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视网膜10位上额外的甲基会显著减缓视紫红质光级联反应的动力学。

An additional methyl group at the 10-position of retinal dramatically slows down the kinetics of the rhodopsin photocascade.

作者信息

DeLange F, Bovee-Geurts P H, VanOostrum J, Portier M D, Verdegem P J, Lugtenburg J, DeGrip W J

机构信息

Department of Biochemistry FMW-160, University of Nijmegen, The Netherlands.

出版信息

Biochemistry. 1998 Feb 3;37(5):1411-20. doi: 10.1021/bi972397y.

Abstract

The present study focuses on ligand-protein interactions in a rhodopsin analogue generated from bovine opsin and the 10-methyl homologue of 11-cis-retinal. The analogue pigment displays a reduced alpha-band at 506 +/- 2 and a stronger beta-band at 325 nm. Remarkably, the rotational strength of these bands observed in visible circular dichroism spectra was found to be similar for both native and 10-methyl rhodopsin. The quantum yield of the analogue pigment was determined to be 0.55. All photointermediates were analyzed by Fourier transform infrared difference spectroscopy. At the batho stage, strong hydrogen-out-of-plane vibrations were observed, indicating that the 10-methyl chromophore also adopts a distorted all-trans conformation at this stage. In contrast to native rhodopsin, the batho intermediate of the 10-methyl pigment is stable up to 180 K and only slowly decays to the next intermediate between 180 and 210 K. As in native rhodopsin, the 10-methyl metarhodopsin I intermediate is generated at about 220 K, but its transition to the metarhodopsin II state is again shifted to a much higher temperature (> 293 K) than for the native pigment (> 260 K). Infrared analysis, nevertheless, shows that the conformational changes in the photointermediates of the 10-methyl pigment are basically identical with those observed in the native pigment. This is supported by a signal function assay, showing that the analogue pigment is able to activate transducin. The dual effect of the 10-methyl group on the photocascade is attributed to steric interactions which, initially, hamper the relaxation of strain in the polyene chain of the chromophore and, eventually, interfere with the conformational rearrangements of the protein moiety required to adopt the active conformation of the receptor. Our data provide direct support for the concept that the relaxation of strain in the retinal polyene chain acts as the major driving force of the photocascade dark reaction.

摘要

本研究聚焦于由牛视蛋白和11 -顺式视黄醛的10 -甲基同系物生成的视紫红质类似物中的配体 - 蛋白质相互作用。该类似物色素在506±2处显示出减弱的α带,在325 nm处显示出更强的β带。值得注意的是,在可见圆二色光谱中观察到的这些谱带的旋光强度对于天然视紫红质和10 -甲基视紫红质来说是相似的。该类似物色素的量子产率测定为0.55。所有光中间体均通过傅里叶变换红外差示光谱进行分析。在嗜热阶段,观察到强烈的氢面外振动,表明10 -甲基发色团在此阶段也采用扭曲的全反式构象。与天然视紫红质不同,10 -甲基色素的嗜热中间体在高达180 K时是稳定的,并且仅在180至210 K之间缓慢衰减至下一个中间体。与天然视紫红质一样,10 -甲基视紫红质I中间体在约220 K时生成,但其向视紫红质II状态的转变再次转移到比天然色素(> 260 K)更高的温度(> 293 K)。然而,红外分析表明,10 -甲基色素光中间体的构象变化与天然色素中观察到的基本相同。信号功能测定支持了这一点,表明该类似物色素能够激活转导蛋白。10 -甲基基团对光级联反应的双重作用归因于空间相互作用,这种相互作用最初阻碍了发色团多烯链中应变的松弛,最终干扰了蛋白质部分采用受体活性构象所需的构象重排。我们的数据为视网膜多烯链中应变的松弛作为光级联暗反应的主要驱动力这一概念提供了直接支持。

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