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Dynamics of the Extracellular Gate and Ion-Substrate Coupling in the Glutamate Transporter

机译:谷氨酸转运蛋白中细胞外门和离子-底物偶联的动力学。

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摘要

Glutamate transporters (GluTs) are the primary regulators of extracellular concentration of the neurotransmitter glutamate in the central nervous system. In this study, we have investigated the dynamics and coupling of the substrate and Na+ binding sites, and the mechanism of cotransport of Na+ ions, using molecular dynamics simulations of a membrane-embedded model of GluT in its apo (empty form) and various Na+- and/or substrate-bound states. The results shed light on the mechanism of the extracellular gate and on the sequence of binding of the substrate and Na+ ions to GluT during the transport cycle. The results suggest that the helical hairpin HP2 plays the key role of the extracellular gate for the substrate binding site, and that the opening and closure of the gate is controlled by substrate binding. GluT adopts an open conformation in the absence of the substrate exposing the binding sites of the substrate and Na+ ions to the extracellular solution. Based on the calculated trajectories, we propose that Na1 is the first element to bind GluT, as it is found to be important for the completion of the substrate binding site. The subsequent binding of the substrate, in turn, is shown to result in an almost complete closure of the extracellular gate and the formation of the Na2 binding site. Finally, binding of Na2 locks the extracellular gate and completes the formation of the occluded state of GluT.
机译:谷氨酸转运蛋白(GluTs)是中枢神经系统中神经递质谷氨酸的细胞外浓度的主要调节剂。在这项研究中,我们使用分子动力学模拟研究了底物与Na + 结合位点的动力学和偶联,以及Na + 离子共转运的机理。 apo(空形式)和各种Na + -和/或底物结合状态的GluT膜嵌入模型。该结果阐明了细胞外门的机制以及在运输周期中底物和Na + 离子与GluT结合的顺序。结果表明,螺旋发夹HP2在底物结合位点上起细胞外门的关键作用,并且门的打开和关闭由底物结合控制。在没有底物的情况下,GluT采用开放构象,使底物和Na + 离子的结合位点暴露于细胞外溶液。基于计算的轨迹,我们建议Na1是第一个结合GluT的元素,因为发现它对完成底物结合位点很重要。依次显示,随后的底物结合会导致细胞外门几乎完全关闭并形成Na2结合位点。最后,Na 2的结合锁住了细胞外门并完成了GluT闭塞状态的形成。

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