ServicenavigationHauptnavigationTrailKarteikarten


Forschungsstelle
COST
Projektnummer
C00.0048
Projekttitel
Antibiotic Substrate Specifity of Multidrug Efflux Pumps from Pseudomonas Aeruginosa
Projekttitel Englisch
Antibiotic Substrate Specifity of Multidrug Efflux Pumps from Pseudomonas Aeruginosa

Texte zu diesem Projekt

 DeutschFranzösischItalienischEnglisch
Schlüsselwörter
-
-
-
Anzeigen
Forschungsprogramme
-
-
-
Anzeigen
Kurzbeschreibung
-
-
-
Anzeigen
Weitere Hinweise und Angaben
-
-
-
Anzeigen
Partner und Internationale Organisationen
-
-
-
Anzeigen
Abstract
-
-
-
Anzeigen
Datenbankreferenzen
-
-
-
Anzeigen

Erfasste Texte


KategorieText
Schlüsselwörter
(Englisch)
Antibiotic resistance; efflux; pseudomonas aeruginosa
Forschungsprogramme
(Englisch)
COST-Action B16 - Multidrung Resistance Reversal
Kurzbeschreibung
(Englisch)
See abstract
Weitere Hinweise und Angaben
(Englisch)
Full name of research-institution/enterprise: Université de Genève Department of Microbiology and Molecular Medicine
Partner und Internationale Organisationen
(Englisch)
A, B, CZ, DK, FIN, F, D, H, I, LV, NL, N, PL, P, SK, E, S, CH, GB
Abstract
(Englisch)
At least four broad spectrum efflux pumps (Mex) are involved in the elevated intrinsic antibiotic resistance as well as in the acquired multidrug resistance in Pseudomonas aeruginosa. Substrate specificity of the Mex pumps has been shown to be determined by the cytoplasmic membrane component (MexB, MexD, MexF and MexY) of the tripartite efflux pump system. Alignment of their amino acid sequences with those of the homologous AcrB and AcrD pump proteins of Escherichia coli showed conservation of 5 charged amino acid residues located in or next to transmembrane segments (TMS). These residues were mutated in the MexF gene by site directed mutagenesis and replaced by residues of opposite or neutral charge. MexF proteins containing combined D410A and A411G substitutions located in TMS4 were completely inactive. Similarly, substitutions E417K (next to TMS4) and K951E (TMS10) also lost activity towards all tested antibiotics. Substitution E349K in TMS2 resulted in a MexF mutant protein which was unable to transport trimethoprim and quinolones but retained partial activity for the transport of chloramphenicol. All mutated MexF proteins were expressed at comparable levels when tested by Western blot analysis. It is concluded that charged residues located in or close to TMS are essential for proper function of MexF.
Datenbankreferenzen
(Englisch)
Swiss Database: COST-DB of the State Secretariat for Education and Research Hallwylstrasse 4 CH-3003 Berne, Switzerland Tel. +41 31 322 74 82 Swiss Project-Number: C00.0048