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A Dynamic View of Molecular Switch Behavior at Serotonin Receptors: Implications for Functional Selectivity

机译:在5-羟色胺受体的分子开关行为的动态视图:对功能选择性的影响。

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摘要

Functional selectivity is a property of G protein-coupled receptors that allows them to preferentially couple to particular signaling partners upon binding of biased agonists. Publication of the X-ray crystal structure of serotonergic 5-HT1B and 5-HT2B receptors in complex with ergotamine, a drug capable of activating G protein coupling and β-arrestin signaling at the 5-HT1B receptor but clearly favoring β-arrestin over G protein coupling at the 5-HT2B subtype, has recently provided structural insight into this phenomenon. In particular, these structures highlight the importance of specific residues, also called micro-switches, for differential receptor activation. In our work, we apply classical molecular dynamics simulations and enhanced sampling approaches to analyze the behavior of these micro-switches and their impact on the stabilization of particular receptor conformational states. Our analysis shows that differences in the conformational freedom of helix 6 between both receptors could explain their different G protein-coupling capacity. In particular, as compared to the 5-HT1B receptor, helix 6 movement in the 5-HT2B receptor can be constrained by two different mechanisms. On the one hand, an anchoring effect of ergotamine, which shows an increased capacity to interact with the extracellular part of helices 5 and 6 and stabilize them, hinders activation of a hydrophobic connector region at the center of the receptor. On the other hand, this connector region in an inactive conformation is further stabilized by unconserved contacts extending to the intracellular part of the 5-HT2B receptor, which hamper opening of the G protein binding site. This work highlights the importance of considering receptor capacity to adopt different conformational states from a dynamic perspective in order to underpin the structural basis of functional selectivity.
机译:功能选择性是G蛋白偶联受体的一种特性,该特性使它们在偏向激动剂结合后优先与特定的信号配偶体偶联。血清素能5-HT1B和5-HT2B受体与麦角胺复合的X射线晶体结构的发表,麦角胺是一种能够激活G蛋白偶联和5-HT1B受体处的β-arrestin信号传导但明显优于β-arrestin的药物最近,5-HT2B亚型的蛋白偶联已提供了对该现象的结构见解。尤其是,这些结构突出了特定残基(也称为微开关)对于差异受体激活的重要性。在我们的工作中,我们应用经典的分子动力学模拟和增强的采样方法来分析这些微开关的行为及其对特定受体构象态稳定的影响。我们的分析表明,两个受体之间的螺旋6构象自由度的差异可以解释其不同的G蛋白偶联能力。特别是,与5-HT1B受体相比,5-HT2B受体中的6螺旋运动可以通过两种不同的机制来限制。一方面,麦角胺的锚定作用显示出与螺旋5和6的胞外部分相互作用并使其稳定的能力增强,阻碍了受体中心的疏水性连接区的活化。另一方面,通过延伸至5-HT 2B受体的细胞内部分的非保守接触进一步阻碍了处于非活性构象的该连接区,这阻碍了G蛋白结合位点的打开。这项工作凸显了从动态角度考虑受体接受不同构象状态的能力的重要性,以支撑功能选择性的结构基础。

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