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GPR92作为一种新的与G12/13和Gq偶联的溶血磷脂酸受体,即LPA5,可增加环磷酸腺苷(cAMP)。

GPR92 as a new G12/13- and Gq-coupled lysophosphatidic acid receptor that increases cAMP, LPA5.

作者信息

Lee Chang-Wook, Rivera Richard, Gardell Shannon, Dubin Adrienne E, Chun Jerold

机构信息

Department of Molecular Biology, Helen L. Dorris Institute for Neurological and Psychiatric Disorders, The Scripps Research Institute, La Jolla, California 92037, USA.

出版信息

J Biol Chem. 2006 Aug 18;281(33):23589-97. doi: 10.1074/jbc.M603670200. Epub 2006 Jun 14.

Abstract

The signaling effects of lysophospholipids such as lysophosphatidic acid (LPA) are mediated by G protein-coupled receptors (GPCRs). There are currently four LPA receptors known as LPA(1-4). Genetic deletion studies have identified essential biological functions for LPA receptors in mice. However, these studies have also revealed phenotypes consistent with the existence of as yet unidentified receptors. Toward identifying new LPA receptors, we have screened collections of GPCR cDNAs using reverse transfection and cell-based assays. Here we report an interim result of one screen to identify receptors that produced LPA-dependent changes in cell shape: the orphan receptor GPR92 has properties of a new LPA receptor. Sequence analyses of human GPR92 and its mouse homolog have approximately 35% amino acid identity with LPA4/GPR23. The same cell-based approaches that were used to identify and/or characterize LPA(1-4), particularly heterologous expression in B103 cells or RH7777 cells, were utilized and compared with known LPA receptors. Retroviral-mediated expression of epitope-tagged receptors was further combined with G protein minigenes and pharmacological intervention, along with calcium imaging and whole-cell patch clamp electrophysiology. LPA-dependent receptor internalization following exposure to LPA but not related lysophospholipids was observed. Furthermore, LPA induced concentration-dependent activation of G(12/13) and G(q) and increased cAMP levels. Specific [3H]LPA binding was detected in cell membranes heterologously expressing GPR92 but not control membranes. Northern blot and reverse transcriptase-PCR studies indicated a broad low level of expression in many tissues including embryonic brain and enrichment in small intestine and sensory dorsal root ganglia, as well as embryonic stem cells. These results support GPR92 as a fifth LPA receptor, LPA5, which likely has distinct physiological functions in view of its expression pattern.

摘要

溶血磷脂如溶血磷脂酸(LPA)的信号传导作用是由G蛋白偶联受体(GPCRs)介导的。目前已知有四种LPA受体,即LPA(1 - 4)。基因敲除研究已确定LPA受体在小鼠中的重要生物学功能。然而,这些研究也揭示了一些表型,提示可能存在尚未鉴定的受体。为了鉴定新的LPA受体,我们利用反向转染和基于细胞的分析方法对GPCR cDNA文库进行了筛选。在此,我们报告一项筛选的中期结果,该筛选旨在鉴定能产生LPA依赖性细胞形态变化的受体:孤儿受体GPR92具有新型LPA受体的特性。人GPR92及其小鼠同源物的序列分析显示,与LPA4/GPR23约有35%的氨基酸同一性。我们采用了与鉴定和/或表征LPA(1 - 4)相同的基于细胞的方法,特别是在B103细胞或RH7777细胞中的异源表达,并与已知的LPA受体进行比较。将表位标记受体的逆转录病毒介导表达与G蛋白小基因及药理学干预相结合,同时进行钙成像和全细胞膜片钳电生理研究。观察到暴露于LPA而非相关溶血磷脂后,LPA依赖性受体内化现象。此外,LPA诱导G(12/13)和G(q)的浓度依赖性激活,并增加cAMP水平。在异源表达GPR92的细胞膜中检测到特异性的[3H]LPA结合,而对照细胞膜中未检测到。Northern印迹和逆转录酶 - PCR研究表明,GPR92在包括胚胎脑在内的许多组织中广泛低水平表达,在小肠、感觉背根神经节以及胚胎干细胞中表达丰富。这些结果支持GPR92作为第五种LPA受体,即LPA5,鉴于其表达模式,它可能具有独特的生理功能。

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