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葡萄球菌表面蛋白的锚定结构。III. FemA、FemB和FemX因子在将表面蛋白锚定到细菌细胞壁中的作用。

Anchor structure of staphylococcal surface proteins. III. Role of the FemA, FemB, and FemX factors in anchoring surface proteins to the bacterial cell wall.

作者信息

Ton-That H, Labischinski H, Berger-Bächi B, Schneewind O

机构信息

Department of Microbiology and Immunology, UCLA School of Medicine, Los Angeles, California 90095, USA.

出版信息

J Biol Chem. 1998 Oct 30;273(44):29143-9. doi: 10.1074/jbc.273.44.29143.

DOI:10.1074/jbc.273.44.29143
PMID:9786923
Abstract

Surface proteins of Staphylococcus aureus are covalently linked to the bacterial cell wall by a mechanism requiring a COOH-terminal sorting signal with a conserved LPXTG motif. Cleavage between the threonine and the glycine of the LPXTG motif liberates the carboxyl of threonine to form an amide bond with the pentaglycyl cross-bridge in the staphylococcal peptidoglycan. Here, we asked whether altered peptidoglycan cross-bridges interfere with the sorting reaction and investigated surface protein anchoring in staphylococcal fem mutants. S. aureus strains carrying mutations in the femA, femB, femAB, or the femAX genes synthesize altered cross-bridges, and each of these strains displayed decreased sorting activity. Characterization of cell wall anchor structures purified from the fem mutants revealed that surface proteins were linked to cross-bridges containing one, three, or five glycyl residues, but not to the epsilon-amino of lysyl in muropeptides without glycine. When tested in a femAB strain synthesizing cross-bridges with mono-, tri-, and pentaglycyl as well as tetraglycyl-monoseryl, surface proteins were found anchored mostly to the five-residue cross-bridges (pentaglycyl or tetraglycyl-monoseryl). Thus, although wild-type peptidoglycan appears to be the preferred substrate for the sorting reaction, altered cell wall cross-bridges can be linked to the COOH-terminal end of surface proteins.

摘要

金黄色葡萄球菌的表面蛋白通过一种机制与细菌细胞壁共价连接,该机制需要一个带有保守LPXTG基序的COOH末端分选信号。LPXTG基序中苏氨酸和甘氨酸之间的切割会释放苏氨酸的羧基,从而与葡萄球菌肽聚糖中的五甘氨酰交联桥形成酰胺键。在此,我们探究了改变的肽聚糖交联桥是否会干扰分选反应,并研究了葡萄球菌fem突变体中表面蛋白的锚定情况。携带femA、femB、femAB或femAX基因突变的金黄色葡萄球菌菌株合成了改变的交联桥,并且这些菌株中的每一个都表现出分选活性降低。对从fem突变体中纯化的细胞壁锚定结构的表征显示,表面蛋白与含有一个、三个或五个甘氨酰残基的交联桥相连,但不与没有甘氨酸的胞壁肽中赖氨酸的ε-氨基相连。当在一个合成单甘氨酰、三甘氨酰、五甘氨酰以及四甘氨酰-单丝氨酰交联桥的femAB菌株中进行测试时,发现表面蛋白大多锚定在五个残基的交联桥上(五甘氨酰或四甘氨酰-单丝氨酰)。因此,尽管野生型肽聚糖似乎是分选反应的首选底物,但改变的细胞壁交联桥也可以与表面蛋白的COOH末端相连。

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