaf

机构信息

Department of Microbiology, 920 E. 58th St., Chicago, IL 60637, USA.

出版信息

J Bacteriol. 2006 Apr;188(7):2463-72. doi: 10.1128/JB.188.7.2463-2472.2006.

Abstract

Staphylococcus simulans bv. staphylolyticus secretes lysostaphin, a bacteriocin that cleaves pentaglycine cross bridges in the cell wall of Staphylococcus aureus. The C-terminal cell wall-targeting domain (CWT) of lysostaphin is required for selective binding of this bacteriocin to S. aureus cells; however, the molecular target for this was unknown. We used purified green fluorescent protein fused to CWT (GFP-CWT) to reveal species-specific association of the reporter with staphylococci. GFP-CWT bound S. aureus cells as well as purified peptidoglycan sacculi. The addition of cross-linked murein, disaccharides linked to interconnected wall peptides, blocked GFP-CWT binding to staphylococci, whereas murein monomers or lysostaphin-solubilized cell wall fragments did not. S. aureus strain Newman variants lacking the capacity for synthesizing polysaccharide capsule (capFO), poly-N-acetylglucosamine (icaAC), lipoprotein (lgt), cell wall-anchored proteins (srtA), or the glycolipid anchor of lipoteichoic acid (ypfP) bound GFP-CWT similar to wild-type staphylococci. A tagO mutant strain, defective in the synthesis of polyribitol wall teichoic acid attached to the cell wall envelope, displayed increased GFP-CWT binding. In contrast, a femAB mutation, reducing both the amount and the length of peptidoglycan cross-linking (monoglycine cross bridges), showed a dramatic reduction in GFP-CWT binding. Thus, the CWT domain of lysostaphin directs the bacteriocin to cross-linked peptidoglycan, which also serves as the substrate for its glycyl-glycine endopeptidase domain.

摘要

模仿葡萄球菌溶葡萄球菌生物型分泌溶葡萄球菌素,这是一种可裂解金黄色葡萄球菌细胞壁中五甘氨酸交联桥的细菌素。溶葡萄球菌素的C端细胞壁靶向结构域(CWT)是该细菌素与金黄色葡萄球菌细胞选择性结合所必需的;然而,其分子靶点尚不清楚。我们使用与CWT融合的纯化绿色荧光蛋白(GFP-CWT)来揭示报告分子与葡萄球菌的种属特异性关联。GFP-CWT可结合金黄色葡萄球菌细胞以及纯化的肽聚糖囊。添加交联的胞壁质(与相互连接的壁肽相连的二糖)可阻断GFP-CWT与葡萄球菌的结合,而胞壁质单体或溶葡萄球菌素溶解的细胞壁片段则不会。缺乏合成多糖荚膜(capFO)、聚-N-乙酰葡糖胺(icaAC)、脂蛋白(lgt)、细胞壁锚定蛋白(srtA)或脂磷壁酸糖脂锚(ypfP)能力的金黄色葡萄球菌纽曼变种与野生型葡萄球菌一样能结合GFP-CWT。一个tagO突变株,在合成附着于细胞壁包膜的聚核糖醇壁磷壁酸方面存在缺陷,其显示出GFP-CWT结合增加。相反,一个femAB突变,减少了肽聚糖交联(单甘氨酸交联桥)的数量和长度,显示出GFP-CWT结合显著减少。因此,溶葡萄球菌素的CWT结构域将细菌素导向交联的肽聚糖,而肽聚糖也是其甘氨酰甘氨酸内肽酶结构域的底物。

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