Protonation drives the conformational switch in the multidrug transporter LmrP.
Protonation drives the conformational switch in the multidrug transporter LmrP.
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DOI:
10.1038/nchembio.1408
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发表时间:
2014-02
影响因子:
14.8
通讯作者:
Govaerts C
中科院分区:
文献类型:
--
作者:
Masureel M;Martens C;Stein RA;Mishra S;Ruysschaert JM;Mchaourab HS;Govaerts C
Multidrug antiporters of the Major Facilitator Superfamily couple proton translocation to the extrusion of cytotoxic molecules. The conformational changes that underlie the transport cycle and the structural basis of coupling of these transporters have not been elucidated. Here we utilized extensive Double Electron Electron Resonance measurements to uncover the conformational equilibrium of LmrP, a multidrug transporter from L. lactis, and to investigate how protons and ligands shift this equilibrium to enable transport. We find that the transporter switches between outward-open and outward-closed conformations depending on the protonation states of specific acidic residues forming a transmembrane protonation relay. Our data can be framed in a model of transport wherein substrate binding initiates the transport cycle by opening the extracellular side. Subsequent protonation of membrane-embedded acidic residues induces substrate release to the extracellular side and triggers a cascade of conformational changes that concludes in proton release to the intracellular side.