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色氨酸转运体细胞内门结构的重排由 Thr276 磷酸化诱导。

Structural Rearrangement of the Serotonin Transporter Intracellular Gate Induced by Thr276 Phosphorylation.

机构信息

Department of Chemical and Biomolecular Engineering, University of Illinois Urbana-Champaign, Urbana, Illinois 61801, United States.

Department of Biochemistry, University of Illinois Urbana-Champaign, Urbana, Illinois 61801, United States.

出版信息

ACS Chem Neurosci. 2022 Apr 6;13(7):933-945. doi: 10.1021/acschemneuro.1c00714. Epub 2022 Mar 8.

Abstract

The reuptake of the neurotransmitter serotonin from the synaptic cleft by the serotonin transporter, SERT, is essential for proper neurological signaling. Biochemical studies have shown that Thr276 of transmembrane helix 5 is a site of PKG-mediated SERT phosphorylation, which has been proposed to shift the SERT conformational equilibria to promote inward-facing states, thus enhancing 5-HT transport. Recent structural and simulation studies have provided insights into the conformation transitions during substrate transport but have not shed light on SERT regulation via post-translational modifications. Using molecular dynamics simulations and Markov state models, we investigate how Thr276 phosphorylation impacts the SERT mechanism and its role in enhancing transporter stability and function. Our simulations show that Thr276 phosphorylation alters the hydrogen-bonding network involving residues on transmembrane helix 5. This in turn decreases the free energy barriers for SERT to transition to the inward-facing state, thus facilitating 5-HT import. The results provide atomistic insights into SERT regulation and can be extended to other pharmacologically important transporters in the solute carrier family.

摘要

血清素转运体(SERT)从突触间隙重新摄取神经递质血清素对于正常的神经信号传递至关重要。生化研究表明,跨膜螺旋 5 中的 Thr276 是 PKG 介导的 SERT 磷酸化位点,该磷酸化被认为会使 SERT 构象平衡向有利于内向构象的方向移动,从而增强 5-HT 的转运。最近的结构和模拟研究提供了对底物转运过程中构象转变的深入了解,但并未阐明通过翻译后修饰对 SERT 进行调节的机制。本研究使用分子动力学模拟和马科夫状态模型,研究 Thr276 磷酸化如何影响 SERT 机制及其在增强转运体稳定性和功能中的作用。模拟结果表明,Thr276 磷酸化改变了涉及跨膜螺旋 5 上残基的氢键网络。这反过来又降低了 SERT 向内向构象转变的自由能壁垒,从而促进 5-HT 的摄取。研究结果为 SERT 的调节提供了原子水平的见解,并可扩展到溶质载体家族中其他具有药理学重要性的转运体。

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