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细菌视紫红质中的蛋白质-发色团相互作用:表面电位变化的影响

Protein-chromophore interactions in bacteriorhodopsin: the effects of a change in surface potential.

作者信息

Swords N A, Wallace B A

机构信息

Department of Chemistry, Rensselaer Polytechnic Institute, Troy, NY 12181.

出版信息

Biochim Biophys Acta. 1991 Dec 9;1070(2):313-20. doi: 10.1016/0005-2736(91)90072-g.

Abstract

The chromophore retinal is bound to bacteriorhodopsin via a protonated Schiff base linkage. The retinal binding site is reported to be buried in the transmembrane portion of the protein, distant from the membrane surfaces. When bound to bacteriorhodopsin, the absorption maximum of retinal is red-shifted from 366 nm to 568 nm producing a purple color. This color persists across a wide pH range. However, when the pH is raised above 12.0, the membranes become pink in color, while at pH values of 3.0 or below, a blue color is produced. The blue color can also be obtained by removing the divalent cations bound to the surface of the protein. In this study, bacteriorhodopsin was examined by circular dichroism and absorption spectroscopy to determine if protein conformational changes were associated with the color shifts. It was found that although the retinal chromophore can be completely removed by bleaching with hydroxylamine with no significant influence on the secondary structure of the protein, a change in the surface charge of bacteriorhodopsin results in measurable conformational change in the protein, which apparently affects the nature of the retinal binding site.

摘要

发色团视黄醛通过质子化席夫碱连接与细菌视紫红质结合。据报道,视黄醛结合位点埋藏在蛋白质的跨膜部分,远离膜表面。当与细菌视紫红质结合时,视黄醛的最大吸收波长从366nm红移至568nm,产生紫色。这种颜色在很宽的pH范围内都能保持。然而,当pH值升高到12.0以上时,膜会变成粉红色,而在pH值为3.0或更低时,会产生蓝色。通过去除与蛋白质表面结合的二价阳离子也可以得到蓝色。在本研究中,通过圆二色光谱和吸收光谱对细菌视紫红质进行检测,以确定蛋白质构象变化是否与颜色变化相关。结果发现,虽然用羟胺漂白可以完全去除视黄醛发色团,且对蛋白质的二级结构没有显著影响,但细菌视紫红质表面电荷的变化会导致蛋白质发生可测量的构象变化,这显然会影响视黄醛结合位点的性质。

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