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Mutation-induced perturbation of the special pair P840 in the homodimeric reaction center in green sulfur bacteria

机译:绿色硫细菌中同二聚体反应中心中的特殊对P840的诱变扰动

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摘要

Homodimeric photosynthetic reaction centers (RCs) in green sulfur bacteria and heliobacteria are functional homologs of Photosystem (PS) I in oxygenic phototrophs. They show unique features in their electron transfer reactions; however, detailed structural information has not been available so far. We mutated PscA-Leu688 and PscA-Val689 to cysteine residues in the green sulfur bacterium Chlorobaculum tepidum ; these residues were predicted to interact with the special pair P840, based on sequence comparison with PS I. Spectroelectrochemical measurements showed that the L688C and V689C mutations altered a near-infrared difference spectrum upon P840 oxidation, as well as the redox potential of P840. Light-induced Fourier transform infrared difference measurements showed that the L688C mutation induced a differential signal of the S-H stretching vibration in the P840+/P840 spectrum, as reported in P800+/P800 difference spectrum in a heliobacterial RC. Spectral changes in the 131-keto C=O region, caused by both mutations, revealed corresponding changes in the electronic structure of P840 and in the hydrogen-bonding interaction at the 131-keto C=O group. These results suggest that there is a common spatial configuration around the special pair sites among type 1 RCs. The data also provided evidence that P840 has a symmetric electronic structure, as expected from a homodimeric RC.
机译:绿色硫细菌和Heliobacteria中的同型二聚光合作用反应中心(RCs)是含氧光养植物中Photosystem(PS)I的功能同源物。它们在电子转移反应中显示出独特的特征。但是,到目前为止还没有详细的结构信息。我们将PscA-Leu688和PscA-Val689突变为绿色硫磺细菌Chlorobaculum tepidum中的半胱氨酸残基;根据与PS I的序列比较,预测这些残基将与特殊的P840对相互作用。光谱电化学测量表明L688C和V689C突变会在P840氧化时改变近红外差异光谱,以及P840的氧化还原电位。光诱导傅立叶变换红外差异测量表明,如P800 + /中所述,L688C突变在P840 + / P840光谱中诱导了SH拉伸振动的差分信号。肺细菌RC中的P800差异光谱。由这两个突变引起的13 1 -酮C = O区域的光谱变化揭示了P840的电子结构和13 1 处的氢键相互作用的相应变化。 sup>-酮基C = O基团。这些结果表明,在1型RC中,特殊对位点周围存在共同的空间构型。数据还提供了证据,表明P840具有对称的电子结构,这是同源二聚体RC所期望的。

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