首页> 外文期刊>Applied Magnetic Resonance >Alteration of the Axial Met Ligand to Electron Acceptor A0 in Photosystem I: Effect on the Generation of P 700·+ A 1·− Radical Pairs as Studied by W-band Transient EPR
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Alteration of the Axial Met Ligand to Electron Acceptor A0 in Photosystem I: Effect on the Generation of P 700·+ A 1·− Radical Pairs as Studied by W-band Transient EPR

机译:I系统中轴对配体对电子受体A 0 的改变:对P 700 ·+ A 1产生的影响W波段瞬态EPR研究的 ·− 自由基对

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Photosystem I (PS I) mutants from the cyanobacterium Synechocystis sp. PCC 6803 bearing point mutations to the axial ligands of A0A (M688NPsaA) and A0B (M668NPsaB) were studied by high-field W-band electron paramagnetic resonance (EPR) spectroscopy. It was found that the EPR observables of PS I from the M668NPsaB mutant were virtual identical to that of the wild type (WT), and are clearly distinct from the M688NPsaA mutant. In particular, the P700·+ decay kinetics in the M688NPsaA mutant is significantly slower than in the WT or the M668NPsaB mutant. The analysis of the out-of-phase electron–electron dipolar electron spin echo envelope modulation shows that in the M668NPsaB mutant, the estimated distance of 26.0 ± 0.3 Å agrees well with the 25.8 Å distance for the P700·+A1A·− radical pair measured in the X-ray crystal structure. In the M688NPsaA mutant, two populations are found with estimated distances of 26.0 ± 0.3 and 25.0 ± 0.3 Å in a ratio of 0.7–0.3, which agree well with the 25.8 Å distance for the P700·+A1A·− radical pair and the 24.6 Å distance for the P700·+A1B·− radical pair measured in the X-ray crystal structure. The data confirm that under the experimental conditions employed in this work, which involve dark-adapted samples without the pre-reduction of the iron–sulfur clusters, electron transport in cyanobacterial PS I is asymmetrical at 100 K, with the majority of electron transfer taking place through the A-branch of cofactors.
机译:来自蓝藻集胞藻属(Synechocystis sp。)的光系统I(PS I)突变体。 PCC 6803对A 0A (M688N PsaA )和A 0B (M668N PsaB )是通过高场W波段电子顺磁共振(EPR)光谱研究的。发现来自M668N PsaB 突变体的PS I的EPR可观察物与野生型(WT)几乎相同,并且明显不同于M688N PsaA 突变体。特别是,M688N PsaA 突变体中的P 700 ·+ 衰变动力学明显比WT或M668N PsaB慢。 突变体。对异相电子-电子偶极电子自旋回波包络调制的分析表明,在M668N PsaB 突变体中,估计的26.0±0.3Å的距离与25.8Å的距离非常吻合。在X射线晶体结构中测得的P 700 ·+ A 1A ·-自由基对。在M688N PsaA 突变体中,发现两个种群,估计距离为26.0±0.3和25.0±0.3Å,比率为0.7-0.3,与P 700 ·+ A 1A ·-自由基对和P 700 的24.6距离在X射线晶体结构中测得的> ·+ A 1B ·-自由基对。数据证实,在这项工作中采用的实验条件下,其中包括暗适应的样品,没有预先还原铁硫簇,蓝细菌PS I中的电子传输在100 K下是不对称的,大部分电子转移是通过辅助因子的A分支放置。

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