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Sub-millitesla magnetic field effects on the recombination reaction of flavin and ascorbic acid radicals

机译:亚毫磁场对黄素和抗坏血酸基团重组反应的影响

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Even though the interaction of a <1 mT magnetic field with an electron spin is less than a millionth of the thermal energy at room temperature (k(B)T), it still can have a profound effect on the quantum yields of radical pair reactions. We present a study of the effects of sub-millitesla magnetic fields on the photoreaction of flavin mononucleotide with ascorbic acid. Direct control of the reaction pathway is achieved by varying the rate of electron transfer from ascorbic acid to the photo-excited flavin. At pH 7.0, we verify the theoretical prediction that, apart from a sign change, the form of the magnetic field effect is independent of the initial spin configuration of the radical pair. The data agree well with model calculations based on a Green's function approach that allows multinuclear spin systems to be treated including the diffusive motion of the radicals, their spin-selective recombination reactions, and the effects of the inter-radical exchange interaction. The protonation states of the radicals are uniquely determined from the form of the magnetic field-dependence. At pH 3.0, the effects of two chemically distinct radical pair complexes combine to produce a pronounced response to similar to 500 mu T magnetic fields. These findings are relevant to the magnetic responses of cryptochromes (flavin-containing proteins proposed as magnetoreceptors in birds) and may aid the evaluation of effects of weak magnetic fields on other biologically relevant electron transfer processes. Published by AIP Publishing.
机译:即使<1 mT磁场与电子自旋的相互作用小于室温下的热能(k(B)T)的百万分之一,它仍然可以对自由基对反应的量子产率产生深远影响。我们目前对亚毫微特斯拉磁场对黄素单核苷酸与抗坏血酸的光反应的影响进行研究。通过改变从抗坏血酸到光激发黄素的电子转移速率,可以直接控制反应路径。在pH 7.0下,我们验证了理论预测,即除符号变化外,磁场效应的形式与自由基对的初始自旋构型无关。数据与基于格林函数方法的模型计算非常吻合,该方法允许处理多核自旋系统,包括自由基的扩散运动,其自旋选择重组反应以及自由基间交换相互作用的影响。自由基的质子化状态由磁场依赖性的形式唯一地确定。在pH 3.0时,两种化学上不同的自由基对配合物的作用结合在一起,产生了对类似于500μT磁场的明显响应。这些发现与隐色染料(拟作禽类磁受体的含黄素的蛋白质)的磁响应有关,并且可能有助于评估弱磁场对其他生物学相关的电子转移过程的影响。由AIP Publishing发布。

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