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通过对完整视网膜进行³²P标记研究牛视杆细胞外段中的磷酸化反应。

Phosphorylation reactions in bovine rod outer segments studied by 32P-labelling of intact retina.

作者信息

Kamps K M, Dratz E A, Daemen F J, de Grip W J

出版信息

Biochim Biophys Acta. 1986 Apr 11;881(2):185-95. doi: 10.1016/0304-4165(86)90004-8.

Abstract

The protein phosphorylation pattern in the intact bovine retina has been investigated by labelling with 32P-phosphate under incubation conditions that preserve the electrical photoresponse of the photoreceptor cells. The phosphorylation of rod outer segment proteins was analysed after isolation of outer segments from the labelled retina. The global influence of light, Ca2+ and the phosphodiesterase inhibitor, isobutylmethylxanthine, on protein phosphorylation in rod outer segments was analysed. A 12 kDa protein is the most prominent phosphorylated species in the intact bovine retina. Its phosphorylation is increased by light and/or Ca2+. Evidence is presented that this strongly phosphorylated protein is not located in the outer segment, and we suggest that it may be a synaptic protein. Retinal rod outer segment membrane proteins with apparent molecular weights of 245, 226, 125, 110, 50, 46, 38 and 20 all show light-stimulated phosphorylation. Lowering the extracellular Ca2+ levels results in a decrease of the phosphorylation level of some of these proteins, viz. at 125, 50, 38 and probably at 20 kDa. Such proteins, whose phosphorylation level is influenced both by light and by elevated Ca2+, are candidates for mediators of phototransduction. The phosphorylated species at 245, 226, 110, 50 and 20 kDa are enriched in rod outer segment plasma membrane preparations. These protein species could participate in the light-regulated modulation of the Na+-conductance of the plasma membrane.

摘要

在能保持光感受器细胞光电反应的孵育条件下,通过用³²P - 磷酸盐标记,对完整牛视网膜中的蛋白质磷酸化模式进行了研究。从标记的视网膜中分离出视杆外段后,分析了视杆外段蛋白质的磷酸化情况。分析了光、Ca²⁺和磷酸二酯酶抑制剂异丁基甲基黄嘌呤对视杆外段蛋白质磷酸化的总体影响。一种12 kDa的蛋白质是完整牛视网膜中最显著的磷酸化物种。光照和/或Ca²⁺会增加其磷酸化水平。有证据表明,这种高度磷酸化的蛋白质并不位于外段,我们认为它可能是一种突触蛋白。表观分子量为245、226、125、110、50、46、38和20 kDa的视网膜视杆外段膜蛋白均显示出光刺激的磷酸化。降低细胞外Ca²⁺水平会导致其中一些蛋白质(即125、50、38 kDa以及可能还有20 kDa的蛋白质)的磷酸化水平降低。这种磷酸化水平受光和升高的Ca²⁺两者影响的蛋白质,是光转导介质的候选者。245、226、110、50和20 kDa的磷酸化物种在视杆外段质膜制剂中富集。这些蛋白质物种可能参与质膜Na⁺电导的光调节调制。

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