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PMID: 11321568 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Review

Precious things come in little packages.

Journal of molecular microbiology and biotechnology ·Vol. 3 ·No. 2 ·2001-04-00 ·Pages 155-62

Schuldiner S, Granot D, Steiner S, Ninio S, Rotem D, Soskin M, Yerushalmi H

Abstract

The 110-amino acid multidrug transporter from E. coli, EmrE, is a member of the family of MiniTexan or Smr drug transporters. EmrE can transport acriflavine, ethidium bromide, tetraphenylphosphonium (TPP+), benzalkonium and several other drugs with relatively high affinities. EmrE is an H+/drug antiporter, utilizing the proton electrochemical gradient generated across the bacterial cytoplasmic membrane by exchanging two protons with one substrate molecule. The EmrE multidrug transporter is unique in its small size and hydrophobic nature. Hydropathic analysis of the EmrE sequence predicts four alpha-helical transmembrane segments. This model is experimentally supported by FTIR studies that confirm the high alpha-helicity of the protein and by high-resolution heteronuclear NMR analysis of the protein structure. The TMS of EmrE are tightly packed in the membrane without any continuous aqueous domain, as was shown by Cysteine scanning experiments. These results suggest the existence of a hydrophobic pathway through which the substrates are translocated. EmrE is functional as a homo-oligomer as suggested by several lines of evidence, including co-reconstitution experiments of wild-type protein with inactive mutants in which negative dominance has been observed. EmrE has only one membrane embedded charged residue, Glu-14, that is conserved in more than fifty homologous proteins and it is a simple model system to study the role of carboxylic residues in ion-coupled transporters. We have used mutagenesis and chemical modification to show that Glu-14 is part of the substrate-binding site. Its role in proton binding and translocation was shown by a study of the effect of pH on ligand binding, uptake, efflux and exchange reactions. We conclude that Glu-14 is an essential part of a binding site, common to substrates and protons. The occupancy of this site is mutually exclusive and provides the basis of the simplest coupling of two fluxes. Because of some of its properties and its size, EmrE provides a unique system to understand mechanisms of substrate recognition and translocation.

MeSH Terms
Amino Acid Sequence Antiporters/chemistry,genetics,metabolism Bacterial Proteins/chemistry,metabolism Drug Resistance, Multiple Escherichia coli/genetics,metabolism Escherichia coli Proteins Macromolecular Substances Membrane Proteins/chemistry,genetics,metabolism Models, Molecular Molecular Sequence Data Nuclear Magnetic Resonance, Biomolecular Protein Structure, Secondary Spectroscopy, Fourier Transform Infrared
Chemicals
Antiporters Bacterial Proteins Escherichia coli Proteins Macromolecular Substances Membrane Proteins EmrE protein, E coli
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Schuldiner S
Alexander Silberman Institute of Life Sciences, Hebrew University of Jerusalem, Israel.
Granot D
Steiner S
Ninio S
Rotem D
Soskin M
Yerushalmi H
Article Info
Journal
Journal of molecular microbiology and biotechnology
Abbr.
J Mol Microbiol Biotechnol
ISSN
1464-1801
Published
2001-04-00
Pages
155-62
Language
English
Region
Switzerland
NLM ID
100892561
Subset
IM
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