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利用Gsα嵌合体对G蛋白偏好性进行分子剖析揭示了G蛋白偶联受体的新型配体信号传导。

Molecular dissection of G protein preference using Gsalpha chimeras reveals novel ligand signaling of GPCRs.

作者信息

Hsu Shih-Han, Luo Ching-Wei

机构信息

Dept. of Life Sciences and Inst. of Genome Sciences, National Yang-Ming University, 155 Li Nong St., Section 2, Shihpai, Taipei 112, Taiwan.

出版信息

Am J Physiol Endocrinol Metab. 2007 Oct;293(4):E1021-9. doi: 10.1152/ajpendo.00003.2007. Epub 2007 Jul 24.

Abstract

Although only 16 genes have been identified in mammals, several Galpha subunits can be simultaneously activated by G protein-coupled receptors (GPCRs) to modulate their complicated functions. Current GPCR assays are limited in the evaluation of selective Galpha activation, thus not allowing a comprehensive pathway screening. Because adenylyl cyclases are directly activated by G(s)alpha and the carboxyl termini of the various Galpha proteins determine their receptor coupling specificity, we proposed a set of chimeric G(s)alpha where the COOH-terminal five amino acids are replaced by those of other Galpha proteins and used these to dissect the potential Galpha linked to a given GPCR. Unlike G(q)alpha, G(12)alpha, and G(i)alpha outputs, compounding the signals from several Galpha members, the chimeric G(s)alpha proteins provide a superior molecular approach that reflects the previously uncharacterized pathways of GPCRs under the same cAMP platform. This is, to our knowledge, the first time allowing verification of the whole spectrum of Galpha coupling preference of adenosine A1 receptor, reported to couple to multiple G proteins and modulate many physiological processes. Furthermore, we were able to distinguish the uncharacterized pathways between the two neuromedin U receptors (NMURs), which distribute differently but are stimulated by a common agonist. In contrast to the G(q) signals mainly conducted by NMUR1, NMUR2 routed preferentially to the G(i) pathways. Dissecting the potential Galpha coupling to these GPCRs will promote an understanding of their physiological roles and benefit the pharmaceutical development of agonists/antagonists by exploiting the selective affinity toward a certain Galpha subclass.

摘要

尽管在哺乳动物中仅鉴定出16种基因,但几种Gα亚基可被G蛋白偶联受体(GPCR)同时激活,以调节其复杂的功能。目前的GPCR检测方法在评估选择性Gα激活方面存在局限性,因此无法进行全面的信号通路筛选。由于腺苷酸环化酶直接由G(s)α激活,且各种Gα蛋白的羧基末端决定了它们的受体偶联特异性,我们提出了一组嵌合G(s)α,其中COOH末端的五个氨基酸被其他Gα蛋白的相应氨基酸取代,并利用这些嵌合体来剖析与特定GPCR相关的潜在Gα。与G(q)α、G(12)α和G(i)α输出不同,后者会将来自多个Gα成员的信号叠加在一起,嵌合G(s)α蛋白提供了一种优越的分子方法,可在相同的cAMP平台下反映GPCR以前未被表征的信号通路。据我们所知,这是首次能够验证腺苷A1受体的整个Gα偶联偏好谱,据报道该受体可与多种G蛋白偶联并调节许多生理过程。此外,我们能够区分两种神经降压素U受体(NMUR)之间未被表征的信号通路,这两种受体分布不同,但由共同的激动剂刺激。与主要由NMUR1传导的G(q)信号不同,NMUR2优先导向G(i)信号通路。剖析与这些GPCR潜在的Gα偶联将有助于理解它们的生理作用,并通过利用对特定Gα亚类的选择性亲和力,为激动剂/拮抗剂的药物开发带来益处。

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