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Structural basis of isethionate transport by a TRAP transporter from a sulfate-reducing bacterium
Journal article   Open access   Peer reviewed

Structural basis of isethionate transport by a TRAP transporter from a sulfate-reducing bacterium

Michael C Newton-Vesty, Mariafrancesca Scalise, Sam A Jamieson, Michael J Currie, Hamish G Brown, Sepideh Valimehr, Zachary D Tillett, Kelsi R Hall, Senwei Quan, Jane R Allison, …
Structure, Vol.34(1), pp.133-144.e5
05/11/2025
Handle:
https://hdl.handle.net/10523/48648

Abstract

Oleidesulfovibrio alaskensis Desulfovibrio tripartite ATP-independent periplasmic (TRAP) transporters bacterial sulfur metabolism substrate-binding proteins cryogenic electron microscopy isethionate
Sulfate-reducing bacteria import organosulfur compounds from the environment for anaerobic respiration. They contribute to human disease and are problematic in industrial settings because they produce hydrogen sulfide. Here, we demonstrate how the sulfate-reducing bacterium Oleidesulfovibrio alaskensis imports isethionate, a common organosulfonate, using a tripartite ATP-independent periplasmic (TRAP) transporter (OaIsePQM). The cryo-EM structure of isethionate-bound OaIseQM to 2.98 Å resolution defines the substrate-binding site, two Na+-binding sites, and a distinct fusion helix. Key residues within the OaIseQM substrate-binding site are identified using substitution and proteoliposome assays. Functional studies demonstrate that OaIseQM requires the substrate-binding protein (OaIseP) and a Na+ gradient to drive transport. Modeling of the OaIsePQM complex supports that elevator-type conformational changes are involved in this unique coupled transport process. This work expands our knowledge of the transport of organosulfur compounds in bacteria and establishes OaIsePQM as a new model system for exploring the mechanism of TRAP transporters.
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Published (Version of record) Open Access CC BY V4.0
url
https://doi.org/10.1016/j.str.2025.10.011View
Published (Version of record) Open CC BY V4.0

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