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与视紫红质的特异性相互作用取决于G蛋白中的γ亚基类型。

Specific interaction with rhodopsin is dependent on the gamma subunit type in a G protein.

作者信息

Kisselev O, Gautam N

机构信息

Department of Anesthesiology, Washington University School of Medicine, St. Louis, Missouri 63110.

出版信息

J Biol Chem. 1993 Nov 25;268(33):24519-22.

PMID:8227005
Abstract

Interaction with a receptor is the first step in the process of signal transduction by heterotrimeric (alpha beta gamma) G proteins. We have examined the role of the G protein gamma subunit in interaction between a receptor (rhodopsin) and a G protein, transducin (Gt). We have obtained recombinant beta gamma complexes containing the same beta subunit but three different gamma subunit types by expressing them in the baculovirus/insect cell system. We show that the different recombinant beta gamma complexes interact equally well with the alpha subunit of transducin (alpha t) but only the gamma subunit specific to rod photoreceptors (gamma 1) is able to support interaction of alpha t with rhodopsin. This indicates a direct role for the G protein gamma subunits, which are a family of proteins with diverse structures, in conferring specificity to receptor-G protein interaction.

摘要

与受体相互作用是异源三聚体(αβγ)G蛋白信号转导过程的第一步。我们研究了G蛋白γ亚基在受体(视紫红质)与G蛋白转导素(Gt)相互作用中的作用。我们通过在杆状病毒/昆虫细胞系统中表达,获得了含有相同β亚基但三种不同γ亚基类型的重组βγ复合物。我们发现,不同的重组βγ复合物与转导素的α亚基(αt)相互作用的效果相同,但只有视杆光感受器特有的γ亚基(γ1)能够支持αt与视紫红质的相互作用。这表明G蛋白γ亚基(它们是一类结构多样的蛋白质)在赋予受体 - G蛋白相互作用特异性方面具有直接作用。

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