Mainardi Jean-Luc, Villet Régis, Bugg Timothy D, Mayer Claudine, Arthur Michel
INSERM, U872, LRMA, Centre de Recherche des Cordeliers, Paris, France.
FEMS Microbiol Rev. 2008 Mar;32(2):386-408. doi: 10.1111/j.1574-6976.2007.00097.x. Epub 2008 Feb 11.
Acquisition of resistance to the two classes of antibiotics therapeutically used against Gram-positive bacteria, the glycopeptides and the beta-lactams, has revealed an unexpected flexibility in the peptidoglycan assembly pathway. Glycopeptides select for diversification of the fifth position of stem pentapeptides because replacement of D-Ala by D-lactate or D-Ser at this position prevents binding of the drugs to peptidoglycan precursors. The substitution is generally well tolerated by the classical D,D-transpeptidases belonging to the penicillin-binding protein family, except by low-affinity enzymes. Total elimination of the fifth residue by a D,D-carboxypeptidase requires a novel cross-linking enzyme able to process the resulting tetrapeptide stems. This enzyme, an L,D-transpeptidase, confers cross-resistance to beta-lactams and glycopeptides. Diversification of the side chain of the precursors, presumably in response to the selective pressure of peptidoglycan endopeptidases, is controlled by aminoacyl transferases of the Fem family that redirect specific aminoacyl-tRNAs from translation to peptidoglycan synthesis. Diversification of the side chains has been accompanied by a parallel divergent evolution of the substrate specificity of the L,D-transpeptidases, in contrast to the D,D-transpeptidases, which display an unexpected broad specificity. This review focuses on the role of antibiotics in selecting or counter-selecting diversification of the structure of peptidoglycan precursors and their mode of polymerization.
对用于治疗革兰氏阳性菌的两类抗生素(糖肽类和β-内酰胺类)产生耐药性,揭示了肽聚糖组装途径中意想不到的灵活性。糖肽类会促使茎部五肽的第五位多样化,因为在此位置用D-乳酸或D-丝氨酸取代D-丙氨酸可阻止药物与肽聚糖前体结合。除了低亲和力的酶外,属于青霉素结合蛋白家族的经典D,D-转肽酶通常对这种取代耐受性良好。D,D-羧肽酶完全去除第五个残基需要一种新型交联酶来处理产生的四肽茎。这种酶,即L,D-转肽酶,赋予对β-内酰胺类和糖肽类的交叉耐药性。前体侧链的多样化大概是对肽聚糖内肽酶的选择压力的响应,由Fem家族的氨酰基转移酶控制,这些酶将特定的氨酰基tRNA从翻译重定向到肽聚糖合成。与显示出意想不到的广泛特异性的D,D-转肽酶相反,侧链的多样化伴随着L,D-转肽酶底物特异性的平行分化进化。本综述重点关注抗生素在选择或反选择肽聚糖前体结构多样化及其聚合模式方面的作用。