首页> 美国卫生研究院文献>The Journal of Biological Chemistry >G protein-coupled Receptor 30 (GPR30) Forms a Plasma Membrane Complex with Membrane-associated Guanylate Kinases (MAGUKs) and Protein Kinase A-anchoring Protein 5 (AKAP5) That Constitutively Inhibits cAMP Production
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G protein-coupled Receptor 30 (GPR30) Forms a Plasma Membrane Complex with Membrane-associated Guanylate Kinases (MAGUKs) and Protein Kinase A-anchoring Protein 5 (AKAP5) That Constitutively Inhibits cAMP Production

机译:G蛋白偶联受体30(GPR30)与膜相关的鸟苷酸激酶(MAGUKs)和蛋白激酶A锚定蛋白5(AKAP5)形成血浆膜复合物从而抑制cAMP的产生。

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摘要

GPR30, or G protein-coupled estrogen receptor, is a G protein-coupled receptor reported to bind 17β-estradiol (E2), couple to the G proteins Gs and Gi/o, and mediate non-genomic estrogenic responses. However, controversies exist regarding the receptor pharmacological profile, effector coupling, and subcellular localization. We addressed the role of the type I PDZ motif at the receptor C terminus in receptor trafficking and coupling to cAMP production in HEK293 cells and CHO cells ectopically expressing the receptor and in Madin-Darby canine kidney cells expressing the native receptor. GPR30 was localized both intracellularly and in the plasma membrane and subject to limited basal endocytosis. E2 and G-1, reported GPR30 agonists, neither stimulated nor inhibited cAMP production through GPR30, nor did they influence receptor localization. Instead, GPR30 constitutively inhibited cAMP production stimulated by a heterologous agonist independently of Gi/o. Moreover, siRNA knockdown of native GPR30 increased cAMP production. Deletion of the receptor PDZ motif interfered with inhibition of cAMP production and increased basal receptor endocytosis. GPR30 interacted with membrane-associated guanylate kinases, including SAP97 and PSD-95, and protein kinase A-anchoring protein (AKAP) 5 in the plasma membrane in a PDZ-dependent manner. Knockdown of AKAP5 or St-Ht31 treatment, to disrupt AKAP interaction with the PKA RIIβ regulatory subunit, decreased inhibition of cAMP production, and St-Ht31 increased basal receptor endocytosis. Therefore, GPR30 forms a plasma membrane complex with a membrane-associated guanylate kinase and AKAP5, which constitutively attenuates cAMP production in response to heterologous agonists independently of Gi/o and retains receptors in the plasma membrane.
机译:GPR30或G蛋白偶联雌激素受体,是一种G蛋白偶联受体,据报道与17β-雌二醇(E2)结合,与G蛋白Gs和Gi / o偶联,并介导非基因组雌激素反应。但是,关于受体药理学特征,效应子偶联和亚细胞定位存在争议。我们解决了受体C末端I型PDZ基序在受体运输中的作用以及与在异位表达该受体的HEK293细胞和CHO细胞以及表达该天然受体的Madin-Darby犬肾细胞中cAMP产生的耦合。 GPR30定位在细胞内和质膜中,并受到有限的基础内吞作用。 E2和G-1报告了GPR30激动剂,既不刺激也不抑制通过GPR30产生的cAMP,也没有影响受体的定位。取而代之的是,GPR30独立于Gi / o组成性抑制异源激动剂刺激的cAMP产生。此外,天然GPR30的siRNA敲低提高了cAMP的产生。受体PDZ基序的删除会干扰cAMP产生的抑制并增加基础受体的内吞作用。 GPR30以PDZ依赖性方式与质膜中与膜相关的鸟苷酸激酶(包括SAP97和PSD-95)以及蛋白激酶A锚定蛋白(AKAP)5相互作用。击倒AKAP5或St-Ht31处理可破坏AKAP与PKARIIβ调节亚基的相互作用,降低cAMP产生的抑制作用,而St-Ht31增加基础受体的内吞作用。因此,GPR30与膜相关的鸟苷酸激酶和AKAP5形成质膜复合物,可独立于Gi / o响应异源激动剂而组成性地减弱cAMP的产生,并在质膜中保留受体。

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