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人视紫红质的光解中间体

Photolysis intermediates of human rhodopsin.

作者信息

Lewis J W, van Kuijk F J, Thorgeirsson T E, Kliger D S

机构信息

Department of Chemistry and Biochemistry, University of California, Santa Cruz 95064.

出版信息

Biochemistry. 1991 Dec 3;30(48):11372-6. doi: 10.1021/bi00112a003.

Abstract

Photochemical studies were conducted on human rhodopsin at 20 degrees C to characterize the intermediates which precede the formation of metarhodopsin II, the trigger for the enzyme cascade mechanism of visual transduction. Human rhodopsin was prepared from eyes which had previously been used for corneal donations. Time resolved absorption spectra collected from 10(-8) to 10(-6) s after photolysis of human rhodopsin in detergent suspensions displayed biexponential decay kinetics. The apparent lifetimes obtained from the data are 65 +/- 20 and 292 +/- 25 ns, almost a factor of 2 slower than the corresponding rates in bovine rhodopsin. The spectra can be fit well using a model in which human bathorhodopsin decays toward equilibrium with a blue-shifted intermediate (BSI) which then decays to lumirhodopsin. Spectra and kinetic rate constants were determined for all these intermediates using a global analysis which showed that the spectra of the human intermediates are remarkably similar to bovine intermediates. Microscopic rate constants derived from this model are 7.4 x 10(6) s-1 for bathorhodopsin decay and 7.5 x 10(6) s-1 and 4.6 x 10(6) s-1 for the forward and reverse reactions of BSI, respectively. Decay of lumirhodopsin to later intermediates was studied from 10(-6) to 10(-1) s after photolysis of rhodopsin in human disk membrane suspensions. The human metarhodopsin I in equilibrium metarhodopsin II equilibrium appears to be more forward shifted than in comparable bovine studies.

摘要

在20摄氏度下对人视紫红质进行了光化学研究,以表征在视紫红质II形成之前的中间体,视紫红质II是视觉转导酶级联机制的触发因素。人视紫红质是从先前用于角膜捐赠的眼睛中制备的。在去污剂悬浮液中对人视紫红质进行光解后,在10^(-8) 到10^(-6) 秒收集的时间分辨吸收光谱显示出双指数衰减动力学。从数据中获得的表观寿命分别为65±20和292±25纳秒,几乎比牛视紫红质中的相应速率慢2倍。使用一种模型可以很好地拟合光谱,在该模型中,人视紫红质向平衡态衰减,中间有一个蓝移中间体(BSI),然后该中间体衰变为发光视紫红质。使用全局分析确定了所有这些中间体光谱和动力学速率常数,结果表明人中间体的光谱与牛中间体的光谱非常相似。从该模型得出的微观速率常数,视紫红质向平衡态衰减的速率为7.4×10^6 s^(-1),BSI正向和反向反应的速率分别为7.5×10^6 s^(-1) 和4.6×10^6 s^(-1)。在人盘膜悬浮液中对视紫红质进行光解后,从10^(-6) 到10^(-1) 秒研究了发光视紫红质向后期中间体的衰减。处于平衡态的视紫红质II平衡态中的人视紫红质I似乎比在类似的牛研究中更向前移动。

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