Structures suggest a mechanism for energy coupling by a family of organic anion transporters

Leano, Jonathan B. and Batarni, Samir and Eriksen, Jacob and Juge, Narinobu and Pak, John E. and Kimura-Someya, Tomomi and Robles-Colmenares, Yaneth and Moriyama, Yoshinori and Stroud, Robert M. and Edwards, Robert H. and Dutzler, Raimund (2019) Structures suggest a mechanism for energy coupling by a family of organic anion transporters. PLOS Biology, 17 (5). e3000260. ISSN 1545-7885

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Abstract

Members of the solute carrier 17 (SLC17) family use divergent mechanisms to concentrate organic anions. Membrane potential drives uptake of the principal excitatory neurotransmitter glutamate into synaptic vesicles, whereas closely related proteins use proton cotransport to drive efflux from the lysosome. To delineate the divergent features of ionic coupling by the SLC17 family, we determined the structure of Escherichia coli D-galactonate/H+ symporter D-galactonate transporter (DgoT) in 2 states: one open to the cytoplasmic side and the other open to the periplasmic side with substrate bound. The structures suggest a mechanism that couples H+ flux to substrate recognition. A transition in the role of H+ from flux coupling to allostery may confer regulation by trafficking to and from the plasma membrane.

Item Type: Article
Subjects: STM Article > Biological Science
Depositing User: Unnamed user with email support@stmarticle.org
Date Deposited: 21 Jan 2023 06:20
Last Modified: 21 Mar 2024 04:27
URI: http://publish.journalgazett.co.in/id/eprint/168

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