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Crystal structure of a potassium ion transporter, TrkH
Authors:Cao Yu  Jin Xiangshu  Huang Hua  Derebe Mehabaw Getahun  Levin Elena J  Kabaleeswaran Venkataraman  Pan Yaping  Punta Marco  Love James  Weng Jun  Quick Matthias  Ye Sheng  Kloss Brian  Bruni Renato  Martinez-Hackert Erik  Hendrickson Wayne A  Rost Burkhard  Javitch Jonathan A  Rajashankar Kanagalaghatta R  Jiang Youxing  Zhou Ming
Institution:Department of Physiology & Cellular Biophysics, College of Physicians and Surgeons, Columbia University, 630 West 168th Street, New York, New York 10032, USA.
Abstract:The TrkH/TrkG/KtrB proteins mediate K(+) uptake in bacteria and probably evolved from simple K(+) channels by multiple gene duplications or fusions. Here we present the crystal structure of a TrkH from Vibrio parahaemolyticus. TrkH is a homodimer, and each protomer contains an ion permeation pathway. A selectivity filter, similar in architecture to those of K(+) channels but significantly shorter, is lined by backbone and side-chain oxygen atoms. Functional studies showed that TrkH is selective for permeation of K(+) and Rb(+) over smaller ions such as Na(+) or Li(+). Immediately intracellular to the selectivity filter are an intramembrane loop and an arginine residue, both highly conserved, which constrict the permeation pathway. Substituting the arginine with an alanine significantly increases the rate of K(+) flux. These results reveal the molecular basis of K(+) selectivity and suggest a novel gating mechanism for this large and important family of membrane transport proteins.
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