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Conformational dynamics of the human serotonin transporter during substrate and drug binding

机译:人血清素转运蛋白在底物和药物结合过程中的构象动力学

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The serotonin transporter (SERT), a member of the neurotransmitter:sodium symporter family, is responsible for termination of serotonergic signaling by re-uptake of serotonin (5-HT) into the presynaptic neuron. Its key role in synaptic transmission makes it a major drug target, e.g. for the treatment of depression, anxiety and post-traumatic stress. Here, we apply hydrogen-deuterium exchange mass spectrometry to probe the conformational dynamics of human SERT in the absence and presence of known substrates and targeted drugs. Our results reveal significant changes in dynamics in regions TM1, EL3, EL4, and TM12 upon binding co-transported ions (Nasup+/sup/Ksup+/sup) and ligand-mediated changes in TM1, EL3 and EL4 upon binding 5-HT, the drugs S-citalopram, cocaine and ibogaine. Our results provide a comprehensive direct view of the conformational response of SERT upon?binding both biologically relevant substrate/ions and ligands of pharmaceutical interest, thus advancing our understanding of the structure-function relationship in SERT.
机译:血清素转运蛋白(SERT)是神经递质:钠共转运蛋白家族的成员,负责通过将5-羟色胺(5-HT)重新摄入突触前神经元来终止血清素能信号传导。它在突触传递中的关键作用使其成为主要的药物靶标,例如用于治疗抑郁症,焦虑症和创伤后压力。在这里,我们应用氢-氘交换质谱法在不存在和存在已知底物和靶向药物的情况下探测人SERT的构象动力学。我们的结果表明,在结合共转运离子(Na + / K + )时,TM1,EL3,EL4和TM12区域的动力学发生了显着变化,而配体介导的离子交换则发生了变化。 TM1,EL3和EL4结合5-HT,药物S-西酞普兰,可卡因和伊博加因。我们的结果提供了对SERT构象反应的全面直接观察,该构象反应是通过结合生物学上相关的底物/离子和药学上感兴趣的配体,从而增进了我们对SERT中结构-功能关系的理解。

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