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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Carotenoid Excited-State Properties in Photosynthetic Purple Bacterial Reaction Centers: Effects of the Protein Environment
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Carotenoid Excited-State Properties in Photosynthetic Purple Bacterial Reaction Centers: Effects of the Protein Environment

机译:光合紫色细菌反应中心中的类胡萝卜素兴奋态性质:蛋白质环境的影响。

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Carotenoid excited-state properties are characterized and compared in reaction centers (RCs) of wild-type (WT) Rhodobacter (Kb.) sphaeroides, and a mutant VR(L157), in which the near-infrared absorbance band associated with the primary electron donor, P, is missing. Energy transfer from the carotenoid (spheroidenone) S2 and relaxed S1 excited states to an adjacent monomeric-bacteriochlorophyll is unchanged between WT and the mutant RC samples. However, two other excited states, including a vibrationally hot S1 state and a state referred to as S1, have distinct properties in the two RCs. The lifetime of the hot S1 state is significantly shortened in the P-less mutant compared to WT RCs (450 fs vs 800 fs, respectively), and there is a nearly 2-fold decrease in the efficiency of energy transfer from the carotenoid to bacteriochlorophyll in the P-less mutant relative to WT RCs. The fact that both the observed hot S1 excited state lifetime and the energy transfer efficiency decrease in the mutant implies that the intrinsic lifetime of the hot S1 state in the P-less mutant has decreased. Interestingly, the S* state is observed only in the P-less mutant, and it is not present in the WT. The change in the hot S1lifetime between WT and mutant RCs, and the formation of the S1 state only in the mutant, suggests that the carotenoid binding pocket in the P-less mutant is substantially altered. The excited-state behavior of spheroidene in WT RCs isolated from anaerobically grown cells was also characterized and compared with previous studies of spheroidene in the lightharvesting complex II (LH2) from Kb. sphaeroides. Differences in the photophysical properties of spheroidene between WT RCs and LH2 parallel those observed for spheroidenone between WT and VR(L157) mutant RCs. On the basis of the structural information available for both RCs and LH2, it appears that the hot S1 state and the S1 state are sensitive to the structural constraints imposed by protein-carotenoid interactions. Finally, in the VR(L157) mutant, it is possible to directly observe the carotenoid triplet state, likely formed via quenching of the bacteriochlorophyll triplet state. This provides direct experimental evidence for triplet energy transfer to the carotenoid, a process that is integral to the photoprotective role of carotenoids in bacterial RCs.
机译:对类胡萝卜素的激发态性质进行了表征,并在野生型球形红球菌(Kb。)球菌的反应中心(RCs)和突变VR(L157)中进行了比较,其中近红外吸收带与一次电子相关供体P失踪了。从类胡萝卜素(Spheroidenone)S2和松弛的S1激发态到相邻的单体细菌叶绿素的能量转移在WT和突变RC样品之间是不变的。但是,其他两个激发态,包括振动热的S1状态和称为S1的状态,在两个RC中具有不同的属性。与WT RC相比,无磷突变体中热S1状态的寿命显着缩短(分别为450 fs和800 fs),并且从类胡萝卜素到细菌叶绿素的能量转移效率几乎降低了2倍。相对于WT RC,无磷突变体中的“ P”。在突变体中观察到的热S1激发态寿命和能量转移效率均降低的事实表明,在无P突变体中,热S1态的固有寿命已经降低。有趣的是,S *状态仅在无P突变体中观察到,而在WT中不存在。 WT和突变体RC之间热S1寿命的变化以及仅在突变体中S1状态的形成表明,无P突变体中的类胡萝卜素结合口袋发生了实质性变化。还表征了从厌氧生长的细胞中分离出的WT RC中的椭球的激发态行为,并将其与先前在Kb的光捕获复合物II(LH2)中对椭球的研究进行了比较。球菌。 WT RC和LH2之间的椭球的光物理性质的差异与WT和VR(L157)突变RC之间的椭球酮的观察到的平行。根据可用于RC和LH2的结构信息,似乎热的S1状态和S1状态对蛋白质-类胡萝卜素相互作用施加的结构约束敏感。最后,在VR(L157)突变体中,可以直接观察类胡萝卜素三联体状态,这可能是通过细菌叶绿素三联体状态的淬灭而形成的。这为三重态能量转移到类胡萝卜素提供了直接的实验证据,该过程是类胡萝卜素在细菌RC中的光保护作用所不可或缺的。

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