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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Structure-Based Modeling of Fluorescence Kinetics of Photosystem II: Relation between Its Dimeric Form and Photoregulation
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Structure-Based Modeling of Fluorescence Kinetics of Photosystem II: Relation between Its Dimeric Form and Photoregulation

机译:基于结构的光系统II动力学动力学建模:其二聚体形式与光调节之间的关系

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A photosystem II.-enriched membrane (PSII-em) consists of the PSII core complex (PSII-cc) which is surrounded by peripheral antenna complexes. PSII-cc consists of two,cote antenna (CP43 and CP47) and the reaction center (RC) complex. Time-resolved fluorescence spectra of a PSII-ern were measured at 77 K. The data were-globally analyzed with a new compartment model, which has a minimum number of compartments and is consistent with the Structure of PSII-cc. The reliability of the model was investigated by fitting the data Of different,experimental-conditions. From the analysis, the energy-transfer time constants from the peripheral antenna to, CP47 and CP43 were estimated to be 20 and 35 ps, respectively With an exponential time constant of 320 ps, the excitation energy was estimated to accumulate in the reddest chlorophyll (Red Chl), giving,a 692 nm fluorescence peak. The excited state on the Red Chl was confirmed to be quenched upon the addition of an oxidant, as reported previously. The calculations based on the Forster theory predicted that the excitation energy on Chl29 is quenched by Chl(ZD1)(+), which is a redox active but not involved in the electron-transfer chain, located in the D1 subunit of,RC, in the other monomer with an exponential time constant of 75 ps. This quenching pathway is consistent with our structure-based simulation of PSII-cc, which assigned Chl29 as the Red Chl. On the other hand, the alternative interpretation assigning Chl26 as the Red Chl was not excluded. The excited Chl26 was predicted to be quenched by another redox active Chl(ZD2)(+) in the D2 subunit of RC in the same monomer unit with an exponential time constant of 88 ps.
机译:富含光系统II的膜(PSII-em)由PSII核心复合物(PSII-cc)组成,该复合物被外围天线复合物围绕。 PSII-cc由两个棚天线(CP43和CP47)和反应中心(RC)组成。 PSII-ern的时间分辨荧光光谱是在77 K下测量的。使用新的隔室模型对数据进行了全局分析,该模型具有最少的隔室数量,并且与PSII-cc的结构一致。通过拟合不同实验条件下的数据来研究模型的可靠性。根据分析,从外围天线到CP47和CP43的能量传输时间常数估计分别为20和35 ps,在指数时间常数为320 ps的情况下,估计激发能量积累在最红的叶绿素中( Red Chl),得到692 nm的荧光峰。如先前报道,证实在添加氧化剂后,Red Chl上的激发态被淬灭。基于Forster理论的计算预测,Chl29上的激发能被Chl(ZD1)(+)淬灭,Chl(ZD1)(+)是一种氧化还原活性,但不参与电子转移链,位于RC的D1亚基中。其他单体的指数时间常数为75 ps。此淬灭途径与我们基于结构的PSII-cc模拟(将Chl29命名为Red Chl)一致。另一方面,不排除将Chl26分配为Red Chl的替代解释。预计激发的Chl26将被相同单体单元中RC的D2亚基中另一种氧化还原活性Chl(ZD2)(+)淬灭,其指数时间常数为88 ps。

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