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The allosteric vestibule of a seven transmembrane helical receptor controls G-protein coupling

机译:七个跨膜螺旋受体的变构前庭控制G蛋白偶联

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摘要

Seven transmembrane helical receptors (7TMRs) modulate cell function via different types of G proteins, often in a ligand-specific manner. Class A 7TMRs harbour allosteric vestibules in the entrance of their ligand-binding cavities, which are in the focus of current drug discovery. However, their biological function remains enigmatic. Here we present a new strategy for probing and manipulating conformational transitions in the allosteric vestibule of label-free 7TMRs using the M2 acetylcholine receptor as a paradigm. We designed dualsteric agonists as 'tailor-made' chemical probes to trigger graded receptor activation from the acetylcholine-binding site while simultaneously restricting spatial flexibility of the receptor's allosteric vestibule. Our findings reveal for the first time that a 7TMR's allosteric vestibule controls the extent of receptor movement to govern a hierarchical order of G-protein coupling. This is a new concept assigning a biological role to the allosteric vestibule for controlling fidelity of 7TMR signalling.
机译:七个跨膜螺旋受体(7TMR)通常以配体特异性方式通过不同类型的G蛋白调节细胞功能。 A类7TMR在其配体结合腔的入口处带有变构前庭,这是当前药物发现的重点。但是,它们的生物学功能仍然是谜。在这里,我们提出了一种新的策略,以M2乙酰胆碱受体为范例,探索和操纵无标记7TMR的变构前庭中的构象转变。我们将双空间激动剂设计为“量身定制”的化学探针,以触发乙酰胆碱结合位点上的分级受体激活,同时限制受体的变构前庭的空间灵活性。我们的发现首次揭示了7TMR的变构前庭控制受体运动的程度,以控制G蛋白偶联的分级顺序。这是赋予变构前庭生物学角色以控制7TMR信号保真度的新概念。

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