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嗜盐菌紫膜的光声光量热法与光谱学

Photoacoustic photocalorimetry and spectroscopy of Halobacterium halobium purple membranes.

作者信息

Garty H, Caplan S R, Cahen D

出版信息

Biophys J. 1982 Feb;37(2):405-15. doi: 10.1016/S0006-3495(82)84686-9.

Abstract

Enthalpy changes associated with intermediates of the photocycle of bacteriorhodopsin (bR) in light-adapted Halobacterium halobium purple membranes, and decay times of these intermediates, are obtained from photoacoustic measurements on purple membrane fragments. Our results, mainly derived from modulation frequency spectra, show changes in the amount of energy stored in the intermediates and in their decay times as a function of pH and/or salt concentration. Especially affected are the slowest step (endothermic) and a spectroscopically unidentified intermediate (both at pH 7). This effect is interpreted in terms of cation binding to the protein, conformational changes of which are thought to be connected with the endothermic process. Wavelength spectra are used to obtain heat dissipation spectra, which allow identification of wavelength regions with varying photoactivity, and estimation of the amounts of enthalpy stored in the photointermediates. Because of bleaching and accumulation of intermediates, however, and because of the small fraction of light energy stored during photocycle, quantitative information cannot be obtained. From photoacoustic wavelength spectra of purple membrane fragments equilibrated at 63% relative humidity, rise and decay times of the bR570 and M412 intermediates are calculated.

摘要

通过对嗜盐菌紫膜片段进行光声测量,获得了与光适应的嗜盐菌紫膜中细菌视紫红质(bR)光循环中间体相关的焓变以及这些中间体的衰减时间。我们的结果主要来自调制频率光谱,显示了中间体中储存的能量数量及其衰减时间随pH值和/或盐浓度的变化。受影响特别大的是最慢的步骤(吸热)和一个光谱上无法识别的中间体(均在pH值为7时)。这种效应可以用阳离子与蛋白质的结合来解释,据认为蛋白质的构象变化与吸热过程有关。利用波长光谱获得热耗散光谱,这有助于识别具有不同光活性的波长区域,并估算光中间体中储存的焓量。然而,由于中间体的漂白和积累,以及由于光循环过程中储存的光能比例较小,无法获得定量信息。根据在相对湿度63%下平衡的紫膜片段的光声波长光谱,计算了bR570和M412中间体的上升和衰减时间。

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本文引用的文献

1
Photoacoustic calorimetry of Halobacterium halobium photocycle.
Biochem Biophys Res Commun. 1980 Nov 17;97(1):200-6. doi: 10.1016/s0006-291x(80)80154-9.
8

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