Billot-Klein D, Shlaes D, Bryant D, Bell D, van Heijenoort J, Gutmann L
L.R.M.A., Paris, France.
Biochem J. 1996 Feb 1;313 ( Pt 3)(Pt 3):711-5. doi: 10.1042/bj3130711.
Resistance to glycopeptide antibiotics in enterococci is due to the synthesis of UDP-MurNAc-tetrapeptide-D-lactate (where Mur is muramic acid) replacing the normal UDP-MurNAc-pentapeptide precursor. The peptidoglycan structures of an inducible VanB-type glycopeptide-resistant Enterococcus faecium, D366, and its constitutively resistant derivative, MT9, were determined. Using HPLC, 17 muropeptides were identified and were present regardless of whether resistance was expressed or not. The structures of 15 muropeptides were determined using MS and amino acid analysis. The cross-bridge between D-alanine and L-lysine consisted of one asparagine. No monomer pentapeptide or tetrapeptide-D-lactate could be identified. These results obtained with D366 (non-induced) and MT9 indicate that, in the absence of vancomycin, the cell wall synthetic machinery of E. faecium can process the lactate-containing precursor as efficiently as the normal pentapeptide. In contrast, the presence of subinhibitory inducing concentrations of vancomycin interfered with the synthesis of oligomers.
肠球菌对糖肽类抗生素的耐药性是由于合成了UDP-胞壁酰四肽-D-乳酸(其中Mur为胞壁酸)来取代正常的UDP-胞壁酰五肽前体。测定了一株可诱导的VanB型耐糖肽粪肠球菌D366及其组成型耐药衍生物MT9的肽聚糖结构。使用高效液相色谱法,鉴定出17种胞壁肽,无论是否表达耐药性,它们均存在。使用质谱和氨基酸分析确定了15种胞壁肽的结构。D-丙氨酸和L-赖氨酸之间的交联桥由一个天冬酰胺组成。未鉴定出单体五肽或四肽-D-乳酸。用D366(未诱导)和MT9获得的这些结果表明,在没有万古霉素的情况下,粪肠球菌的细胞壁合成机制能够像处理正常五肽一样有效地处理含乳酸的前体。相反,亚抑菌诱导浓度的万古霉素的存在会干扰寡聚物的合成。