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鸡绿色视蛋白与视紫红质之间分子特性的差异与视锥和视杆光感受器细胞之间的功能差异相关。

Difference in molecular properties between chicken green and rhodopsin as related to the functional difference between cone and rod photoreceptor cells.

作者信息

Imai H, Imamoto Y, Yoshizawa T, Shichida Y

机构信息

Department of Biophysics, Faculty of Science, Kyoto University, Japan.

出版信息

Biochemistry. 1995 Aug 22;34(33):10525-31. doi: 10.1021/bi00033a026.

Abstract

Using low-temperature spectroscopy, we have investigated the photobleaching process of chicken green, a green-sensitive cone visual pigment present in chicken retina, and compared it to that of rhodopsin, a rod visual pigment. Like rhodopsin, chicken green converts to all-trans-retinal and opsin through batho, lumi, and meta I, II, and III intermediates. However, all of the intermediates of chicken green except lumi, are less stable than the corresponding intermediates of rhodopsin. While early intermediates, batho and lumi are similar in absorption maxima between chicken green and rhodopsin, the meta intermediates of chicken green are about 20 nm blue shifted from those of rhodopsin. Low-temperature time-resolved spectroscopy was applied to estimate the thermodynamic properties of meta intermediates, and it indicated that the less stable properties of meta II and III intermediates of chicken green originate from the smaller activation enthalpies. The decay of the meta II intermediate of chicken green is greatly suppressed when a chicken green sample is irradiated at alkaline conditions while the net charge becomes similar to that of rhodopsin at neutral conditions. These results strongly suggest that the functional properties of chicken green that are different from those of rhodopsin are regulated by the dissociative amino acid residue(s).

摘要

我们利用低温光谱研究了鸡绿色素(一种存在于鸡视网膜中的对绿色敏感的视锥视觉色素)的光漂白过程,并将其与视杆视觉色素视紫红质的光漂白过程进行了比较。与视紫红质一样,鸡绿色素通过嗜热、发光以及间态I、II和III中间体转化为全反式视黄醛和视蛋白。然而,除发光中间体外,鸡绿色素的所有中间体都比视紫红质的相应中间体更不稳定。虽然早期中间体嗜热和发光在鸡绿色素和视紫红质之间的吸收最大值相似,但鸡绿色素的间态中间体比视紫红质的间态中间体蓝移约20纳米。应用低温时间分辨光谱来估计间态中间体的热力学性质,结果表明鸡绿色素间态II和III中间体较不稳定的性质源于较小的活化焓。当在碱性条件下照射鸡绿色素样品时,鸡绿色素间态II中间体的衰变受到极大抑制,而在中性条件下净电荷变得与视紫红质相似。这些结果有力地表明,鸡绿色素与视紫红质不同的功能特性是由解离的氨基酸残基调节的。

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