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牛视杆光感受器细胞中磷光蛋白对视网膜cGMP级联反应的调节。磷光蛋白与转导蛋白的相互作用。

Regulation of retinal cGMP cascade by phosducin in bovine rod photoreceptor cells. Interaction of phosducin and transducin.

作者信息

Lee R H, Ting T D, Lieberman B S, Tobias D E, Lolley R N, Ho Y K

机构信息

Department of Anatomy and Cell Biology, UCLA School of Medicine.

出版信息

J Biol Chem. 1992 Dec 15;267(35):25104-12.

PMID:1334080
Abstract

Photoexcitation of retinal rod photoreceptor cells involves the activation of cGMP enzyme cascade in which sequential activation of rhodopsin, transducin, and the cGMP phosphodiesterase in the rod outer segment constitutes the signal amplification mechanism. Phosducin, a 33-kDa phosphoprotein, has been shown to form a tight complex with the T beta gamma subunit of transducin. In this study, we examined the interaction of phosducin-T beta gamma and the possible regulatory role of phosducin on the cGMP cascade. Addition of phosducin to photolyzed rod outer segment (ROS) membrane reduced the GTP hydrolysis activity of transducin as well as the subsequent activation of the cGMP phosphodiesterase. Phosducin also inhibited the pertussis toxin-catalyzed ADP-ribosylation of transducin, indicating that the interaction between the T alpha and T beta gamma subunits of transducin was interrupted upon binding of phosducin. The inhibitory effects of phosducin were reversed by the addition of exogenous T beta gamma. These results suggest that phosducin is capable of regulating the amount of T beta gamma available to interact with T alpha to form the active transducin complex and thereby functions as a negative regulator of the cGMP cascade. The phosducin-induced alteration of the subunit organization of transducin was examined by chemical cross-linking method using para-phenyl dimaleimide as cross-linker. It was found that the cross-linking among T alpha and T beta gamma was blocked in the presence of phosducin. This result implies that T beta gamma may undergo a conformational change upon phosducin binding which leads to the release of T alpha. Since phosducin is a soluble protein, the interaction with transducin only occurs when transducin is dissociated from ROS disc membrane. Indeed, phosducin failed to dissociate membrane-bound transducin and did not inhibit the initial cycle of transducin activation as measured by the presteady state GTP hydrolysis. However, phosducin interacts effectively with transducin released into solution after the initial activation and blocks the re-binding of T alpha. T beta gamma to ROS membrane by forming a tight complex with T beta gamma. This interaction may play an important role in regulating the turnover of the cGMP cascade in photoreceptor cells.

摘要

视网膜视杆光感受器细胞的光激发涉及cGMP酶级联反应的激活,其中视紫红质、转导蛋白和视杆外段中的cGMP磷酸二酯酶的顺序激活构成了信号放大机制。磷光蛋白是一种33 kDa的磷蛋白,已被证明与转导蛋白的Tβγ亚基形成紧密复合物。在本研究中,我们研究了磷光蛋白 - Tβγ的相互作用以及磷光蛋白对cGMP级联反应可能的调节作用。将磷光蛋白添加到光解的视杆外段(ROS)膜中,可降低转导蛋白的GTP水解活性以及随后cGMP磷酸二酯酶的激活。磷光蛋白还抑制百日咳毒素催化的转导蛋白的ADP - 核糖基化,表明转导蛋白的Tα和Tβγ亚基之间的相互作用在磷光蛋白结合后被中断。添加外源性Tβγ可逆转磷光蛋白的抑制作用。这些结果表明,磷光蛋白能够调节可与Tα相互作用形成活性转导蛋白复合物的Tβγ的量,从而作为cGMP级联反应的负调节剂发挥作用。使用对苯二马来酰亚胺作为交联剂,通过化学交联方法研究了磷光蛋白诱导的转导蛋白亚基组织的改变。发现在存在磷光蛋白的情况下,Tα和Tβγ之间的交联被阻断。该结果表明,磷光蛋白结合后Tβγ可能发生构象变化,导致Tα释放。由于磷光蛋白是一种可溶性蛋白质,仅当转导蛋白从ROS盘膜解离时才会与转导蛋白发生相互作用。实际上,磷光蛋白未能使膜结合的转导蛋白解离,并且如通过预稳态GTP水解所测量的那样,不抑制转导蛋白激活的初始循环。然而,磷光蛋白在初始激活后与释放到溶液中的转导蛋白有效相互作用,并通过与Tβγ形成紧密复合物来阻断Tα.Tβγ与ROS膜的重新结合。这种相互作用可能在调节光感受器细胞中cGMP级联反应的周转中起重要作用。

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