Wyke A W, Ward J B, Hayes M V, Curtis N A
Eur J Biochem. 1981 Oct;119(2):389-93. doi: 10.1111/j.1432-1033.1981.tb05620.x.
The degree of cross-linking of the peptidoglycan of Staphylococcus aureus H and mutants lacking penicillin-binding proteins 1 and 4 was studied. No major changes were observed in organisms lacking protein 1 whereas loss of protein 4 was accompanied by a marked reduction in the degree of cross-linking and the absence of a membrane-bound 'model' transpeptidase activity. A similar effect was achieved when cultures of the staphylococci were treated with the beta-lactam antibiotic cefoxitin. At low concentrations (0.05 microgram ml-1) cefoxitin shows highest affinity for protein 4 to which it appears to bind irreversibly. Treatment of the mutant lacking protein 4 with this concentration of the antibiotic did not affect the degree of cross-linkage. The possibility that the decrease in cross-linkage was a consequence of DD-carboxypeptidase activity on peptidoglycan precursors was investigated. Although both S. aureus H and the mutants possessed such activity it was insensitive to benzylpenicillin and cefoxitin and the role of this enzyme(s) in peptidoglycan biosynthesis remains unknown. We conclude that in vivo protein 4 acts as a transpeptidase involved in the secondary cross-linking of peptidoglycan and this activity is necessary to achieve the high degree of cross-linkage observed in the peptidoglycan of staphylococci.
对金黄色葡萄球菌H及缺乏青霉素结合蛋白1和4的突变体的肽聚糖交联程度进行了研究。在缺乏蛋白1的菌株中未观察到重大变化,而缺乏蛋白4则伴随着交联程度的显著降低以及膜结合“模型”转肽酶活性的缺失。当用β-内酰胺抗生素头孢西丁处理葡萄球菌培养物时,也会产生类似的效果。在低浓度(0.05微克/毫升)下,头孢西丁对蛋白4表现出最高亲和力,且似乎与之不可逆结合。用该浓度的抗生素处理缺乏蛋白4的突变体,并未影响交联程度。研究了交联减少是否是由于肽聚糖前体上的DD-羧肽酶活性所致。尽管金黄色葡萄球菌H和突变体均具有这种活性,但它对苄青霉素和头孢西丁不敏感,该酶在肽聚糖生物合成中的作用仍不清楚。我们得出结论,在体内蛋白4作为一种转肽酶参与肽聚糖的二次交联,且这种活性对于在葡萄球菌肽聚糖中观察到的高度交联是必需的。