F‐695 emission from the purified photosystem II chlorophyll a‐protein complex
F‐695 emission from the purified photosystem II chlorophyll a‐protein complex
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纯化光系统 II 叶绿素 a 蛋白复合物的 F-695 发射
DOI:
10.1016/0014-5793(80)80021-4
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发表时间:
1980
期刊:
影响因子:
3.5
通讯作者:
K. Satoh
中科院分区:
文献类型:
--
作者:
K. Satoh
Early fractionation experiments [l-4] as well as the analysis of fluorescence excitation spectra [5, 6] and of fluorescence inductions [7, 8] supported the conclusion that F-685 and F-695 belong to photosystern II (PSII) while F-735 belongs to photosystem I (PSI) in photosynthesis. However, the F-695 band, which has been postulated as fluorescence originating from the antenna of the PSI1 reaction center [9], appeared neither in the purified preparations of lightharvesting ([131, but see [23]) nor in the purified reaction center complex [lo-151 of PSII. This discrepancy was first explained by the hypothesis [13] that F-685 and F-695 are due to the light-harvesting and the reaction center complex of PSII, but that the peak positions are blue-shifted in the detergent-solubilized preparations to 681 and 685 nm, respectively. The hypothesis, however, is challenged by the facts that a prominent emission band near 685 nm is observed on the spectrum of chloroplasts from mutant barley lacking the light-harvesting chlorophyll a/b-protein [161 and that the F-685 emission of the purified PSI1 chlorophyll a-protein complex (the chlorophyll a-protein comprising the reaction center of PSI1 [11, 13, 171) no longer shows the characteristic temperature dependence of chloroplast F-695 emission.In order to gain more information about the fate of F695 in isolation of pigment-protein complexes from the thylakoid membranes, an analysis was carried out to detect F-695 band by a sensitive method which uses 1, lO-phenanthroline in the presence of chaotropic reagents [181. The results clearly indicated that the purified PSI1 chlorophyll a-protein complex contains two fluorescent components, F-685 and