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一种G蛋白偏向性激动剂的构效关系研究揭示了D型多巴胺受体偏向性信号传导的分子决定因素。

Structure-Activity Investigation of a G Protein-Biased Agonist Reveals Molecular Determinants for Biased Signaling of the D Dopamine Receptor.

作者信息

Chun Lani S, Vekariya Rakesh H, Free R Benjamin, Li Yun, Lin Da-Ting, Su Ping, Liu Fang, Namkung Yoon, Laporte Stephane A, Moritz Amy E, Aubé Jeffrey, Frankowski Kevin J, Sibley David R

机构信息

Molecular Neuropharmacology Section, National Institute of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, MD, United States.

Department of Medicinal Chemistry and Specialized Chemistry Center, University of Kansas, Lawrence, KS, United States.

出版信息

Front Synaptic Neurosci. 2018 Feb 21;10:2. doi: 10.3389/fnsyn.2018.00002. eCollection 2018.

Abstract

The dopamine D2 receptor (D2R) is known to elicit effects through activating two major signaling pathways mediated by either G proteins (Gi/o) or β-arrestins. However, the specific role of each pathway in physiological or therapeutic activities is not known with certainty. One approach to the dissection of these pathways is through the use of drugs that can selectively modulate one pathway vs. the other through a mechanism known as functional selectivity or biased signaling. Our laboratory has previously described a G protein signaling-biased agonist, MLS1547, for the D2R using a variety of functional assays. To further evaluate the biased signaling activity of this compound, we investigated its ability to promote D2R internalization, a process known to be mediated by β-arrestin. Using multiple cellular systems and techniques, we found that MLS1547 promotes little D2R internalization, which is consistent with its inability to recruit β-arrestin. Importantly, we validated these results in primary striatal neurons where the D2R is most highly expressed suggesting that MLS1547 will exhibit biased signaling activity . In an effort to optimize and further explore structure-activity relationships (SAR) for this scaffold, we conducted an iterative chemistry campaign to synthesize and characterize novel analogs of MLS1547. The resulting analysis confirmed previously described SAR requirements for G protein-biased agonist activity and, importantly, elucidated new structural features that are critical for agonist efficacy and signaling bias of the MLS1547 scaffold. One of the most important determinants for G protein-biased signaling is the interaction of a hydrophobic moiety of the compound with a defined pocket formed by residues within transmembrane five and extracellular loop two of the D2R. These results shed new light on the mechanism of biased signaling of the D2R and may lead to improved functionally-selective molecules.

摘要

已知多巴胺D2受体(D2R)通过激活由G蛋白(Gi/o)或β-抑制蛋白介导的两条主要信号通路来引发效应。然而,每条通路在生理或治疗活动中的具体作用尚不确定。剖析这些通路的一种方法是使用能够通过一种称为功能选择性或偏向性信号传导的机制选择性调节一条通路而非另一条通路的药物。我们实验室之前使用各种功能测定法描述了一种针对D2R的G蛋白信号偏向性激动剂MLS1547。为了进一步评估该化合物的偏向性信号传导活性,我们研究了其促进D2R内化的能力,这一过程已知由β-抑制蛋白介导。使用多种细胞系统和技术,我们发现MLS1547几乎不促进D2R内化,这与其无法募集β-抑制蛋白一致。重要的是,我们在D2R表达最高的原代纹状体神经元中验证了这些结果,表明MLS1547将表现出偏向性信号传导活性。为了优化并进一步探索该支架的构效关系(SAR),我们开展了一项迭代化学研究,以合成和表征MLS1547的新型类似物。所得分析证实了先前描述的G蛋白偏向性激动剂活性的SAR要求,并且重要的是,阐明了对于MLS1547支架的激动剂效力和信号偏向性至关重要的新结构特征。G蛋白偏向性信号传导的最重要决定因素之一是化合物的疏水部分与由D2R跨膜5区和细胞外环2内的残基形成的特定口袋之间的相互作用。这些结果为D2R偏向性信号传导的机制提供了新的见解,并可能导致功能选择性更好的分子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af97/5826336/268b49bcc748/fnsyn-10-00002-g0001.jpg

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