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首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Spectral dependence of irreversible light-induced fluorescence quenching: Chlorophyll forms with maximal emission at 700-702 and 705-710 nm as spectroscopic markers of conformational changes in the core complex
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Spectral dependence of irreversible light-induced fluorescence quenching: Chlorophyll forms with maximal emission at 700-702 and 705-710 nm as spectroscopic markers of conformational changes in the core complex

机译:不可逆光诱导的荧光猝灭的光谱依赖性:叶绿素形式在700-702和705-710nm处具有最大排放和核心复合物的构象变化的光谱标记

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摘要

The spectral dependence of the irreversible non-photochemical fluorescence quenching associated with photoinhibition in vitro has been comparatively investigated in thylakoid membranes, PSII enriched particles and PSII core complexes isolated from spinach. The analysis of the fluorescence emission spectra of dark-adapted and quenched samples as a function of the detection temperature in the 280-80 K interval, indicates that Chlorophyll spectral forms having maximal emission in the 700-702 nm and 705-710 nm ranges gain relative intensity in concomitance with the establishment of irreversible light-induced quenching, acting thereby as spectroscopic markers. The relative enhancement of the 700-702 nm and 705-710 nm forms emission could be due either to an increase of their stoichiometric abundance or to their intrinsically low fluorescence quantum yields. These two factors, that can also coexist, need to be promoted by light-induced alterations in chromophore-protein as well as chromophore-chromophore interactions. The bands centred at about 701 and 706 nm are also observed in the PSII core complex, suggesting their, at least partial, localisation in proximity to the reaction centre, and the occurrence of light-induced conformational changes in the core subunits.
机译:在菠菜中富含富集的粒子,PSII富集的颗粒和PSII核心复合物中的不可逆非光化学荧光猝灭的光谱依赖性在紫罗兰膜中较较为研究。在280-80k间隔中检测温度的函数的荧光发射光谱分析为检测温度,表明700-702nm和705-710 nm的最大排放具有最大排放的叶绿素光谱形式相对强度伴随着建立不可逆光诱导的猝灭,从而作为光谱标记物。 700-702nm和705-710nm形式发射的相对增强可能是由于它们的化学计量增加或其本质上低荧光量子产率。这两个因素也需要通过发色团蛋白质的光诱导的改变来促进和发色团 - 发色团相互作用。在PSII核心复合物中还观察到以约701和706nm为中心的条带,暗示其靠近反应中心的至少部分,并且核心亚基的光诱导的构象变化的发生。

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