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视杆和视锥视觉色素之间视蛋白的嵌合性质。

Chimeric nature of pinopsin between rod and cone visual pigments.

作者信息

Nakamura A, Kojima D, Imai H, Terakita A, Okano T, Shichida Y, Fukada Y

机构信息

Department of Biophysics and Biochemistry, Graduate School of Science, The University of Tokyo, Hongo, Bunkyo-Ku, Tokyo 113-0033, Japan.

出版信息

Biochemistry. 1999 Nov 9;38(45):14738-45. doi: 10.1021/bi9913496.

Abstract

Chicken pineal pinopsin is the first example of extra-retinal opsins, but little is known about its molecular properties as compared with retinal rod and cone opsins. For characterization of extra-retinal photon signaling, we have developed an overexpression system providing a sufficient amount of purified pinopsin. The recombinant pinopsin, together with similarly prepared chicken rhodopsin and green-sensitive cone pigment, was subjected to photochemical and biochemical analyses by using low-temperature spectroscopy and the transducin activation assay. At liquid nitrogen temperature (-196 degrees C), we detected two kinds of photoproducts, bathopinopsin and isopinopsin, having their absorption maxima (lambda(max)) at 527 and approximately 440 nm, respectively, and we observed complete photoreversibility among pinopsin, bathopinopsin, and isopinopsin. A close parallel of the photoreversibility to the rhodopsin system strongly suggests that light absorbed by pinopsin triggers the initial event of cis-trans isomerization of the 11-cis-retinylidene chromophore. Upon warming, bathopinopsin decayed through a series of photobleaching intermediates: lumipinopsin (lambda(max) 461 nm), metapinopsin I (460 nm), metapinopsin II (385 nm), and metapinopsin III (460 nm). Biochemical and kinetic analyses showed that metapinopsin II is a physiologically important photoproduct activating transducin. Detailed kinetic analyses revealed that the formation of metapinopsin II is as fast as that of a chicken cone pigment, green, but that the decay process of metapinopsin II is as slow as that of the rod pigment, rhodopsin. These results indicate that pinopsin is a new type of pigment with a chimeric nature between rod and cone visual pigments in terms of the thermal behaviors of the meta II intermediate. Such a long-lived active state of pinopsin may play a role in the pineal-specific phototransduction process.

摘要

鸡松果体视蛋白是视网膜外视蛋白的首个实例,但与视网膜视杆和视锥视蛋白相比,对其分子特性了解甚少。为了表征视网膜外光子信号传导,我们开发了一种过表达系统,可提供足量纯化的视蛋白。重组视蛋白与同样制备的鸡视紫红质和绿色敏感视锥色素一起,通过低温光谱和转导素激活试验进行光化学和生化分析。在液氮温度(-196℃)下,我们检测到两种光产物,即视紫红质浴视蛋白和异视蛋白,其吸收最大值(λmax)分别在527和约440nm处,并且我们观察到视蛋白、视紫红质浴视蛋白和异视蛋白之间具有完全的光可逆性。这种光可逆性与视紫红质系统非常相似,强烈表明视蛋白吸收的光引发了11-顺式视黄醛发色团顺反异构化的初始事件。升温时,视紫红质浴视蛋白通过一系列光漂白中间体衰变:发光视蛋白(λmax 461nm)、间视蛋白I(460nm)、间视蛋白II(385nm)和间视蛋白III(460nm)。生化和动力学分析表明,间视蛋白II是激活转导素的生理重要光产物。详细的动力学分析表明,间视蛋白II的形成速度与鸡视锥色素绿色的形成速度一样快,但间视蛋白II的衰变过程与视杆色素视紫红质的衰变过程一样慢。这些结果表明,就间视蛋白II中间体的热行为而言,视蛋白是一种在视杆和视锥视觉色素之间具有嵌合性质的新型色素。视蛋白这种长寿命的活性状态可能在松果体特异性光转导过程中起作用。

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