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疏水性氨基酸转运蛋白 MhsT 的跨膜螺旋 6 中的非螺旋区介导底物识别。

A non-helical region in transmembrane helix 6 of hydrophobic amino acid transporter MhsT mediates substrate recognition.

机构信息

Department of Molecular Biology and Genetics, Danish Research Institute of Translational Neuroscience-DANDRITE, Nordic-EMBL Partnership for Molecular Medicine, Aarhus University, Aarhus C, Denmark.

Department of Physics, Université de Montréal, Montréal, QC, Canada.

出版信息

EMBO J. 2021 Jan 4;40(1):e105164. doi: 10.15252/embj.2020105164. Epub 2020 Nov 6.

Abstract

MhsT of Bacillus halodurans is a transporter of hydrophobic amino acids and a homologue of the eukaryotic SLC6 family of Na -dependent symporters for amino acids, neurotransmitters, osmolytes, or creatine. The broad range of transported amino acids by MhsT prompted the investigation of the substrate recognition mechanism. Here, we report six new substrate-bound structures of MhsT, which, in conjunction with functional studies, reveal how the flexibility of a Gly-Met-Gly (GMG) motif in the unwound region of transmembrane segment 6 (TM6) is central for the recognition of substrates of different size by tailoring the binding site shape and volume. MhsT mutants, harboring substitutions within the unwound GMG loop and substrate binding pocket that mimick the binding sites of eukaryotic SLC6A18/B0AT3 and SLC6A19/B0AT1 transporters of neutral amino acids, exhibited impaired transport of aromatic amino acids that require a large binding site volume. Conservation of a general (G/A/C)ΦG motif among eukaryotic members of SLC6 family suggests a role for this loop in a common mechanism for substrate recognition and translocation by SLC6 transporters of broad substrate specificity.

摘要

芽孢杆菌 MhsT 是疏水性氨基酸的转运蛋白,也是真核 SLC6 家族 Na+-依赖性氨基酸、神经递质、渗透调节剂或肌酸转运体的同源物。MhsT 转运的氨基酸种类广泛,促使我们研究其底物识别机制。本研究报告了 MhsT 的六个新的底物结合结构,结合功能研究,揭示了跨膜区 6(TM6)未折叠 GMG 基序的灵活性如何通过调整结合位点的形状和体积,为不同大小的底物的识别提供核心作用。在未折叠 GMG 环和底物结合口袋内,模拟真核 SLC6A18/B0AT3 和 SLC6A19/B0AT1 中性氨基酸转运体结合位点的 MhsT 突变体,其芳香族氨基酸的转运能力受损,芳香族氨基酸需要较大的结合位点体积。SLC6 家族的真核成员中保守的一般(G/A/C)ΦG 基序表明,该环在具有广泛底物特异性的 SLC6 转运体的底物识别和转运的共同机制中发挥作用。

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本文引用的文献

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