论文标题

探测光系统中铁硫簇的氧化还原潜力

Probing redox potential for Iron sulfur clusters in photosystem I

论文作者

Ali, Fedaa, W, Medhat Shafaa., Amin, Muhamed

论文摘要

光系统I是一种轻驱动电子传输设备。可用的X射线晶体结构来自热核酸菌的弹药表明,电子转移途径由在第一个铁硫簇FX上收敛的两个近对称分支组成,然后是两个末端的末端铁硫簇FA和FB。实验表明,FX的氧化潜力低于FA和FB,这有助于电子转移反应。在这里,我们使用密度函数理论和多构形式连续静电仪来解释FX,FA和FB簇的中点EM电位的差异。我们的计算表明,与FA和FB相比,FX具有最低的氧化潜力,因为与周围残基的强烈配对的静电相互作用很强。这些相互作用被证明是由桥接的硫和半胱氨酸配体主导的,这可能归因于与FA和FB相比,FX的氧化Fe离子和固定硫硫之间的平均键距离较短。此外,与FA和FB相比,4FE-4S簇与骨干原子的正势之间的静电排斥最少。这些结果与低温EPR信号的氧化还原滴定和室温重组动力学的实验测量一致。

Photosystem I is a light-driven electron transfer device. Available X-ray crystal structure from Thermosynechococcus elongatus, showed that electron transfer pathways consist of two nearly symmetric branches of cofactors converging at the first iron sulfur cluster FX, which is followed by two terminal iron sulfur clusters FA and FB. Experiments have shown that Fx has lower oxidation potential than FA and FB, which facilitate the electron transfer reaction. Here, we use Density Functional Theory and Multi-Conformer Continuum Electrostatics to explain the differences in the midpoint Em potentials of the Fx, FA and FB clusters. Our calculations show that Fx has the lowest oxidation potential compared to FA and FB due strong pair-wise electrostatic interactions with surrounding residues. These interactions are shown to dominated by the bridging sulfurs and cysteine ligands, which may be attributed to the shorter average bond distances between the oxidized Fe ion and ligating sulfurs for FX compared to FA and FB. Moreover, the electrostatic repulsion between the 4Fe-4S clusters and the positive potential of the backbone atoms is least for FX compared to both of FA and FB. These results agree with the experimental measurements from the redox titrations of low-temperature EPR signals and of room temperature recombination kinetics.

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