Hipkin R W, Sánchez-Yagüe J, Ascoli M
Department of Pharmacology, University of Iowa College of Medicine, Iowa City 52242-1109.
Mol Endocrinol. 1993 Jul;7(7):823-32. doi: 10.1210/mend.7.7.8413307.
Much of the definitive work on G-protein-coupled receptor phosphorylation and its impact on receptor function has been performed with the catecholamine receptors. Evidence for receptor phosphorylation is lacking, however, for G-protein-coupled receptors that bind larger ligands, such as LH/CG. Using immunoprecipitation techniques and a clonal cell line stably transfected with the LH/CG receptor, we show here for the first time that exposure of cells to hCG induces phosphorylation of its cognate receptor. The hCG-induced increase in receptor phosphorylation requires receptor activation because it cannot be elicited with a hCG antagonist and is mediated at least in part by the cAMP second messenger system. This hypothesis is supported by the finding that the hCG-induced receptor phosphorylation is greatly reduced (but not abolished) in a cell line that overexpresses cAMP phosphodiesterase and that receptor phosphorylation can be induced by activation of endogenous cAMP synthesis with prostaglandin E2 or by addition of 8-bromo-cAMP. Last, we show that LH/CG receptor phosphorylation can be induced with a phorbol ester, but not with a calcium ionophore. We also examined a potential correlation between LH/CG receptor phosphorylation and uncoupling of the receptor from its effector. Although the phorbol ester-induced phosphorylation of the LH/CG receptor can be correlated with uncoupling, other experiments indicate that hCG-induced uncoupling of the LH/CG receptor can occur under conditions where the cAMP-mediated receptor phosphorylation is greatly reduced (or abolished).
关于G蛋白偶联受体磷酸化及其对受体功能影响的许多权威性研究都是针对儿茶酚胺受体进行的。然而,对于结合较大配体(如促黄体生成素/绒毛膜促性腺激素,LH/CG)的G蛋白偶联受体,缺乏受体磷酸化的相关证据。利用免疫沉淀技术和稳定转染了LH/CG受体的克隆细胞系,我们首次在此证明,将细胞暴露于hCG会诱导其同源受体的磷酸化。hCG诱导的受体磷酸化增加需要受体激活,因为用hCG拮抗剂无法引发这种现象,并且至少部分是由cAMP第二信使系统介导的。这一假设得到以下发现的支持:在过表达cAMP磷酸二酯酶的细胞系中,hCG诱导的受体磷酸化大幅降低(但未消除),并且通过用前列腺素E2激活内源性cAMP合成或添加8-溴-cAMP可以诱导受体磷酸化。最后,我们表明佛波酯可以诱导LH/CG受体磷酸化,但钙离子载体不能。我们还研究了LH/CG受体磷酸化与受体与其效应器解偶联之间的潜在相关性。虽然佛波酯诱导的LH/CG受体磷酸化可能与解偶联有关,但其他实验表明,在cAMP介导的受体磷酸化大幅降低(或消除)的情况下,hCG诱导的LH/CG受体解偶联仍可能发生。