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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Piecing it together: Unraveling the elusive structure-function relationship in single-pass membrane receptors
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Piecing it together: Unraveling the elusive structure-function relationship in single-pass membrane receptors

机译:一起拼凑它:解开单通膜受体中的难以捉摸的结构功能关系

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摘要

Abstract The challenge of crystallizing single-pass plasma membrane receptors has remained an obstacle to understanding the structural mechanisms that connect extracellular ligand binding to cytosolic activation. For example, the complex interplay between receptor oligomerization and conformational dynamics has been, historically, only inferred from static structures of isolated receptor domains. A fundamental challenge in the field of membrane receptor biology, then, has been to integrate experimentally observable dynamics of full-length receptors (e.g. diffusion and conformational flexibility) into static structural models of the disparate domains. In certain receptor families, e.g. the ErbB receptors, structures have led somewhat linearly to a putative model of activation. In other families, e.g. the tumor necrosis factor (TNF) receptors, structures have produced divergent hypothetical mechanisms of activation and transduction. Here, we discuss in detail these and other related receptors, with the goal of illuminating the current challenges and opportunities in building comprehensive models of single-pass receptor activation. The deepening understanding of these receptors has recently been accelerated by new experimental and computational tools that offer orthogonal perspectives on both structure and dynamics. As such, this review aims to contextualize those technological developments as we highlight the elegant and complex conformational communication between receptor domains. This article is part of a Special Issue entitled: Interactions between membrane receptors in cellular membranes edited by Kalina Hristova. ]]>
机译:摘要结晶单通浆膜受体的挑战仍然是理解连接细胞外配体与细胞溶质活化的结构机制的障碍。例如,历史上仅从分离的受体结构域的静态结构推断出受体低聚和构象动态之间的复杂相互作用。然后,膜受体生物学领域的基本挑战已经将全长受体(例如扩散和构象柔韧性)的实验可观察的动态集成到不同域的静态结构模型中。在某些受体家庭中,例如ERBB受体,结构在某种程度上线性地导致了调整的激活模型。在其他家庭中,例如肿瘤坏死因子(TNF)受体,结构产生了激活和转导的发散的假设机制。在这里,我们详细讨论了这些和其他相关的受体,其目的是照亮当前挑战和机遇,在建立一次通过受体激活的综合模型中。最近对这些受体的深化理解是通过提供对结构和动态的正交观点的新实验和计算工具加速了。因此,本综述旨在使这些技术发展中容化,因为我们突出了受体域之间的优雅和复杂的构象通信。本文是标题的特殊问题的一部分:Kalina Hristova编辑细胞膜中膜受体之间的相互作用。 ]]>

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