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法老盐视紫红质质子转运光循环的表征

Characterization of the proton-transporting photocycle of pharaonis halorhodopsin.

作者信息

Kulcsár A, Groma G I, Lanyi J K, Váró G

机构信息

Institute of Biophysics, Biological Research Center of the Hungarian Academy of Sciences, Szeged, H-6701, Hungary.

出版信息

Biophys J. 2000 Nov;79(5):2705-13. doi: 10.1016/S0006-3495(00)76508-8.

Abstract

The photocycle of pharaonis halorhodopsin was investigated in the presence of 100 mM NaN(3) and 1 M Na(2)SO(4). Recent observations established that the replacement of the chloride ion with azide transforms the photocycle from a chloride-transporting one into a proton-transporting one. Kinetic analysis proves that the photocycle is very similar to that of bacteriorhodopsin. After K and L, intermediate M appears, which is missing from the chloride-transporting photocycle. In this intermediate the retinal Schiff base deprotonates. The rise of M in halorhodopsin is in the microsecond range, but occurs later than in bacteriorhodopsin, and its decay is more accentuated multiphasic. Intermediate N cannot be detected, but a large amount of O accumulates. The multiphasic character of the last step of the photocycle could be explained by the existence of a HR' state, as in the chloride photocycle. Upon replacement of chloride ion with azide, the fast electric signal changes its sign from positive to negative, and becomes similar to that detected in bacteriorhodopsin. The photocycle is enthalpy-driven, as is the chloride photocycle of halorhodopsin. These observations suggest that, while the basic charge translocation steps become identical to those in bacteriorhodopsin, the storage and utilization of energy during the photocycle remains unchanged by exchanging chloride with azide.

摘要

在含有100 mM叠氮化钠(NaN₃)和1 M硫酸钠(Na₂SO₄)的条件下,对法老嗜盐菌视紫红质的光循环进行了研究。最近的观察结果表明,用叠氮化物取代氯离子会使光循环从氯离子转运型转变为质子转运型。动力学分析证明,该光循环与细菌视紫红质的光循环非常相似。在K和L之后,出现了中间态M,而在氯离子转运光循环中没有这个中间态。在这个中间态中,视黄醛席夫碱发生去质子化。嗜盐菌视紫红质中M的上升处于微秒范围,但比细菌视紫红质中的出现得晚,并且其衰减呈现出更明显的多相性。无法检测到中间态N,但会积累大量的O。光循环最后一步的多相性可以用HR'态的存在来解释,就像在氯离子光循环中一样。用叠氮化物取代氯离子后,快速电信号的符号从正变为负,并且变得与在细菌视紫红质中检测到的信号相似。嗜盐菌视紫红质的光循环是由焓驱动的,就像其氯离子光循环一样。这些观察结果表明,虽然基本的电荷转移步骤与细菌视紫红质中的相同,但通过用叠氮化物交换氯离子,光循环过程中的能量储存和利用保持不变。

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