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Conformational transitions of the serotonin 5-HT_3 receptor

机译:血清素5-HT_3受体的构象转变

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The serotonin 5-HT3 receptor is a pentameric ligand-gated ion channel (pLGIC). It belongs to a large family of receptors that function as allosteric signal transducers across the plasma membrane(1,2); upon binding of neurotransmitter molecules to extracellular sites, the receptors undergo complex conformational transitions that result in transient opening of a pore permeable to ions. 5-HT3 receptors are therapeutic targets for emesis and nausea, irritable bowel syndrome and depression(3). In spite of several reported pLGIC structures(4-8), no clear unifying view has emerged on the conformational transitions involved in channel gating. Here we report four cryo-electron microscopy structures of the full-length mouse 5-HT3 receptor in complex with the anti-emetic drug tropisetron, with serotonin, and with serotonin and a positive allosteric modulator, at resolutions ranging from 3.2 angstrom to 4.5 angstrom. The tropisetron-bound structure resembles those obtained with an inhibitory nanobody(5) or without ligand(9). The other structures include an 'open' state and two ligand-bound states. We present computational insights into the dynamics of the structures, their pore hydration and free-energy profiles, and characterize movements at the gate level and cation accessibility in the pore. Together, these data deepen our understanding of the gating mechanism of pLGICs and capture ligand binding in unprecedented detail.
机译:血清素5-HT3受体是五聚体配体门控离子通道(pLGIC)。它属于一大类受体,在整个质膜上起变构信号转导的作用(1,2);在神经递质分子结合到细胞外位点后,受体会经历复杂的构象转变,从而导致可渗透离子的孔暂时打开。 5-HT3受体是呕吐和恶心,肠易激综合征和抑郁症的治疗靶标(3)。尽管已经报道了几种pLGIC结构(4-8),但对通道门控中所涉及的构象转变尚无明确的统一看法。在这里,我们报告了全长小鼠5-HT3受体与止吐药tropisetron,5-羟色胺,5-羟色胺和正变构调节剂复合的四个低温电子显微镜结构,其分辨率范围为3.2埃至4.5埃。与对流电子束结合的结构类似于使用抑制性纳米抗体(5)或不使用配体(9)获得的结构。其他结构包括“开放”状态和两个配体结合状态。我们对结构的动力学,它们的孔水合作用和自由能曲线提出了计算见解,并描述了在门级的运动和孔中阳离子的可及性。总之,这些数据加深了我们对pLGIC的门控机制的了解,并以前所未有的细节捕获了配体结合。

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