Structure of the periplasmic component of a bacterial drug efflux pump.

Multidrug resistance among Gram-negative bacteria is conferred by three-component membrane pumps that expel diverse antibiotics from the cell. These efflux pumps consist of an inner membrane transporter such as the AcrB proton antiporter, an outer membrane exit duct of the TolC family, and a peripla...

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Main Authors: Higgins, M, Bokma, E, Koronakis, E, Hughes, C, Koronakis, V
Format: Journal article
Language:English
Published: 2004
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author Higgins, M
Bokma, E
Koronakis, E
Hughes, C
Koronakis, V
author_facet Higgins, M
Bokma, E
Koronakis, E
Hughes, C
Koronakis, V
author_sort Higgins, M
collection OXFORD
description Multidrug resistance among Gram-negative bacteria is conferred by three-component membrane pumps that expel diverse antibiotics from the cell. These efflux pumps consist of an inner membrane transporter such as the AcrB proton antiporter, an outer membrane exit duct of the TolC family, and a periplasmic protein known as the adaptor. We present the x-ray structure of the MexA adaptor from the human pathogen Pseudomonas aeruginosa. The elongated molecule contains three linearly arranged subdomains; a 47-A-long alpha-helical hairpin, a lipoyl domain, and a six-stranded beta-barrel. In the crystal, hairpins of neighboring MexA monomers pack side-by-side to form twisted arcs. We discuss the implications of the packing of molecules within the crystal. On the basis of the structure and packing, we suggest a model for the key periplasmic interaction between the outer membrane channel and the adaptor protein in the assembled drug efflux pump.
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spelling oxford-uuid:3bfad7e7-9ca4-47ae-ba58-a4b03bdc524c2022-03-26T14:10:47ZStructure of the periplasmic component of a bacterial drug efflux pump.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:3bfad7e7-9ca4-47ae-ba58-a4b03bdc524cEnglishSymplectic Elements at Oxford2004Higgins, MBokma, EKoronakis, EHughes, CKoronakis, VMultidrug resistance among Gram-negative bacteria is conferred by three-component membrane pumps that expel diverse antibiotics from the cell. These efflux pumps consist of an inner membrane transporter such as the AcrB proton antiporter, an outer membrane exit duct of the TolC family, and a periplasmic protein known as the adaptor. We present the x-ray structure of the MexA adaptor from the human pathogen Pseudomonas aeruginosa. The elongated molecule contains three linearly arranged subdomains; a 47-A-long alpha-helical hairpin, a lipoyl domain, and a six-stranded beta-barrel. In the crystal, hairpins of neighboring MexA monomers pack side-by-side to form twisted arcs. We discuss the implications of the packing of molecules within the crystal. On the basis of the structure and packing, we suggest a model for the key periplasmic interaction between the outer membrane channel and the adaptor protein in the assembled drug efflux pump.
spellingShingle Higgins, M
Bokma, E
Koronakis, E
Hughes, C
Koronakis, V
Structure of the periplasmic component of a bacterial drug efflux pump.
title Structure of the periplasmic component of a bacterial drug efflux pump.
title_full Structure of the periplasmic component of a bacterial drug efflux pump.
title_fullStr Structure of the periplasmic component of a bacterial drug efflux pump.
title_full_unstemmed Structure of the periplasmic component of a bacterial drug efflux pump.
title_short Structure of the periplasmic component of a bacterial drug efflux pump.
title_sort structure of the periplasmic component of a bacterial drug efflux pump
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