Selectivity for d -Lactate Incorporation into the Peptidoglycan Precursors of Lactobacillus plantarum : Role of Aad, a VanX-Like d -Alanyl- d -Alanine Dipeptidase

Author:

Deghorain Marie1,Goffin Philippe1,Fontaine Laetitia1,Mainardi Jean-Luc2,Daniel Richard3,Errington Jeff3,Hallet Bernard1,Hols Pascal1

Affiliation:

1. Unité de Génétique, Institut des Sciences de la Vie, Université catholique de Louvain, 1348 Louvain-la-Neuve, Belgium

2. INSERM, U655-LRMA, Université Paris 6, Université Paris-Descartes, Centre de Recherche Biomedicales des Cordeliers, Paris, F-75006, France

3. Institute for Cell and Molecular Biosciences, The Medical School, University of New Castle upon Tyne, New Castle upon Tyne NE2 4HH, United Kingdom

Abstract

ABSTRACT Lactobacillus plantarum produces peptidoglycan precursors ending in d -lactate instead of d -alanine, making the bacterium intrinsically resistant to vancomycin. The ligase Ddl of L. plantarum plays a central role in this specificity by synthesizing d -alanyl- d -lactate depsipeptides that are added to the precursor peptide chain by the enzyme MurF. Here we show that L. plantarum also encodes a d -Ala- d -Ala dipeptidase, Aad, which eliminates d -alanyl- d -alanine dipeptides that are produced by the Ddl ligase, thereby preventing their incorporation into the precursors. Although d -alanine-ended precursors can be incorporated into the cell wall, inactivation of Aad failed to suppress growth defects of L. plantarum mutants deficient in d -lactate-ended precursor synthesis.

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

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