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Ancestral reconstruction of the ligand-binding pocket of Family C G protein-coupled receptors

机译:祖先重建家族C G蛋白偶联受体的配体结合口袋

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The metabotropic glutamate receptors (mGluRs) within the Family C subclass of G protein-coupled receptors are crucial modulators of synaptic transmission. However, their closest relatives include a diverse group of sensory receptors whose biological functions are not associated with neurotransmission, raising the question of the evolutionary origin of amino acid-binding Family C receptors. A common feature of most, if not all, functional Family C receptors is the presence of an amino acid-binding site localized within the large extracellular Venus flytrap domain. Here, we used maximum likelihood methods to infer the ancestral state of key residues in the amino acid-binding pocket of a primordial Family C receptor. These residues were reconstructed in the background of the fish 5.24 chemosensory receptor, a broad-spectrum amino acid-activated receptor. Unlike the WT 5.24 receptor, which was not activated by mGluR agonists and displayed low sensitivity toward L-glutamate, the reconstructed ancestral receptor possessed a pharmacological profile characterized by high affinity for both L-glutamate and selective Group Ⅰ mGluR agonists. This pharmacological phenotype could be largely recapitulated by mutating only two residues in the 5.24 receptor-binding pocket. Our results suggest that this primordial Family C receptor may have arisen early in metazoan evolution and that it already was preadapted as a glutamate receptor for its later use at excitatory synapses in glutamate-mediated neurotransmission.
机译:G蛋白偶联受体的家族C亚类中的代谢型谷氨酸受体(mGluRs)是突触传递的关键调节剂。然而,他们的近亲包括各种各样的感觉受体,它们的生物学功能与神经传递无关,这引发了氨基酸结合家族C受体进化起源的问题。大多数(如果不是全部)功能性Family C受体的共同特征是存在于大型胞外金星捕蝇器结构域内的氨基酸结合位点。在这里,我们使用最大似然方法来推断原始家族C受体的氨基酸结合口袋中关键残基的祖先状态。这些残基是在鱼类5.24化学感应受体(一种广谱氨基酸激活的受体)的背景中重建的。与WT 5.24受体没有被mGluR激动剂激活并显示出对L-谷氨酸的低敏感性不同,祖传受体具有药理学特征,其特征在于对L-谷氨酸和选择性Ⅰ类mGluR激动剂都具有高亲和力。通过仅突变5.24受体结合口袋中的两个残基,可以在很大程度上概括这种药理表型。我们的研究结果表明,这种原始的Family C受体可能在后生动物进化的早期就出现了,并且已经被谷氨酸受体预先适应,随后可用于谷氨酸介导的神经传递的兴奋性突触中。

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