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红螺菌中880nm附近细菌叶绿素吸收带的蓝移和红移

Blue and red shifts of bacteriochlorophyll absorption band around 880 nm in Rhodospirillum rubrum.

作者信息

Barsky E L, Samuilov V D

出版信息

Biochim Biophys Acta. 1979 Dec 6;548(3):448-57. doi: 10.1016/0005-2728(79)90057-4.

Abstract

The redox potential dependence of the light-induced absorption changes of bacteriochlorophyll in chromatophores and subchromatophore pigment-protein complexes from Rhodospirillum rubrum has been examined. The highest values of the absorption changes due to the bleaching of P-870 and the blue shift of P-800 in chromatophores and subchromatophore complexes are observed in the 360-410mV redox potential range. At potentials below 300 mV (pH 7.0), the 880 nm band of bacteriochlorophyll shifts to shorter wavelengths in subchromatophore complexes and to longer wavelengths in chromatophores. The data on redox titration show that the red and blue shifts of 880-nm bacteriochlorophyll band represent the action of a non-identified component (C340) which has an oxidation-reduction midpoint potential close to 340 mV (n=1) at pH 6.0--7.6. The Em of this component varies by 60 mV/pH unit between pH 7.6 and 9.2. The results suggest that the red shift is due to the transmembrane, and the blue shift to the local intramembrane electrical field. The generation of both the transmembrane and local electrical fields is apparently governed by redox transitions of the component C340.

摘要

对来自深红红螺菌的载色体以及亚载色体色素 - 蛋白质复合物中细菌叶绿素光诱导吸收变化的氧化还原电位依赖性进行了研究。在360 - 410mV氧化还原电位范围内,观察到载色体和亚载色体复合物中由于P - 870漂白和P - 800蓝移导致的吸收变化的最高值。在低于300mV(pH 7.0)的电位下,细菌叶绿素的880nm带在亚载色体复合物中向较短波长移动,而在载色体中向较长波长移动。氧化还原滴定数据表明,880nm细菌叶绿素带的红移和蓝移代表了一种未鉴定成分(C340)的作用,该成分在pH 6.0 - 7.6时具有接近340mV(n = 1)的氧化还原中点电位。在pH 7.6至9.2之间,该成分的Em以60mV/pH单位变化。结果表明,红移是由于跨膜作用,而蓝移是由于局部膜内电场。跨膜电场和局部电场的产生显然受成分C340的氧化还原转变控制。

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