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与秀丽隐杆线虫Gα亚基相互作用的蛋白质。

Proteins interacting with Caenorhabditis elegans Galpha subunits.

作者信息

Cuppen Edwin, van der Linden Alexander M, Jansen Gert, Plasterk Ronald H A

机构信息

Hubrecht Laboratory, Uppsalalaan 8, Utrecht 3584 CT, The Netherlands.

出版信息

Comp Funct Genomics. 2003;4(5):479-91. doi: 10.1002/cfg.318.

Abstract

To identify novel components in heterotrimeric G-protein signalling, we performed an extensive screen for proteins interacting with Caenorhabditis elegans Galpha subunits. The genome of C. elegans contains homologues of each of the four mammalian classes of Galpha subunits (Gs, Gi/o, Gq and G12), and 17 other Galpha subunits. We tested 19 of the GGalpha subunits and four constitutively activated Galpha subunits in a largescale yeast two-hybrid experiment. This resulted in the identification of 24 clones, representing 11 different proteins that interact with four different Galpha subunits. This set includes C. elegans orthologues of known interactors of Galpha subunits, such as AGS3 (LGN/PINS), CalNuc and Rap1Gap, but also novel proteins, including two members of the nuclear receptor super family and a homologue of human haspin (germ cell-specific kinase). All interactions were found to be unique for a specific Galpha subunit but variable for the activation status of the Galpha subunit. We used expression pattern and RNA interference analysis of the G-protein interactors in an attempt to substantiate the biological relevance of the observed interactions. Furthermore, by means of a membrane recruitment assay, we found evidence that GPA-7 and the nuclear receptor NHR-22 can interact in the animal.

摘要

为了鉴定异源三聚体G蛋白信号传导中的新成分,我们对与秀丽隐杆线虫Gα亚基相互作用的蛋白质进行了广泛筛选。秀丽隐杆线虫的基因组包含四种哺乳动物Gα亚基(Gs、Gi/o、Gq和G12)以及其他17种Gα亚基的同源物。我们在大规模酵母双杂交实验中测试了19种Gα亚基和4种组成型激活的Gα亚基。这导致鉴定出24个克隆,代表与四种不同Gα亚基相互作用的11种不同蛋白质。这一组包括Gα亚基已知相互作用蛋白的秀丽隐杆线虫直系同源物,如AGS3(LGN/PINS)、钙核蛋白和Rap1Gap,也包括新蛋白质,包括核受体超家族的两个成员和人类haspin(生殖细胞特异性激酶)的同源物。发现所有相互作用对于特定的Gα亚基是独特的,但对于Gα亚基的激活状态是可变的。我们使用G蛋白相互作用蛋白的表达模式和RNA干扰分析来证实所观察到的相互作用的生物学相关性。此外,通过膜募集试验,我们发现有证据表明GPA-7和核受体NHR-22在动物体内可以相互作用。

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