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视紫红质激酶调节蛋白及视紫红质激酶调节蛋白同工型与26S蛋白酶体亚基SUG1的相互作用。

Interaction of phosducin and phosducin isoforms with a 26S proteasomal subunit, SUG1.

作者信息

Zhu X, Craft C M

机构信息

Doheny Eye Institute and Department of Cell & Neurobiology, University of Southern California School of Medicine, Los Angeles, CA 90033, USA.

出版信息

Mol Vis. 1998 Aug 11;4:13.

PMID:9701609
Abstract

PURPOSE

Retinal phosducin (Phd) and phosducin-like protein 1 (PhLP1) selectively bind G-protein beta/gamma subunits (Gbetagamma). Our laboratory has recently identified two phosducin-like orphan proteins (PhLOP1 and PhLOP2) that lack the ability to interact with Gbetagamma. In search of potential functional protein partner(s) for these phosducin orphans, we examined their protein-protein interactions using a yeast two-hybrid screen.

METHODS

A bovine retina yeast expression cDNA library was screened with the GAL4 DNA binding domain (BD) fusion of PhLOP1. Quantitative analysis of the selected positives with PhLOP1 and other Phd isoforms was assessed by growth and beta-galactosidase activity. Further molecular, biochemical, and immunological detection methods utilizing glutathione S-transferase (GST)-Phd isoform fusion proteins and the potential partner were also performed.

RESULTS

A member of the superfamily of putative ATPases was selected in the yeast two hybrid screen. Further characterization identified a direct interaction of this putative ATPase with PhLOP1, as well as Phd and PhLP1, but not with PhLOP2. A database search verified this ATPase as a bovine orthologue of the yeast SUG1 (ySUG1), a putative transcriptional mediator and a subunit of the 26S proteasome complex. Our experiments reveal that the carboxy-terminus of PhLOP1 is essential for the protein-protein interaction with SUG1, but it alone is not sufficient to mediate SUG1 interaction.

CONCLUSIONS

Based on these experimental results, Phd, PhLP1 and PhLOP1 have protein-protein interaction with SUG1. PhLOP1, a truncated amino-terminal splice variant of Phd, is the best candidate for the interaction with SUG1 among the four Phd isoforms studied, which suggests a potential function for PhLOP1.

摘要

目的

视网膜磷光蛋白(Phd)和类磷光蛋白1(PhLP1)可选择性地结合G蛋白β/γ亚基(Gβγ)。我们实验室最近鉴定出两种缺乏与Gβγ相互作用能力的类磷光蛋白孤儿蛋白(PhLOP1和PhLOP2)。为了寻找这些磷光蛋白孤儿的潜在功能性蛋白伴侣,我们使用酵母双杂交筛选法检测了它们的蛋白质-蛋白质相互作用。

方法

用PhLOP1的GAL4 DNA结合结构域(BD)融合蛋白筛选牛视网膜酵母表达cDNA文库。通过生长和β-半乳糖苷酶活性对筛选出的阳性克隆与PhLOP1及其他Phd异构体进行定量分析。还利用谷胱甘肽S-转移酶(GST)-Phd异构体融合蛋白和潜在伴侣进行了进一步的分子、生化和免疫检测。

结果

在酵母双杂交筛选中选择了一个假定的ATP酶超家族成员。进一步的表征确定了该假定的ATP酶与PhLOP1以及Phd和PhLP1之间存在直接相互作用,但与PhLOP2没有相互作用。数据库搜索证实该ATP酶是酵母SUG1(ySUG1)的牛同源物,ySUG1是一种假定的转录调节因子,也是26S蛋白酶体复合物的一个亚基。我们的实验表明,PhLOP1的羧基末端对于与SUG1的蛋白质-蛋白质相互作用至关重要,但仅凭它不足以介导与SUG1的相互作用。

结论

基于这些实验结果,Phd、PhLP1和PhLOP1与SUG1存在蛋白质-蛋白质相互作用。PhLOP1是Phd的一种截短的氨基末端剪接变体,在所研究的四种Phd异构体中是与SUG1相互作用的最佳候选者,这提示了PhLOP1的潜在功能。

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