首页 | 本学科首页   官方微博 | 高级检索  
   检索      


Cleavage Specificity of Enterococcus faecalis EnpA (EF1473), a Peptidoglycan Endopeptidase Related to the LytM/Lysostaphin Family of Metallopeptidases
Authors:François Reste de Roca  Caroline Duché  Shengli Dong  Lionel Dubost  David G Pritchard  Michel Arthur  Stéphane Mesnage
Institution:1 Centre de Recherche des Cordeliers, LRMA, INSERM U872, Paris, France
2 Université Pierre et Marie Curie, UMR-S 872, Paris, France
3 Université Paris Descartes, UMR-S 872, Paris, France
4 Department of Biochemistry and Molecular Genetics, University of Alabama at Birmingham, Birmingham, AL 35294, USA
5 Laboratoire de Microbiologie de l'Environnement, Institut de Biologie Fondamentale et Appliquée, Université de Caen, INRA, USC 2017-EA 956, Caen, France
6 Muséum National d'Histoire Naturelle, USM0502, Paris, France
7 Plateforme de Spectrométrie de Masse et de Protéomique du Muséum, Département de Recherche Développement et Diversité Moléculaire, CNRS, UMR8041, Paris, France
Abstract:Enterococcus faecalis EnpA (EF1473) is a 1721-residue predicted protein encoded by prophage 03 that displays similarity to the staphylolytic glycyl-glycyl endopeptidases lysostaphin and LytM. We purified a catalytically active fragment of the protein, EnpAC, comprising residues 1374-1505 and showed that the recombinant polypeptide efficiently cleaved cross-linked muropeptides generated by muramidases, but was poorly active in intact sacculi. Analysis of the products of digestion of purified dimers by mass spectrometry indicated that EnpAC cleaves the d-Ala-l-Ala bond formed by the d,d-transpeptidase activity of penicillin-binding proteins in the last cross-linking step of peptidoglycan synthesis. Synthetic d was identified as the minimum substrate of EnpAC indicating that interaction of the enzyme with the donor peptide stem of cross-linked dimers is sufficient for its activity. Peptidoglycan was purified from various bacterial species and digested with mutanolysin and EnpAC to assess enzyme specificity. EnpAC did not cleave direct cross-links, but tolerated extensive variation in cross-bridges with respect to both their length (one to five residues) and their amino acid sequence. Recognition of the donor stem of cross-linked dimers could account for the substrate specificity of EnpAC, which is significantly broader in comparison to endopeptidases belonging to the lysostaphin family.
Keywords:PGN  peptidoglycan  GlcNAc  N-acetylglucosamine  MurNAc  N-acetylmuramic acid  PBP  penicillin-binding protein  MS  mass spectrometry  MS/MS  tandem mass spectrometry  RP  reverse phase  DAP  diaminopimelic acid
本文献已被 ScienceDirect 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号