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磷酸转导蛋白促进视杆光感受器中光驱动的转导蛋白易位。来自磷酸转导蛋白基因敲除小鼠的证据。

Phosducin facilitates light-driven transducin translocation in rod photoreceptors. Evidence from the phosducin knockout mouse.

作者信息

Sokolov Maxim, Strissel Katherine J, Leskov Ilya B, Michaud Norman A, Govardovskii Viktor I, Arshavsky Vadim Y

机构信息

Department of Ophthalmology, Harvard Medical School and the Massachusetts Eye and Ear Infirmary, Boston, Massachusetts 02114, USA.

出版信息

J Biol Chem. 2004 Apr 30;279(18):19149-56. doi: 10.1074/jbc.M311058200. Epub 2004 Feb 18.

Abstract

Phosducin is a photoreceptor-specific protein known to interact with the beta gamma subunits of G proteins. In pursuit of the function of phosducin, we tested the hypothesis that it regulates the light-driven translocation of G protein transducin from the outer segments of rod photoreceptors to other compartments of the rod cell. Transducin translocation has been previously shown to contribute to rod adaptation to bright illumination, yet the molecular mechanisms underlying the translocation phenomenon remain unknown. In this study we provide two major lines of evidence in support of the role of phosducin in transducin translocation. First, we have demonstrated that transducin beta gamma subunits interact with phosducin along their entire intracellular translocation route, as evident from their co-precipitation in serial tangential sections from light-adapted but not dark-adapted retinas. Second, we generated a phosducin knockout mouse and found that the degree of light-driven transducin translocation in the rods of these mice was significantly reduced as compared with that observed in the rods of wild type animals. In knockout animals the translocation of transducin beta gamma subunits was affected to a larger degree than the translocation of the alpha subunit. We also found that the amount of phosducin in rods is sufficient to interact with practically all of the transducin present in these cells and that the subcellular distribution of phosducin is consistent with that of a soluble protein evenly distributed throughout the entire rod cytoplasm. Together, these data indicate that phosducin binding to transducin beta gamma subunits facilitates transducin translocation. We suggest that the mechanism of phosducin action is based on the reduction of transducin affinity to the membranes of rod outer segments, achieved by keeping the transducin beta gamma subunits apart from the alpha subunit. This increased solubility of transducin would make it more susceptible to translocation from the outer segments.

摘要

磷酸转导蛋白是一种光感受器特异性蛋白,已知它能与G蛋白的βγ亚基相互作用。为了探究磷酸转导蛋白的功能,我们测试了这样一个假说:它调节G蛋白转导素从视杆光感受器的外段向视杆细胞其他区室的光驱动转运。先前已表明转导素转运有助于视杆细胞适应明亮光照,但这种转运现象背后的分子机制仍不清楚。在本研究中,我们提供了两条主要证据来支持磷酸转导蛋白在转导素转运中的作用。首先,我们证明了转导素βγ亚基在其整个细胞内转运途径中都与磷酸转导蛋白相互作用,这从光适应而非暗适应视网膜的连续切线切片中的共沉淀现象可以明显看出。其次,我们培育了一种磷酸转导蛋白基因敲除小鼠,发现与野生型动物视杆细胞中观察到的情况相比,这些小鼠视杆细胞中光驱动的转导素转运程度显著降低。在基因敲除动物中,转导素βγ亚基的转运比α亚基的转运受到的影响更大。我们还发现视杆细胞中磷酸转导蛋白的量足以与这些细胞中几乎所有的转导素相互作用,并且磷酸转导蛋白的亚细胞分布与一种均匀分布于整个视杆细胞质中的可溶性蛋白的分布一致。总之,这些数据表明磷酸转导蛋白与转导素βγ亚基的结合促进了转导素的转运。我们认为磷酸转导蛋白的作用机制是基于通过使转导素βγ亚基与α亚基分离来降低转导素对视杆外段膜的亲和力。转导素这种增加的溶解性会使其更容易从外段转运出去。

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