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首页> 外文期刊>Neuropharmacology >Agonist-specific voltage sensitivity at the dopamine D2S receptor--molecular determinants and relevance to therapeutic ligands.
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Agonist-specific voltage sensitivity at the dopamine D2S receptor--molecular determinants and relevance to therapeutic ligands.

机译:多巴胺D2S受体的激动剂特异性电压敏感性-分子决定因素以及与治疗性配体的相关性。

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摘要

Voltage sensitivity has been demonstrated for some GPCRs. At the dopamine D(2S) receptor, this voltage sensitivity is agonist-specific; some agonists, including dopamine, exhibit decreased potency at depolarized potentials, whereas others are not significantly affected. In the present study, we examined some of the receptor-agonist interactions contributing to these differences, and investigated how dopamine D(2S) receptor voltage sensitivity affects clinically used dopamine agonists. GIRK channel activation in voltage-clamped Xenopus oocytes was used as readout of receptor activation. Structurally distinct agonists and complementary site-directed mutagenesis of the receptor's binding site were used to investigate the role of agonist-receptor interactions. We also confirmed that the depolarization-induced decrease of dopamine potency in GIRK activation is correlated by decreased binding of radiolabeled dopamine, and by decreased potency in G protein activation. In the mutagenesis experiments, a conserved serine residue as well as the conserved aspartate in the receptor's binding site were found to be important for voltage sensitive potency of dopamine. Furthermore, the voltage sensitivity of the receptor had distinct effects on different therapeutic D(2) agonists. Depolarization decreased the potency of several compounds, whereas for others, efficacy was reduced. For some agonists, both potency and efficacy were diminished, whereas for others still, neither parameter was significantly altered. The present work identifies some of the ligand-receptor interactions which determine agonist-specific effects of voltage at the dopamine D(2S) receptor. The observed differences between therapeutic agonists might be clinically relevant, and make them potential tools for investigating the roles of dopamine D(2) receptor voltage sensitivity in native tissue.
机译:某些GPCR已证明电压敏感性。在多巴胺D(2S)受体上,这种电压敏感性是激动剂特异性的;一些激动剂(包括多巴胺)在去极化电位下显示出降低的效力,而其他激动剂则没有受到明显影响。在本研究中,我们检查了促成这些差异的某些受体激动剂相互作用,并研究了多巴胺D(2S)受体电压敏感性如何影响临床使用的多巴胺激动剂。电压钳制的爪蟾卵母细胞中的GIRK通道激活被用作受体激活的读数。结构上不同的激动剂和受体结合位点的互补定点诱变被用来研究激动剂-受体相互作用的作用。我们还证实,去极化诱导的GIRK激活中的多巴胺效能降低与放射性标记的多巴胺的结合减少以及G蛋白活化的效能降低有关。在诱变实验中,发现受体结合位点的保守丝氨酸残基和保守的天冬氨酸对多巴胺的电压敏感性具有重要意义。此外,受体的电压敏感性对不同的治疗性D(2)激动剂有明显的影响。去极化降低了几种化合物的效力,而对于其他化合物,功效却降低了。对于一些激动剂,效力和功效均降低,而对于另一些激动剂,两个参数均未显着改变。本工作确定了一些配体-受体相互作用,这些相互作用决定了多巴胺D(2S)受体上电压的激动剂特异性作用。所观察到的治疗性激动剂之间的差异可能与临床相关,并且使其成为研究多巴胺D(2)受体电压敏感性在天然组织中的作用的潜在工具。

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