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11-顺式视黄醛的环庚三烯亚基类似物。光感受器膜中色素的形成。

Cycloheptatrienylidene analog of 11-cis retinal. Formation of pigment in photoreceptor membranes.

作者信息

Crouch R, Nodes B R, Perlman J I, Pepperberg D R, Akita H, Nakanishi K

出版信息

Invest Ophthalmol Vis Sci. 1984 Apr;25(4):419-28.

PMID:6231263
Abstract

In biochemical and electrophysiologic studies employing the bullfrog (Rana catesbeiana) and the rat, the authors examined the interaction of opsin and an 11-cis-locked analog of retinal. In previously bleached preparations of bullfrog receptor outer segments (ROS) and isolated retinas, incubation with the aldehyde form (I) of the analog leads to the appearance of a pigment that is degraded slowly by hydroxylamine but is relatively resistant to photolysis. In the ROS preparation, the analog pigment (lambda max of difference spectrum congruent to 497 nm) also forms on incubation with NADP+ and the alcohol form (II) of the analog. In vitamin A deprived rats possessing only approximately 45% of the normal complement of rhodopsin, intraperitoneal injection of II leads within 1 day to the appearance of the analog pigment in the photoreceptors, at levels representing a major fraction of the opsin initially available for pigment formation. Formation of the analog pigment appears to have no significant effect on the sensitivity of electroretinographic b-wave responses recorded from the rat eye; furthermore, administration of II appears to suppress the sensitizing activity of all-trans retinol injected 1 day later. The data are discussed in relation to other studies examining chromophore-opsin interactions and electrophysiologic changes associated with the formation of rhodopsin in situ.

摘要

在使用牛蛙(牛蛙)和大鼠进行的生化和电生理研究中,作者研究了视蛋白与一种11-顺式锁定的视黄醛类似物之间的相互作用。在牛蛙受体外段(ROS)和分离视网膜的先前漂白制剂中,与该类似物的醛形式(I)孵育会导致出现一种色素,该色素可被羟胺缓慢降解,但相对抗光解。在ROS制剂中,与NADP +和该类似物的醇形式(II)孵育时也会形成类似物色素(差光谱的λmax与497nm一致)。在仅具有约45%正常视紫红质补充量的维生素A缺乏大鼠中,腹腔注射II在1天内导致光感受器中出现类似物色素,其水平占最初可用于色素形成的视蛋白的主要部分。类似物色素的形成似乎对从大鼠眼睛记录的视网膜电图b波反应的敏感性没有显著影响;此外,给予II似乎抑制了1天后注射的全反式视黄醇的致敏活性。结合其他研究讨论了这些数据,这些研究检查了发色团-视蛋白相互作用以及与视紫红质原位形成相关的电生理变化。

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