Role of class A penicillin-binding proteins in PBP5-mediated β-lactam resistance in Enterococcus faecalis

被引:90
作者
Arbeloa, A
Segal, H
Hugonnet, JE
Josseaume, N
Dubost, L
Brouard, JP
Gutmann, L
Mengin-Lecreulx, D
Arthur, M
机构
[1] Univ Paris 06, LRMA, INSERM, E0004, F-75270 Paris 06, France
[2] Museum Natl Hist Nat, Dept Regulat Dev & Divers Mol, CNRS, USM0502,UMR8041, F-75005 Paris, France
[3] Ctr Univ Paris Sud, Inst Biochim & Biophys Mol & Cellulaire, CNRS, UMR 8619, F-91405 Orsay, France
关键词
D O I
10.1128/JB.186.5.1221-1228.2004
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Peptidoglycan polymerization complexes contain multimodular penicillin-binding proteins (PBP) of classes A and B that associate a conserved C-terminal transpeptidase module to an N-terminal glycosyltransferase or morphogenesis module, respectively. In Enterococcus faecalis, class B PBP5 mediates intrinsic resistance to the cephalosporin class of beta-lactam antibiotics, such as ceftriaxone. To identify the glycosyltransferase partner(s) of PBP5, combinations of deletions were introduced in all three class A PBP genes of E. faecalis JH2-2 (ponA, pbpF, and pbpZ). Among mutants with single or double deletions, only JH2-2 DeltaponA DeltapbpF was susceptible to ceftriaxone. Ceftriaxone resistance was restored by heterologous expression of pbpF from Enterococcus faecium but not by mgt encoding the monofunctional glycosyltransferase of Staphylococcus aureus. Thus, PBP5 partners essential for peptidoglycan polymerization in the presence of beta-lactams formed a subset of the class A PBPs of E. faecalis, and heterospecific complementation was observed with an ortholog from E.faecium. Site-directed mutagenesis of pbpF confirmed that the catalytic serine residue of the transpeptidase module was not required for resistance. None of the three class A PBP genes was essential for viability, although deletion of the three genes led to an increase in the generation time and to a decrease in peptidoglycan cross-linking. As the E. faecalis chromosome does not contain any additional glycosyltransferase-related genes, these observations indicate that glycan chain polymerization in the triple mutant is performed by a novel type of glycosyltransferase. The latter enzyme was not inhibited by moenomycin, since deletion of the three class A PBP genes led to high-level resistance to this glycosyltransferase inhibitor.
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页码:1221 / 1228
页数:8
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