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[红螺菌中载色体及亚载色体色素-蛋白质复合体中细菌叶绿素在880纳米处吸收带的位移]

[Shifts of the bacteriochlorophyll absorption band at 880 nm in chromatophores and subchromatophore pigment-protein complexes from Rhodospirillum rubrum].

作者信息

Barskiĭ E L, Samuilov V D

出版信息

Biokhimiia. 1979 Oct;44(10):1805-13.

PMID:41599
Abstract

The redox potential dependency of the light-induced absorption changes of bacteriochlorophyll in the chromatophores and subchromatophore particles from Rhodospirillum rubrum has been studied. The highest values of the absorption changes due to the bleaching of P870 and the blue shift of P800 are observed within the redox potential range of 360--410. At the potential values below 300 mV the 880 nm band of bacteriochlorophyll shifts to shorter wavelengths in the subchromatophore particles and to longer wavelengths in the chromatophores. Redox titration revealed that the red and blue shifts of 880 nm bacteriochlorophyll band are caused by the functioning of a non-identified component (X) which has an oxidation -- reduction midpoint potential close to 340 mV (n = 1) within the pH range of 6,0--7,6. The Em for this component decreases by 60 mV/pH unit within the pH range of 7.6--9,2. The results obtained suggest that the red shift is due to the transmembrane, while the blue shift -- to the local intramembrane electric field. The generation of both the transmembrane and local intramembrane electric fields apparently depends on redox transitions of the component X.

摘要

对红螺菌的载色体和亚载色体颗粒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。由于P870漂白和P800蓝移导致的吸收变化的最高值在360 - 410的氧化还原电位范围内观察到。在低于300 mV的电位值下,细菌叶绿素的880 nm带在亚载色体颗粒中向较短波长移动,在载色体中向较长波长移动。氧化还原滴定表明,880 nm细菌叶绿素带的红移和蓝移是由一种未鉴定成分(X)的功能引起的,该成分在6.0 - 7.6的pH范围内具有接近340 mV(n = 1)的氧化还原中点电位。在7.6 - 9.2的pH范围内,该成分的Em每pH单位降低60 mV。所得结果表明,红移是由于跨膜电场,而蓝移是由于局部膜内电场。跨膜电场和局部膜内电场的产生显然取决于成分X的氧化还原转变。

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