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视网膜视杆细胞中猝灭现象期间抑制蛋白的作用位点。

Sites of arrestin action during the quench phenomenon in retinal rods.

作者信息

Zuckerman R, Cheasty J E

机构信息

Department of Ophthalmology, Scheie Eye Institute, University of Pennsylvania School of Medicine, Philadelphia 19104.

出版信息

FEBS Lett. 1988 Oct 10;238(2):379-84. doi: 10.1016/0014-5793(88)80516-7.

Abstract

The target proteins for arrestin (48 kDa protein) action during the quench of cGMP phosphodiesterase (PDE) activation in retinal rod disk membranes were identified by the use of a cross-linking reagent. A heterobifunctional, cleavable, photo-activatable cross-linker (sulfo-SADP) was coupled to purified arrestin. Under precise weak visible light bleach and nucleotide conditions of quench, the cross-linker was UV flash-activated at a time when quench was well established. The target proteins covalently linked to arrestin by cross-linker activation were identified by immunoblotting. In the presence of ATP arrestin cross-linked to both PDE and rhodopsin during the quench phenomenon. Removal of ATP from the reaction mixture essentially abolished the cross-link with PDE, just as ATP omission abolishes quench, but significantly increased the cross-link to rhodopsin. The absence of a cross-link to the plentiful beta-subunit of transductin, as well as the results of competition studies employing arrestin without attached cross-linker, suggest that the observed cross-links are specific and reflect true binding interactions of arrestin during quench. The data are consistent with a model of quench in which photolyzed rhodopsin (R*) catalyzes the formation of an activated form of arrestin, which dissociates from R* in the presence of ATP, and binds to PDEs, thereby deactivating them.

摘要

利用一种交联试剂,确定了视网膜视杆盘膜中cGMP磷酸二酯酶(PDE)激活淬灭过程中抑制蛋白(48 kDa蛋白)作用的靶蛋白。一种异双功能、可裂解、光活化的交联剂(磺基-SADP)与纯化的抑制蛋白偶联。在精确的弱可见光漂白和淬灭的核苷酸条件下,当淬灭充分建立时,交联剂通过紫外线闪光激活。通过免疫印迹法鉴定通过交联剂激活与抑制蛋白共价连接的靶蛋白。在淬灭现象期间,在ATP存在的情况下,抑制蛋白与PDE和视紫红质交联。从反应混合物中去除ATP基本上消除了与PDE的交联,正如省略ATP消除淬灭一样,但显著增加了与视紫红质的交联。未与大量转导素β亚基交联,以及使用未连接交联剂的抑制蛋白进行竞争研究的结果表明,观察到的交联是特异性的,反映了淬灭过程中抑制蛋白的真实结合相互作用。这些数据与一种淬灭模型一致,在该模型中,光解视紫红质(R*)催化形成一种活化形式的抑制蛋白,该抑制蛋白在ATP存在下与R*解离,并与PDE结合,从而使其失活。

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