Institute of Basic Biological Problems of the Russian Academy of Sciences, Pushchino Scientific Center for Biological Research of the Russian Academy of Sciences, Pushchino, 142290, Moscow, Russian Federation.
Photosynth Res. 2020 Dec;146(1-3):109-121. doi: 10.1007/s11120-020-00728-9. Epub 2020 Mar 3.
In photosynthetic reaction centers (RCs) of purple bacteria, conserved histidine residues [His L173 and His M202 in Rhodobacter (Rba.) sphaeroides] are known to serve as fifth axial ligands to the central Mg atom of the bacteriochlorophyll (BChl) molecules (P and P, respectively) that constitute the homodimer (BChl/BChl) primary electron donor P. In a number of previous studies, it has been found that replacing these residues with leucine, which cannot serve as a ligand to the Mg ion of BChl, leads to the assembly of heterodimer RCs with P represented by the BChl/BPheo pair. Here, we show that a homodimer P is assembled in Rba. sphaeroides RCs if the mutation H(M202)L is combined with the mutation of isoleucine to histidine at position M206 located in the immediate vicinity of P. The resulting mutant H(M202)L/I(M206)H RCs are characterized using pigment analysis, redox titration, and a number of spectroscopic methods. It is shown that, compared to wild-type RCs, the double mutation causes significant changes in the absorption spectrum of the P homodimer and the electronic structure of the radical cation P, but has only minor effect on the pigment composition, the P/P midpoint potential, and the initial electron-transfer reaction. The results are discussed in terms of the nature of the axial ligand to the Mg of P in mutant H(M202)L/I(M206)H RCs and the possibility of His M202 participation in the previously proposed through-bond route for electron transfer from the excited state P* to the monomeric BChl B in wild-type RCs.
在光合反应中心(RCs)的紫色细菌,保守的组氨酸残基[His L173 和 His M202 在 Rhodobacter (Rba.)sphaeroides]已知作为第五轴向配体对中央镁原子的细菌叶绿素(BChl)分子(P 和 P,分别),构成同源二聚体(BChl/BChl)的初级电子供体 P。在以前的许多研究中,已经发现用亮氨酸取代这些残基,亮氨酸不能作为 BChl 的镁离子的配体,导致异源二聚体 RCs 的组装,以 BChl/BPheo 对表示 P。在这里,我们表明,如果突变 H(M202)L 与位于 P 附近的 M206 位置的异亮氨酸到组氨酸的突变相结合,则在 Rba. sphaeroides RCs 中组装同源二聚体 P。使用色素分析、氧化还原滴定和多种光谱方法对所得突变体 H(M202)L/I(M206)H RCs 进行了表征。结果表明,与野生型 RCs 相比,双重突变导致 P 同源二聚体的吸收光谱和自由基阳离子 P 的电子结构发生显著变化,但对色素组成、P/P 中点电位和初始电子转移反应的影响较小。结果根据突变体 H(M202)L/I(M206)H RCs 中 P 的镁轴向配体的性质以及 His M202 参与先前提出的从激发态 P*到野生型 RCs 中单体 BChl B 的通过键途径的可能性进行了讨论。