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粪肠球菌肽聚糖L-丙氨酰-L-丙氨酸交联桥的合成。

Synthesis of the L-alanyl-L-alanine cross-bridge of Enterococcus faecalis peptidoglycan.

作者信息

Bouhss Ahmed, Josseaume Nathalie, Severin Anatoly, Tabei Keiko, Hugonnet Jean-Emmanuel, Shlaes David, Mengin-Lecreulx Dominique, Van Heijenoort Jean, Arthur Michel

机构信息

Laboratoire de Recherche Moléculaire sur les Antibiotiques, Unité de Formation et de Recherche Broussais-Hôtel Dieu, Université Paris VI-INSERM E0004, 15 rue de l'Ecole de Médecine, Paris 75270, cedex 06, France.

出版信息

J Biol Chem. 2002 Nov 29;277(48):45935-41. doi: 10.1074/jbc.M207449200. Epub 2002 Sep 24.

Abstract

The enzymatic synthesis of the complete l-alanyl(1)-l-alanine(2) side chain of the peptidoglycan precursors of Enterococcus faecalis was obtained in vitro using purified enzymes. The pathway involved alanyl-tRNA synthetase and two ligases, BppA1 and BppA2, that specifically transfer alanine from Ala-tRNA to the first and second positions of the side chain, respectively. The structure of the UDP-N-acetylmuramoyl-l-Ala-gamma-d-Glu-l-Lys(N(epsilon)-l-Ala(1)-l-Ala(2))-d-Ala-d-Ala product of BppA1 and BppA2 was confirmed by mass spectrometry (MS) and MS/MS analyses. The peptidoglycan structure of the wild-type E. faecalis strain JH2-2 was determined by tandem reverse-phase high-pressure liquid chromatography-MS revealing that most muropeptides contained two l-alanyl residues in the cross-bridges and in the free N-terminal ends. Deletion of the bppA2 gene was associated with production of muropeptides containing a single alanyl residue at these positions. The relative abundance of monomers, dimers, trimers, and tetramers in the peptidoglycan of the bppA2 mutant indicated that precursors containing an incomplete side chain were efficiently used by the dd-transpeptidases in the cross-linking reaction. However, the bppA2 deletion impaired expression of intrinsic beta-lactam resistance suggesting that the low affinity penicillin-binding protein 5 did not function optimally with precursors substituted by a single alanine.

摘要

利用纯化的酶在体外实现了粪肠球菌肽聚糖前体完整的l-丙氨酰基(1)-l-丙氨酸(2)侧链的酶促合成。该途径涉及丙氨酰-tRNA合成酶以及两种连接酶BppA1和BppA2,它们分别将丙氨酸从丙氨酰-tRNA特异性转移至侧链的第一位和第二位。通过质谱(MS)和MS/MS分析证实了BppA1和BppA2的UDP-N-乙酰胞壁酰-l-丙氨酸-γ-d-谷氨酸-l-赖氨酸(N(ε)-l-丙氨酸(1)-l-丙氨酸(2))-d-丙氨酸-d-丙氨酸产物的结构。通过串联反相高压液相色谱-MS测定了野生型粪肠球菌菌株JH2-2的肽聚糖结构,结果显示大多数胞壁肽在交联桥和游离N末端含有两个l-丙氨酰基残基。bppA2基因的缺失与在这些位置含有单个丙氨酰基残基的胞壁肽的产生有关。bppA2突变体肽聚糖中单体、二聚体、三聚体和四聚体的相对丰度表明,含有不完整侧链的前体在交联反应中被dd-转肽酶有效利用。然而,bppA2的缺失损害了内在β-内酰胺抗性的表达,这表明低亲和力青霉素结合蛋白5与被单个丙氨酸取代的前体不能最佳发挥作用。

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