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肠道微生物群中草酸降解菌草酸转运蛋白 OxlT 的结构与机制

Structure and mechanism of oxalate transporter OxlT in an oxalate-degrading bacterium in the gut microbiota.

机构信息

Research Center for Computational Science, Institute for Molecular Science, National Institutes of Natural Sciences, Okazaki, 444-8585, Japan.

Graduate School of Medicine, Kyoto University, Kyoto, 606-8501, Japan.

出版信息

Nat Commun. 2023 Apr 3;14(1):1730. doi: 10.1038/s41467-023-36883-5.

Abstract

An oxalate-degrading bacterium in the gut microbiota absorbs food-derived oxalate to use this as a carbon and energy source, thereby reducing the risk of kidney stone formation in host animals. The bacterial oxalate transporter OxlT selectively uptakes oxalate from the gut to bacterial cells with a strict discrimination from other nutrient carboxylates. Here, we present crystal structures of oxalate-bound and ligand-free OxlT in two distinct conformations, occluded and outward-facing states. The ligand-binding pocket contains basic residues that form salt bridges with oxalate while preventing the conformational switch to the occluded state without an acidic substrate. The occluded pocket can accommodate oxalate but not larger dicarboxylates, such as metabolic intermediates. The permeation pathways from the pocket are completely blocked by extensive interdomain interactions, which can be opened solely by a flip of a single side chain neighbouring the substrate. This study shows the structural basis underlying metabolic interactions enabling favourable symbiosis.

摘要

肠道微生物群中的草酸降解细菌吸收食物来源的草酸,将其用作碳和能源来源,从而降低宿主动物形成肾结石的风险。细菌草酸转运蛋白 OxlT 选择性地从肠道摄取草酸进入细菌细胞,与其他营养羧酸盐严格区分。在这里,我们展示了两种不同构象的草酸结合和无配体的 OxlT 的晶体结构,即封闭和外向构象。配体结合口袋包含碱性残基,与草酸形成盐桥,同时防止在没有酸性底物的情况下发生封闭状态的构象转换。封闭口袋可以容纳草酸,但不能容纳更大的二羧酸,如代谢中间产物。来自口袋的渗透途径完全被广泛的结构域间相互作用阻断,只有通过紧邻底物的单个侧链的翻转才能打开。这项研究展示了代谢相互作用的结构基础,使有利的共生成为可能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3317/10070484/b07c0dd270e8/41467_2023_36883_Fig1_HTML.jpg

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