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首页> 外文期刊>Nature Communications >Hydrogen-deuterium exchange mass spectrometry captures distinct dynamics upon substrate and inhibitor binding to a transporter
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Hydrogen-deuterium exchange mass spectrometry captures distinct dynamics upon substrate and inhibitor binding to a transporter

机译:氢 - 氘交换质谱法在底物上捕获与转运蛋白结合的基材和抑制剂的不同动态

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摘要

Proton-coupled transporters use transmembrane proton gradients to power active transport of nutrients inside the cell. High-resolution structures often fail to capture the coupling between proton and ligand binding, and conformational changes associated with transport. We combine HDX-MS with mutagenesis and MD simulations to dissect the molecular mechanism of the prototypical transporter XylE. We show that protonation of a conserved aspartate triggers conformational transition from outward-facing to inward-facing state. This transition only occurs in the presence of substrate xylose, while the inhibitor glucose locks the transporter in the outward-facing state. MD simulations corroborate the experiments by showing that only the combination of protonation and xylose binding, and not glucose, sets up the transporter for conformational switch. Overall, we demonstrate the unique ability of HDX-MS to distinguish between the conformational dynamics of inhibitor and substrate binding, and show that a specific allosteric coupling between substrate binding and protonation is a key step to initiate transport.
机译:质子偶联的运输仪使用跨膜质子梯度来动力营养营养物质的动力传输。高分辨率结构通常不能捕获质子和配体结合之间的耦合,以及与运输相关的构象变化。我们将HDX-MS与诱变和MD模拟相结合,解剖原型转运蛋白XYLE的分子机制。我们表明,保守的天冬氨酸的质子化触发到向外面向内侧的构象过渡。该转变仅在底物木糖的存在下发生,而抑制剂葡萄糖将运输器锁定在向外的状态下。 MD模拟通过表明仅质子化和木糖结合的组合而不是葡萄糖的组合来确定实验,而不是葡萄糖的组合。总体而言,我们展示了HDX-MS的独特能力,以区分抑制剂和衬底结合的构象动态,并且表明衬底结合和质子化之间的特异性变形偶联是引发运输的关键步骤。

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