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Crystal structure of plant light-harvesting complex shows the active energy-transmitting state

机译:植物光采复合物的晶体结构显示出活跃的能量传输状态

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摘要

Plants dissipate excess excitation energy as heat by non-photochemical quenching (NPQ). NPQ has been thought to resemble in vitro aggregation quenching of the major antenna complex, light harvesting complex of photosystem II (LHC-II). Both processes are widely believed to involve a conformational change that creates a quenching centre of two neighbouring pigments within the complex. Using recombinant LHC-II lacking the pigments implicated in quenching, we show that they have no particular role. Single crystals of LHC-II emit strong, orientation-dependent fluorescence with an emission maximum at 680 nm. The average lifetime of the main 680 nm crystal emission at 100 K is 1.31 ns, but only 0.39 ns for LHC-II aggregates under identical conditions. The strong emission and comparatively long fluorescence lifetimes of single LHC-II crystals indicate that the complex is unquenched, and that therefore the crystal structure shows the active, energy-transmitting state of LHC-II. We conclude that quenching of excitation energy in the light-harvesting antenna is due to the molecular interaction with external pigments in vitro or other pigment–protein complexes such as PsbS in vivo, and does not require a conformational change within the complex.
机译:植物通过非光化学猝灭(NPQ)消散多余的激发能作为热量。 NPQ被认为类似于光系统II(LHC-II)的主要天线复合体,光收集复合体的体外聚集猝灭。人们普遍认为这两个过程都涉及构象变化,该构象变化在复合物中形成两个相邻颜料的猝灭中心。使用缺少参与淬灭的色素的重组LHC-II,我们显示它们没有特殊作用。 LHC-II的单晶发出强的,取向相关的荧光,最大发射波长为680 nm。在相同条件下,LHC-II聚集体在100 K下的主要680 nm晶体发射的平均寿命为1.31 ns,但仅为0.39 ns。单个LHC-II晶体的强发射和相对较长的荧光寿命表明该复合物未被猝灭,因此晶体结构显示了LHC-II的活性,能量传输状态。我们得出的结论是,光捕获天线中激发能的猝灭是由于与体外外部色素或体内其他色素-蛋白质复合物(例如体内的PsbS)发生分子相互作用,因此不需要在复合物中进行构象变化。

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