Hammes W P, Neuhaus F C
Antimicrob Agents Chemother. 1974 Dec;6(6):722-8. doi: 10.1128/AAC.6.6.722.
Vancomycin inhibits the synthesis of peptidoglycan in membrane preparations from Gaffkya homari with uridine diphosphate-N-acetylmuramyl (UDP-Mur-NAc)-pentapeptide as substrate, but not with either UDP-MurNAc-tetrapeptide or UDP-MurNAc-tripeptide. These results are correlated with the specificity studies described by Perkins and Nieto for complex formation between the antibiotic and the peptide subunit. It is concluded that the formation of a complex between vancomycin and a postulated cell wall acceptor or between vancomycin and the enzymes involved in peptidoglycan synthesis does not contribute to the inhibitory action of this antibiotic. The mechanism of vancomycin action on peptidoglycan synthesis is clearly different from that of moenomycin and bacitracin. In the presence of these antibiotics, peptidoglycan synthesis is inhibited with both UDP-MurNAc-pentapeptide and -tetrapeptide as substrates. In addition, these results provide additional insight into the mechanism of phospho-MurNAc-pentapeptide translocase. For example, enhancement of the transfer of phospho-MurNAc-peptide from UDP-MurNAc-peptide to undecaprenyl-phosphate at low concentrations of vancomycin is observed with UDP-MurNAc-pentapeptide and not with -tetrapeptide. Complexation of vancomycin with undecaprenyl-diphosphate-MurNAc-pentapeptide, resulting in an ineffective intermediate, would increase the rate of transfer by preventing the reassociation of undecaprenyl-diphosphate-MurNAc-pentapeptide with the enzyme.
万古霉素以尿苷二磷酸 - N - 乙酰胞壁酰(UDP - Mur - NAc)- 五肽为底物时,可抑制来自海氏芽孢八叠球菌的膜制剂中肽聚糖的合成,但以UDP - MurNAc - 四肽或UDP - MurNAc - 三肽为底物时则不然。这些结果与珀金斯和涅托所描述的关于抗生素与肽亚基之间形成复合物的特异性研究相关。得出的结论是,万古霉素与假定的细胞壁受体之间或万古霉素与参与肽聚糖合成的酶之间形成复合物,对这种抗生素的抑制作用并无贡献。万古霉素对肽聚糖合成的作用机制明显不同于莫能菌素和杆菌肽。在这些抗生素存在的情况下,以UDP - MurNAc - 五肽和 - 四肽为底物时,肽聚糖合成均受到抑制。此外,这些结果为磷酸 - MurNAc - 五肽转位酶的机制提供了更多见解。例如,在低浓度万古霉素存在下,观察到以UDP - MurNAc - 五肽而非 - 四肽为底物时,磷酸 - MurNAc - 肽从UDP - MurNAc - 肽向十一异戊烯基 - 磷酸的转移增强。万古霉素与十一异戊烯基 - 二磷酸 - MurNAc - 五肽形成复合物,导致形成无效中间体,这将通过阻止十一异戊烯基 - 二磷酸 - MurNAc - 五肽与酶重新结合而提高转移速率。