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首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Functions of carotenoids in xanthorhodopsin and archaerhodopsin, from action spectra of photoinhibition of cell respiration
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Functions of carotenoids in xanthorhodopsin and archaerhodopsin, from action spectra of photoinhibition of cell respiration

机译:从光抑制细胞呼吸作用的作用谱看类胡萝卜素在黄体视紫红质和古细菌视紫红质中的功能

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The recent discovery of a carotenoid light-harvesting antenna in xanthorhodopsin, a retinal-based proton pump in Salinibacter ruber, made use of photoinhibition of respiration in whole cells to obtain action spectra [Balashov et al. Science 309, (2005) 2061-2064]. Here we provide further details of this phenomenon, and compare action spectra in three different systems where carotenoids have different functions or efficiencies of light-harvesting. The kinetics of light-induced inhibition of respiration in Salinibacter ruber was determined with single short flashes, and the photochemical cross section of the photoreaction was estimated. These measurements confirm that the xanthorhodopsin complex includes no more than a few, and most likely only one, carotenoid molecule, which is far less than the core complex antenna of photosynthetic bacteria. Although the total cross-section of light absorption in the purple bacterium Rhodospirillum rubrum greatly exceeds that in Salinibacter, the cross-sections are roughly equivalent in the shared wavelength range. We show further that despite interaction of bacterioruberin with archaerhodopsin, another retinal-based proton pump, there is no significant energy transfer from this carotenoid. This emphasizes the uniqueness of the salinixanthin-retinal interaction in xanthorhodopsin, and indicates that bacterioruberin in Halorubrum species has a structural or photoprotective rather than energetic role. (c) 2006 Elsevier B.V. All rights reserved.
机译:最近发现在黄藻视紫红质中的类胡萝卜素捕光触角是一种在盐杆菌属中的视网膜质子泵,它利用光抑制整个细胞的呼吸来获得作用谱[Balashov等。 Science 309,(2005)2061-2064]。在这里,我们提供了此现象的更多细节,并比较了类胡萝卜素具有不同功能或光收集效率的三个不同系统中的作用谱。用单次短闪烁测定光诱导的盐沼细菌中呼吸抑制的动力学,并估算光反应的光化学截面。这些测量结果证实,黄体视紫红质复合物包含的类胡萝卜素分子不超过几个,最有可能仅包含一个,这远远小于光合细菌的核心复合物触角。尽管紫色细菌Rhodospirillum rubrum中光吸收的总横截面大大超过了盐杆菌,但在共享波长范围内,这些横截面大致相等。我们进一步表明,尽管细菌素和古细菌视紫红质是另一种基于视网膜的质子泵相互作用,但没有明显的能量从这种类胡萝卜素转移。这强调了在黄嘌呤视紫红质中沙林黄质-视网膜相互作用的独特性,并表明Haloubrum物种中的细菌素具有结构或光保护作用而不是能量保护作用。 (c)2006 Elsevier B.V.保留所有权利。

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