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Theoretical studies on the mechanism of primary electron transfer in the photosynthetic reaction center of Rhodobacter sphaeroides

机译:球形红细菌光合反应中心一次电子转移机理的理论研究

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摘要

The mechanism of the primary electron transfer (ET) process in the photosynthetic reaction center (PRC) of Rhodobacter sphaeroides has been studied with quantum chemistry method of ab initio density functional theory (DFT) (B3LYP/6-31G) based on the optimized X-ray crystallographic structure. The calculation was carried out on different structural levels. The electronic structure of pigment molecules was first studied, and then the influence of the neighboring protein was taken into account at three approximation levels: (a) the surrounding proteins were treated as a homogeneous medium with a uniform dielectric constant (SCRF); (b) both the influence of axial coordination of His to the special pair P and ABChl as, and the hydrogen bonds between related residues and P and also BPhas were included; and (c) the influence of the electronic structure of the protein subunit chains as a whole was studied. The results suggest that: (1) according to the composition of the HOMO and LUMO of P, there might be a charge-separated state of (BChlL +BChlM −) for the excited state of P; (2) to treat the protein surroundings as a homogeneous medium is not sufficient. Different interactions between pigment molecules and related residues play different roles in the ET process; (3) the axial coordination of His to P raises the E LUMO of P greatly, and it is very important for the ET process to occur in the PRC of wild-type bacterium; the axial coordination of His to ABChl as also raises their E LUMO significantly; (4) the hydrogen-bonds between amino acid residues and P and also BPh as depress the E LUMO of the pigment molecules to some extent, which makes the E LUMO of P lower than those of ABChlas, and the E LUMO of BPh a L lower than that of BPh a M. Consequently, the ET process from P to BPh a L does not, according to our calculation model, occur via ABChl a L. The possibility of the ET pathway from P to BPh a L via ABChl a L was discussed; (5) the frontier orbitals of protein subunit chains L and M are localized at the random coil area and the α–helix areas, respectively. Results mentioned above support the fact that the ET process proceeds in favourable circumstances along the branch L.
机译:利用从头算密度泛函理论(DFT)(B3LYP / 6-31G)的量子化学方法,基于优化的X,研究了球形球形红球菌光合反应中心(PRC)中的一次电子传递(ET)过程的机理。射线晶体学结构。计算是在不同的结构级别上进行的。首先研究了色素分子的电子结构,然后在三个近似水平上考虑了邻近蛋白质的影响:(a)将周围蛋白质作为具有均一介电常数(SCRF)的均质介质处理; (b)包括His的轴向配位对特殊对P和ABChl的影响,以及相关残基与P和BPhas之间的氢键; (c)研究了蛋白质亚基链整体的电子结构的影响。结果表明:(1)根据P的HOMO和LUMO的组成,可能存在(BChlL + BChlM -的电荷分离状态。 )对于P的激发态; (2)将蛋白质周围环境视为均匀介质是不够的。颜料分子和相关残基之间不同的相互作用在ET过程中起着不同的作用。 (3)His与P的轴向配位大大提高了P的E LUMO ,对于ET过程在野生型细菌的PRC中发生非常重要。 His与ABChl的轴向配位也大大提高了他们的E LUMO 。 (4)氨基酸残基与P之间的氢键以及BPh在一定程度上抑制了色素分子的E LUMO ,这使得P的E LUMO 低于ABChlas,并且BPh a L 的E LUMO 低于BPh a M 。因此,根据我们的计算模型,从P到BPh a L 的ET过程不会通过ABChl a L 发生。讨论了通过ABChl a L 从P到BPh a L 的ET途径的可能性; (5)蛋白质亚基链L和M的前沿轨道分别位于随机卷曲区和α–螺旋区。上述结果支持以下事实:ET过程在有利的情况下沿着分支L进行。

著录项

  • 来源
    《Photosynthesis Research》 |2002年第1期|11-36|共26页
  • 作者单位

    State Key Laboratory for Structural Chemistry of Unstable and Stable Species The Center of Molecular Science Institute of Chemistry Chinese Academy of Sciences;

    State Key Laboratory for Structural Chemistry of Unstable and Stable Species The Center of Molecular Science Institute of Chemistry Chinese Academy of Sciences;

    State Key Laboratory for Structural Chemistry of Unstable and Stable Species The Center of Molecular Science Institute of Chemistry Chinese Academy of Sciences;

    State Key Laboratory for Structural Chemistry of Unstable and Stable Species The Center of Molecular Science Institute of Chemistry Chinese Academy of Sciences;

    State Key Laboratory for Structural Chemistry of Unstable and Stable Species The Center of Molecular Science Institute of Chemistry Chinese Academy of Sciences;

    State Key Laboratory for Structural Chemistry of Unstable and Stable Species The Center of Molecular Science Institute of Chemistry Chinese Academy of Sciences;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    electron transfer; Rhodobacter sphaeroides; photosynthetic reaction center; ab initio; density functional theory; ODA-ENFC;

    机译:电子转移;球形红球菌;光合反应中心;从头开始;密度泛函理论;ODA-ENFC;

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