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Understanding the molecular functions of the second extracellular loop (ECL2) of the calcitonin gene-related peptide (CGRP) receptor using a comprehensive mutagenesis approach

机译:了解使用综合诱变方法的降钙素基因相关肽(CGRP)受体的第二细胞外环(ECL2)的分子函数

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摘要

The extracellular loop 2 (ECL2) region is the most conserved of the three ECL domains in family B G protein-coupled receptors (GPCRs) and has a fundamental role in ligand binding and activation across the receptor super-family. ECL2 is fundamental for ligand-induced activation of the calcitonin gene related peptide (CGRP) receptor, a family B GPCR implicated in migraine and heart disease. In this study we apply a comprehensive targeted non-alanine substitution analysis method and molecular modelling to the functionally important residues of ECL2 to reveal key molecular interactions. We identified an interaction network between R274/Y278/D280/W283. These amino acids had the biggest reduction in signalling following alanine substitution analysis and comprise a group of basic, acidic and aromatic residues conserved in the wider calcitonin family of class B GPCRs. This study identifies key and varied constraints at each locus, including diverse biochemical requirements for neighbouring tyrosine residues and a W283H substitution that recovered wild-type (WT) signalling, despite the strictly conserved nature of the central ECL2 tryptophan and the catastrophic effects on signalling of W283A substitution. In contrast, while the distal end of ECL2 requires strict conservation of hydrophobicity or polarity in each position, mutation of these residues never has a large effect. This approach has revealed linked networks of amino acids, consistent with structural models of ECL2 and likely to represent a shared structural framework at an important ligand-receptor interface that is present across the family B GPCRs. (C) 2017 Elsevier B.V. All rights reserved.
机译:细胞外环2(ECL2)区域是家庭B g蛋白偶联受体(GPCR)中的三个ECL结构域最受保守的,并且在受体超家庭的配体结合和活化中具有基本作用。 ECL2是配体诱导的降钙素基因相关肽(CGRP)受体的激活的基础,该家族B GPCR涉及偏头痛和心脏病。在这项研究中,我们将综合靶向的非丙氨酸替代分析方法和分子模拟应用于ECL2的功能重要残留,以显示关键的分子相互作用。我们在R274 / Y278 / D280 / W283之间识别了交互网络。这些氨基酸在丙氨酸替代分析后的信号传导中具有最大的信号传导,并且包含一组碱性,酸性和芳族残基在B类GPCR的较宽降钙素家族中保守。该研究鉴定了每个基因座的关键和不同的约束,包括对邻近酪氨酸残基的各种生化要求,以及恢复野生型(WT)信号传导的W283H替代,尽管中央ECL2色氨酸的严格保守性质和对信号传导的灾难性影响W283A替换。相反,虽然ECL2的远端需要严格守恒,但在每个位置中的疏水性或极性,但这些残留物的突变从未具有很大的效果。这种方法揭示了氨基酸的链接网络,与ECL2的结构模型一致,并且可能代表在家庭B GPCR中存在的重要配体 - 受体界面处的共享结构框架。 (c)2017 Elsevier B.v.保留所有权利。

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