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胰高血糖素样肽-1受体的细胞外表面是偏向激动作用的分子触发因素。

The Extracellular Surface of the GLP-1 Receptor Is a Molecular Trigger for Biased Agonism.

作者信息

Wootten Denise, Reynolds Christopher A, Smith Kevin J, Mobarec Juan C, Koole Cassandra, Savage Emilia E, Pabreja Kavita, Simms John, Sridhar Rohan, Furness Sebastian G B, Liu Mengjie, Thompson Philip E, Miller Laurence J, Christopoulos Arthur, Sexton Patrick M

机构信息

Drug Discovery Biology, Monash Institute of Pharmaceutical Sciences, Monash University, Parkville, Victoria 3052, Australia.

School of Biological Sciences, University of Essex, Colchester CO4 3SQ, UK.

出版信息

Cell. 2016 Jun 16;165(7):1632-1643. doi: 10.1016/j.cell.2016.05.023.

Abstract

Ligand-directed signal bias offers opportunities for sculpting molecular events, with the promise of better, safer therapeutics. Critical to the exploitation of signal bias is an understanding of the molecular events coupling ligand binding to intracellular signaling. Activation of class B G protein-coupled receptors is driven by interaction of the peptide N terminus with the receptor core. To understand how this drives signaling, we have used advanced analytical methods that enable separation of effects on pathway-specific signaling from those that modify agonist affinity and mapped the functional consequence of receptor modification onto three-dimensional models of a receptor-ligand complex. This yields molecular insights into the initiation of receptor activation and the mechanistic basis for biased agonism. Our data reveal that peptide agonists can engage different elements of the receptor extracellular face to achieve effector coupling and biased signaling providing a foundation for rational design of biased agonists.

摘要

配体导向的信号偏向为塑造分子事件提供了机会,有望带来更好、更安全的治疗方法。对信号偏向的利用至关重要的是理解将配体结合与细胞内信号传导联系起来的分子事件。B类G蛋白偶联受体的激活是由肽N端与受体核心的相互作用驱动的。为了理解这是如何驱动信号传导的,我们使用了先进的分析方法,这些方法能够将对特定信号通路的影响与那些改变激动剂亲和力的影响区分开来,并将受体修饰的功能后果映射到受体-配体复合物的三维模型上。这为受体激活的起始以及偏向激动作用的机制基础提供了分子层面的见解。我们的数据表明,肽激动剂可以与受体细胞外表面的不同元件相互作用,以实现效应器偶联和偏向信号传导,为偏向激动剂的合理设计奠定了基础。

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