Embry Alan C, Glick Jennifer L, Linder Maurine E, Casey Patrick J
Department of Biochemistry, Duke University Medical Center, Box 3813, Durham, NC 27710-3813, USA.
Mol Pharmacol. 2004 Nov;66(5):1325-31. doi: 10.1124/mol.104.004093. Epub 2004 Aug 12.
As part of a program to elucidate signaling processes controlled by the heterotrimeric G protein Galphaz, a human fetal brain cDNA library was screened for proteins that specifically interact with the activated form of Galphaz. One of the most-encountered molecules in this screen was Eya2, a member of the Eyes absent family of proteins. Mammalian Eya proteins are predominantly cytosolic proteins that are known to interact with members of the Sine oculis (Six) family of homeodomain transcription factors. This interaction facilitates the translocation of Eya into the nucleus, where the Eya/Six complex regulates transcription during critical stages of embryonic development. In vitro binding studies confirmed that Galphaz interacts with Eya2 in an activation-dependent fashion; furthermore, most other members of the Galphai family including Galphai1, Galphai2, and Galphai3 were found to interact with Eya2. It is interesting that one of the most abundant Galphai proteins, Galphao, did not interact with Eya2. Coexpression of the activated forms of Galphai1, Galphai2, and Galphai3, but not Galphao, with Eya2 recruited Eya2 to the plasma membrane, prevented Eya2 translocation into the nucleus, and abrogated Eya2/Six4-mediated transcription. In addition, Eya2 impinged on G protein-mediated signaling, as evidenced by its ability to relieve Galphai2-mediated inhibition of adenylyl cyclase. These results demonstrate that the interaction between the Galphai proteins and Eya2 may impact on seemingly disparate regulatory events involving both classes of proteins.
作为阐明由异源三聚体G蛋白Gαz控制的信号传导过程的项目的一部分,对人胎儿脑cDNA文库进行筛选,以寻找与Gαz激活形式特异性相互作用的蛋白质。在此筛选中最常遇到的分子之一是Eya2,它是无眼蛋白家族的成员。哺乳动物Eya蛋白主要是胞质蛋白,已知其与同源域转录因子的正弦眼(Six)家族成员相互作用。这种相互作用促进Eya转运到细胞核中,在那里Eya/Six复合物在胚胎发育的关键阶段调节转录。体外结合研究证实,Gαz以激活依赖的方式与Eya2相互作用;此外,发现Gαi家族的大多数其他成员,包括Gαi1、Gαi2和Gαi3,都与Eya2相互作用。有趣的是,最丰富的Gαi蛋白之一Gαo不与Eya2相互作用。Gαi1、Gαi2和Gαi3的激活形式(而非Gαo)与Eya2共表达,可将Eya2募集到质膜,阻止Eya2转运到细胞核,并消除Eya2/Six4介导的转录。此外,Eya2影响G蛋白介导的信号传导,这可通过其缓解Gαi2介导的腺苷酸环化酶抑制作用的能力得到证明。这些结果表明,Gαi蛋白与Eya2之间的相互作用可能影响涉及这两类蛋白看似不同的调节事件。