首页> 外文期刊>Molecular pharmacology. >Innovative Bioluminescence Resonance Energy Transfer Assay Reveals Differential Agonist-Induced D2 Receptor Intracellular Trafficking and Arrestin-3 Recruitment
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Innovative Bioluminescence Resonance Energy Transfer Assay Reveals Differential Agonist-Induced D2 Receptor Intracellular Trafficking and Arrestin-3 Recruitment

机译:创新的生物发光共振能量转移测定揭示差异激动剂诱导的D2受体细胞内贩运和捕获3招募

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摘要

The dopamine D2 receptor (D2R) mediates ligand-biased signaling with potential therapeutic implications. However, internalization, choice of endocytic routes, and degradation of the D2R in lysosomes may also participate in agonist-directed trafficking. We developed bioluminescence resonance energy transfer (BRET) assays that measure relative distances between Renilla luciferase8-tagged D2R and green fluorescent protein 2 (GFP2)-tagged K-Ras (plasma membrane marker), and between luciferase8-tagged D2R and GFP2-Rab5 (early), GFP2-Rab4 (recycling), or GFP2-Rab7 (late) endosomal markers. The BRET signal between D2R-Luc and GFP2-K-Ras was robustly diminished after receptor internalization induced by dopamine, with subsequent BRET signals increasing when luciferase8-tagged D2R approached GFP2-Rab proteins in endosomal compartments. All BRET signals were blocked by the selective D2R antagonist haloperidol and were decreased by low temperature and high sucrose blocks, two parameters interfering with internalization. Some antipsychotic drugs, such as aripiprazole, are less efficacious in internalizing D2R than most of the antiparkinsonian agents. However, antipsychotics were nearly as efficacious as antiparkinsonians in directing the D2R toward early and recycling endosomes. The Rab7 marker for the late endosome/lysosome route was also capable of discriminating between D2R compounds. We could show that some drugs engaged the D2R either to interact preferentially with arrestin-3 or to internalize. Our study revealed that D2R trafficking in cells was differentially regulated by antipsychotic and antiparkinsonian drugs. Taken together, the BRET assays reported here could further help decipher D2R ligand-induced arrestin-3 recruitment and trafficking, with potentially more selective therapeutic profiles and fewer undesired side effects.
机译:多巴胺D2受体(D2R)用潜在的治疗意义介导配体偏置的信号传导。然而,内部化,内吞路线的选择和溶酶体中D2R的降解也可能参与激动剂导向的贩运。我们开发了生物发光共振能量转移(BRET)测定,其测量雷尼拉卢西赛膦酰亚胺蛋白酶8标记的D2R和绿色荧光蛋白2(GFP2) - 标记的K-RAS(血浆膜标记)之间的相对距离,以及Luciferase8标记的D2R和GFP2-RAB5(早期),GFP2-RAB4(再循环),或GFP2-RAB7(晚期)内体标记物。在多巴胺诱导的受体内化后D2R-LUC和GFP2-K-RA之间的布雷特信号鲁棒地减少,随后的BRET信号在内体隔室中接近GFP2-RAB蛋白时增加。所有BRET信号都被选择性D2R拮抗剂氟哌啶醇阻断,并通过低温和高蔗糖块降低,两种参数干扰内化。一些抗精神病药物如阿普哌唑,在内化D2R的效率低于大多数抗帕氏蛋白剂的药剂。然而,抗精神病药分几乎是作为抗帕金逊的效率,在将D2R指向早期和再循环的内体。用于晚期内体/溶酶体途径的RAB7标志物也能够区分D2R化合物。我们可以表明一些药物从事D2R,无论是逮捕in-3还是内化都是优选的。我们的研究表明,通过抗精神病药和抗原蛋白酶药物差异调节细胞的D2R贩运。在一起,这里报告的胸罩测定可以进一步帮助破译D2R配体诱导的逮捕型-3招募和贩运,具有更具选择性的治疗性曲线和更少的不希望的副作用。

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  • 来源
    《Molecular pharmacology.》 |2019年第3期|共12页
  • 作者单位

    CEPC Campans Belair Campans Cent Nervous Syst Innovat Unit Castres France;

    CEPC Campans Belair Campans Cent Nervous Syst Innovat Unit Castres France;

    CEPC Campans Belair Campans Cent Nervous Syst Innovat Unit Castres France;

    Univ Toulouse III Paul Sabatier Ctr Biol Dev UMR5547 CNRS Toulouse France;

    CEPC Campans Belair Campans Cent Nervous Syst Innovat Unit Castres France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 药理学;
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