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磁场对细菌光合作用中自由基对中间体的影响。

Magnetic field effects on radical pair intermediates in bacterial photosynthesis.

作者信息

Blankenship R E, Schaafsma T J, Parson W W

出版信息

Biochim Biophys Acta. 1977 Aug 10;461(2):297-305. doi: 10.1016/0005-2728(77)90179-7.

Abstract

We have investigated the effects of magnetic fields on the formation and decay of excited states in the photochemical reaction centers of Rhodopseudomonae sphaeroides. In chemically reduced reaction centers, a magnetic field decreases the fraction of the transient state PF that decays by way of the bacteriochlorophyll triplet state PR. At room temperature, a 2-kG field decreases the quantum yield of Pr by about 40%. In carotenoid-containing reaction centers, the yield of the carotenoid triplet state which forms via PR is reduced similarly. The effect of the field depends monotonically on field-strength, saturating at about 1 kG. The effect decreases at lower temperatures, when the yield of PR is higher. Magnetic fields do not significantly affect the formation of the triplet state of bacteriochlorophyll in vitro, the photooxidation of P870 in reaction centers at moderate redox potential, or the decay kinetics of states PF and PR. The effect of magnetic fields support in view that state PF is a radical pair which is born in a singlet state but undergoes a rapid transformation into a mixture of singlet and triplet states. A simple kinetic model can account for the effects of the field and relate them to the temperature dependence of the yield of PR.

摘要

我们研究了磁场对球形红假单胞菌光化学反应中心激发态形成和衰减的影响。在化学还原的反应中心,磁场降低了通过细菌叶绿素三重态PR衰减的瞬态PF的比例。在室温下,2千高斯的磁场使Pr的量子产率降低约40%。在含类胡萝卜素的反应中心,通过PR形成的类胡萝卜素三重态的产率也有类似降低。磁场的影响单调依赖于场强,在约1千高斯时达到饱和。当温度较低且PR产率较高时,这种影响会减弱。磁场对体外细菌叶绿素三重态的形成、中等氧化还原电位下反应中心中P870的光氧化或状态PF和PR的衰减动力学没有显著影响。鉴于状态PF是一个自由基对,它以单重态产生,但会迅速转变为单重态和三重态的混合物,磁场的影响支持了这一观点。一个简单的动力学模型可以解释磁场的影响,并将它们与PR产率的温度依赖性联系起来。

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