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将反应中心整合到来自球形红假单胞菌无细菌叶绿素突变体的膜中。

The incorporation of reaction centres into membranes from a bacteriochlorophyll-less mutant of Rhodopseudomonas sphaeroides.

作者信息

Hunter C N, Jones O T

出版信息

Biochim Biophys Acta. 1979 Feb 8;545(2):325-38. doi: 10.1016/0005-2728(79)90210-x.

Abstract

Reaction centres purified from a blue-green mutant R-26 of Rhodopseudomonas sphaeroides can be incorporated into bacteriochlorophyll-less membranes purified from an aerobically-grown bacteriochlorophyll-less mutant 01 of R. sphaeroides. This can be accomplished by raising the temperature of the mixture or by addition of the detergent sodium cholate and its subsequent removal by dilution or dialysis. Optimum conditions for the reconstitution are at 4 degrees C in the presence of 1% cholate and soybean phospholipid (2 : 1, w/w, with membrane protein). Isopycnic sucrose density gradient centrifugation of such preparations shows that reaction centres and light-harvesting pigment-protein complex bind to the membranes. Reconstituted membranes exhibit light-induced steady-state cytochrome absorbance changes resembling those observed in chromatophores prepared from the photosynthetically-grown mutant R-26. The effect on these absorbance changes of varying reaction centre content in the membrane has been studied, and the time course of the interaction between 01 membrane cytochrome c2 and added reaction centre examined. Cytochrome b photoreduction and cytochrome c2 photo-oxidation were observed in the reconstituted preparation; each increased following the addition of antimycin A, suggesting that a cyclic light-driven system had been reconstituted.

摘要

从球形红假单胞菌的蓝绿色突变体R-26中纯化得到的反应中心,可以整合到从需氧生长的球形红假单胞菌无细菌叶绿素突变体01中纯化得到的无细菌叶绿素的膜中。这可以通过提高混合物的温度或添加去污剂胆酸钠,随后通过稀释或透析将其去除来实现。重构的最佳条件是在4℃下,存在1%的胆酸盐和大豆磷脂(与膜蛋白的重量比为2:1)。对此类制剂进行等密度蔗糖密度梯度离心表明,反应中心和捕光色素-蛋白复合物与膜结合。重构的膜表现出光诱导的稳态细胞色素吸光度变化,类似于从光合生长的突变体R-26制备的载色体中观察到的变化。研究了膜中不同反应中心含量对这些吸光度变化的影响,并检测了01膜细胞色素c2与添加的反应中心之间相互作用的时间进程。在重构制剂中观察到细胞色素b光还原和细胞色素c2光氧化;添加抗霉素A后,每一项都增加,表明已重构了一个循环光驱动系统。

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