Functionally Selective Dopamine D1 Receptor Endocytosis and Signaling by Catechol and Noncatechol Agonists.

IF 2.9 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Biochemistry Biochemistry Pub Date : 2025-03-20 DOI:10.1021/acs.biochem.4c00876
Ashley N Nilson, Daniel E Felsing, Pingyuan Wang, Manish K Jain, Jia Zhou, John A Allen
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Abstract

The dopamine D1 receptor (D1R) has fundamental roles in voluntary movement and memory and is a validated drug target for neurodegenerative and neuropsychiatric disorders. However, previously developed D1R selective agonists possess a catechol moiety which displays poor pharmacokinetic properties. The first selective noncatechol D1R agonists were recently discovered and unexpectedly many of these ligands showed G protein biased signaling. Here, we investigate both catechol and noncatechol D1R agonists to validate potential biased signaling and examine if this impacts agonist-induced D1R endocytosis. We determined that most, but not all, noncatechol agonists display G protein biased signaling at the D1R and have reduced or absent β-arrestin2 recruitment. A notable exception was compound (Cmpd) 19, a noncatechol agonist with full efficacy at both D1R-G protein and D1R-β-arrestin2 pathways. In addition, the catechol ligand A-77636 was a highly potent, super agonist for D1R-β-arrestin2 activity. When examined for agonist-induced D1R endocytosis, balanced agonists SKF-81297 and Cmpd 19 induced robust D1R endocytosis while the G protein biased agonists did not. The β-arrestin2 super agonist, A-77636, showed statistically significant increases in D1R endocytosis. Moreover, β-arrestin2 recruitment efficacy of tested agonists strongly correlated with total D1R endocytosis. Taken together, these results indicate the degree of D1R signaling functional selectivity profoundly impacts D1R endocytosis regardless of pharmacophore. The range of functional selectivity of these D1R agonists will provide valuable tools to further investigate D1R signaling, trafficking and therapeutic potential.

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多巴胺 D1 受体(D1R)在自主运动和记忆中起着重要作用,是治疗神经退行性疾病和神经精神疾病的有效药物靶点。然而,以前开发的 D1R 选择性激动剂具有儿茶酚分子,药代动力学特性较差。最近发现了第一批选择性非儿茶酚 D1R 激动剂,出乎意料的是,这些配体中的许多都显示出 G 蛋白偏向信号传导。在此,我们对儿茶酚和非儿茶酚 D1R 激动剂进行了研究,以验证潜在的偏向信号传导,并研究这是否会影响激动剂诱导的 D1R 内吞。我们确定,大多数(但不是所有)非儿茶酚激动剂在 D1R 上显示出 G 蛋白偏向信号传导,并减少或缺失 β-restin2 募集。化合物(Cmpd)19 是一个明显的例外,它是一种非儿茶酚激动剂,在 D1R-G 蛋白和 D1R-β-restin2 通路上都有充分的功效。此外,儿茶酚配体 A-77636 对 D1R-β-arrestin2 活性也是一种高效的超级激动剂。在检测激动剂诱导的 D1R 内吞时,平衡激动剂 SKF-81297 和 Cmpd 19 能诱导强大的 D1R 内吞,而偏向 G 蛋白的激动剂则不能。β-arrestin2超级激动剂A-77636对D1R内吞的增加具有统计学意义。此外,受试激动剂的 β-arrestin2 招募功效与 D1R 内吞总量密切相关。综上所述,这些结果表明,无论药源性如何,D1R 信号功能选择性的程度都会对 D1R 的内吞作用产生深远影响。这些 D1R 激动剂的功能选择性范围将为进一步研究 D1R 信号转导、转运和治疗潜力提供宝贵的工具。
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来源期刊
Biochemistry Biochemistry
Biochemistry Biochemistry 生物-生化与分子生物学
CiteScore
5.50
自引率
3.40%
发文量
336
审稿时长
1-2 weeks
期刊介绍: Biochemistry provides an international forum for publishing exceptional, rigorous, high-impact research across all of biological chemistry. This broad scope includes studies on the chemical, physical, mechanistic, and/or structural basis of biological or cell function, and encompasses the fields of chemical biology, synthetic biology, disease biology, cell biology, nucleic acid biology, neuroscience, structural biology, and biophysics. In addition to traditional Research Articles, Biochemistry also publishes Communications, Viewpoints, and Perspectives, as well as From the Bench articles that report new methods of particular interest to the biological chemistry community.
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