首页> 美国卫生研究院文献>Molecular Pharmacology >A Hydrogen-Bonded Polar Network in the Core of the Glucagon-Like Peptide-1 Receptor Is a Fulcrum for Biased Agonism: Lessons from Class B Crystal Structures
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A Hydrogen-Bonded Polar Network in the Core of the Glucagon-Like Peptide-1 Receptor Is a Fulcrum for Biased Agonism: Lessons from Class B Crystal Structures

机译:胰高血糖素样肽1受体核心中的氢键极性网络是偏向激动性的支点:来自B类晶体结构的经验教训

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摘要

The glucagon-like peptide 1 (GLP-1) receptor is a class B G protein-coupled receptor (GPCR) that is a key target for treatments for type II diabetes and obesity. This receptor, like other class B GPCRs, displays biased agonism, though the physiologic significance of this is yet to be elucidated. Previous work has implicated R2.60190, N3.43240, Q7.49394, and H6.52363 as key residues involved in peptide-mediated biased agonism, with R2.60190, N3.43240, and Q7.49394 predicted to form a polar interaction network. In this study, we used novel insight gained from recent crystal structures of the transmembrane domains of the glucagon and corticotropin releasing factor 1 (CRF1) receptors to develop improved models of the GLP-1 receptor that predict additional key molecular interactions with these amino acids. We have introduced E6.53364A, N3.43240Q, Q7.49394N, and N3.43240Q/Q7.49394N mutations to probe the role of predicted H-bonding and charge-charge interactions in driving cAMP, calcium, or extracellular signal-regulated kinase (ERK) signaling. A polar interaction between E6.53364 and R2.60190 was predicted to be important for GLP-1- and exendin-4-, but not oxyntomodulin-mediated cAMP formation and also ERK1/2 phosphorylation. In contrast, Q7.49394, but not R2.60190/E6.53364 was critical for calcium mobilization for all three peptides. Mutation of N3.43240 and Q7.49394 had differential effects on individual peptides, providing evidence for molecular differences in activation transition. Collectively, this work expands our understanding of peptide-mediated signaling from the GLP-1 receptor and the key role that the central polar network plays in these events.
机译:胰高血糖素样肽1(GLP-1)受体是B类G蛋白偶联受体(GPCR),是II型糖尿病和肥胖症治疗的主要靶标。该受体与其他B类GPCR一样,表现出偏向性激动作用,尽管其生理学意义尚待阐明。先前的工作涉及R2.60 190 ,N3.43 240 ,Q7.49 394 和H6.52 363 作为参与肽介导的有向激动作用的关键残基,R2.60 190 ,N3.43 240 和Q7.49 394 预计会形成一个极地相互作用网络在这项研究中,我们利用从胰高血糖素和促肾上腺皮质激素释放因子1(CRF1)受体跨膜结构域的最新晶体结构中获得的新颖见解,开发了改进的GLP-1受体模型,该模型预测了与这些氨基酸的其他关键分子相互作用。我们推出了E6.53 364 A,N3.43 240 Q,Q7.49 394 N和N3.43 240 Q / Q7.49 394 N突变,以探讨预测的H键和电荷-电荷相互作用在驱动cAMP,钙或细胞外信号调节激酶(ERK)信号传导中的作用。预测E6.53 364 和R2.60 190 之间的极性相互作用对GLP-1-和exendin-4-的重要作用,但不是由胃泌酸调节素介导的cAMP的形成。以及ERK1 / 2磷酸化。相比之下,Q7.49 394 ,而不是R2.60 190 /E6.53 364 ,对于这三种肽的钙动员至关重要。 N3.43 240 和Q7.49 394 的突变对单个肽具有不同的作用,为激活转换中的分子差异提供了证据。总的来说,这项工作扩大了我们对GLP-1受体介导的肽介导的信号的理解,以及中央极性网络在这些事件中发挥的关键作用。

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