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Updated: Mar 7, 2026

Introduction to Solid Supported Membrane Based Electrophysiology
Published on: May 11, 2013
Insights into the ion-coupling mechanism in the MATE transporter NorM-VC
Alexander Krah1,2, Ulrich Zachariae1,2
1Computational Biology, School of Life Sciences, University of Dundee, Dundee DD1 5EH, United Kingdom.
Abstract:
Bacteria have developed a variety of different mechanisms to defend themselves from compounds that are toxic to them, such as antibiotics. One of these defence mechanisms is the expulsion of drugs or other noxious compounds by multidrug efflux pumps. Multidrug and toxic compound extrusion (MATE) transporters are efflux pumps that extrude metabolic waste and a variety of antibiotics out of the cell, using an ion gradient as energy source. They function via an alternating-access mechanism. When ions bind in the outward facing conformation, a large conformational change to the inward facing conformation is induced, from which the ion is released and the extruded chemical compound is bound. NorM proteins, which are usually coupled to a Na+ gradient, are members of the MATE family. However, for NorM-VC from Vibrio cholerae, it has been shown that this MATE transporter is additionally coupled to protons. How H+ and Na+ binding are coupled mechanistically to enable drug antiport is not well understood. In this study, we use molecular dynamics simulations to illuminate the sequence of ion binding events that enable efflux. Understanding this antiport mechanism is important to support the development of novel compounds that specifically inhibit the functional cycle of NorM transporters.
Insights
Bacteria use multidrug efflux pumps to expel toxic compounds. This study reveals how NorM transporters in Vibrio cholerae use both sodium and proton gradients for drug expulsion, aiding in the development of new inhibitors.
Area of Science:
- Microbiology
- Biochemistry
- Structural Biology
Background:
- Bacteria possess defense mechanisms against toxic compounds, including multidrug efflux pumps.
- Multidrug and toxic compound extrusion (MATE) transporters utilize ion gradients to expel drugs and waste.
- NorM transporters, typically Na+-dependent, are MATE family members.
Purpose of the Study:
- To elucidate the mechanism of ion coupling in NorM-VC from Vibrio cholerae, which utilizes both Na+ and H+ gradients.
- To understand how dual ion gradients facilitate drug antiport.
- To provide insights for developing novel NorM transporter inhibitors.
Main Methods:
- Utilized molecular dynamics simulations.
- Investigated the sequence of ion binding events in NorM-VC.
Main Results:
- Illuminated the sequential ion binding events enabling drug efflux by NorM-VC.
- Provided a mechanistic understanding of dual Na+/H+ gradient coupling.
Conclusions:
- The study clarifies the antiport mechanism of NorM transporters.
- Understanding this mechanism is crucial for designing targeted inhibitors against multidrug resistance.
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