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AGS4的鉴定与特性分析:一种含有三个G蛋白调节基序的蛋白质,可调节Gialpha的激活状态。

Identification and characterization of AGS4: a protein containing three G-protein regulatory motifs that regulate the activation state of Gialpha.

作者信息

Cao Xiaoqing, Cismowski Mary J, Sato Motohiko, Blumer Joe B, Lanier Stephen M

机构信息

The Guthrie Research Institute, Sayre, Pennsylvania 18840, USA.

出版信息

J Biol Chem. 2004 Jun 25;279(26):27567-74. doi: 10.1074/jbc.M312786200. Epub 2004 Apr 19.

Abstract

Activators of G-protein signaling 1-3 (AGS1-3) were identified in a functional screen of mammalian cDNAs that activated G-protein signaling in the absence of a receptor. We report the isolation and characterization of an additional AGS protein (AGS4) from a human prostate leiomyosarcoma cDNA library. AGS4 is identical to G18.1b, which is encoded by a gene within the major histocompatibility class III region of chromosome 6. The activity of AGS4 in the yeast-based functional screen was selective for G(i2)/G(i3) and independent of guanine-nucleotide exchange by G(i)alpha. RNA blots indicated enrichment of AGS4/G18.1b mRNA in heart, placenta, lung, and liver. Immunocytochemistry with AGS4/G18.1b-specific antisera indicated a predominant nonhomogeneous, extranuclear distribution within the cell following expression in COS7 or Chinese hamster ovary cells. AGS4/G18.1b contains three G-protein regulatory motifs downstream of an amino terminus domain with multiple prolines. Glutathione S-transferase (GST)-AGS4/G18.1b fusion proteins interacted with purified G(i)alpha, and peptides derived from each of the G-protein regulatory motifs inhibited guanosine 5'-3-O-(thio)triphosphate (GTPgammaS) binding to purified G(i)alpha(1). AGS4/G18.1b was also complexed with G(i)alpha(3) in COS7 cell lysates following cell transfection. However, AGS4/G18.1b did not alter the generation of inositol phosphates in COS7 cells cotransfected with the Gbetagamma-regulated effector phospholipase C-beta2. These data suggest either that an additional signal is required to position AGS4/G18.1b in the proper cellular location where it can access heterotrimer and promote subunit dissociation or that AGS4 serves as an alternative binding partner for G(i)alpha independent of Gbetagamma participating in G-protein signaling events that are independent of classical G-protein-coupled receptors at the cell surface.

摘要

G蛋白信号转导激活因子1 - 3(AGS1 - 3)是在对哺乳动物cDNA进行功能筛选时发现的,这些cDNA在没有受体的情况下能激活G蛋白信号转导。我们报道了从人前列腺平滑肌肉瘤cDNA文库中分离并鉴定出另一种AGS蛋白(AGS4)。AGS4与G18.1b相同,G18.1b由位于6号染色体主要组织相容性复合体III区域内的一个基因编码。在基于酵母的功能筛选中,AGS4的活性对G(i2)/G(i3)具有选择性,且不依赖于G(i)α的鸟嘌呤核苷酸交换。RNA印迹显示AGS4/G18.1b mRNA在心脏、胎盘、肺和肝脏中富集。用AGS4/G18.1b特异性抗血清进行免疫细胞化学分析表明,在COS7或中国仓鼠卵巢细胞中表达后,其在细胞内呈主要的非均匀核外分布。AGS4/G18.1b在含有多个脯氨酸的氨基末端结构域下游包含三个G蛋白调节基序。谷胱甘肽S - 转移酶(GST)- AGS4/G18.1b融合蛋白与纯化的G(i)α相互作用,并且源自每个G蛋白调节基序的肽抑制鸟苷5'-3 - O -(硫代)三磷酸(GTPγS)与纯化的G(i)α(1)结合。细胞转染后,AGS4/G18.1b在COS7细胞裂解物中也与G(i)α(3)形成复合物。然而,在与Gβγ调节的效应器磷脂酶C - β2共转染的COS7细胞中,AGS4/G18.1b并未改变肌醇磷酸的生成。这些数据表明,要么需要额外的信号将AGS4/G18.1b定位到合适的细胞位置,使其能够接触异源三聚体并促进亚基解离,要么AGS4作为G(i)α的替代结合伴侣,独立于Gβγ参与细胞表面经典G蛋白偶联受体无关的G蛋白信号转导事件。

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