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嵌入聚乙烯醇薄膜中的光合反应中心的电子转移动力学。

Electron transfer kinetics in photosynthetic reaction centers embedded in polyvinyl alcohol films.

作者信息

Francia Francesco, Giachini Lisa, Palazzo Gerardo, Mallardi Antonia, Boscherini Federico, Venturoli Giovanni

机构信息

Laboratorio di Biochimica e Biofisica, Dipartimento di Biologia, Università di Bologna, 40126 Bologna, Italy.

出版信息

Bioelectrochemistry. 2004 Jun;63(1-2):73-7. doi: 10.1016/j.bioelechem.2003.09.015.

Abstract

The coupling between electron transfer and protein dynamics has been studied at room temperature in isolated reaction centers (RCs) from the photosynthetic bacterium Rhodobacter sphaeroides by incorporating the protein in polyvinyl alcohol (PVA) films of different water/RC ratios. The kinetic analysis of charge recombination shows that dehydration of RC-containing PVA films causes reversible, inhomogeneous inhibition of electron transfer from the reduced primary quinone acceptor (Q(A)(-)) to the secondary quinone Q(B). A more extensive dehydration of solid PVA matrices accelerates electron transfer from Q(A)(-) to the primary photooxidized electron donor P(+). These effects indicate that incorporation of RCs into dehydrated PVA films hinders the conformational dynamics gating Q(A)(-) to Q(B) electron transfer at room temperature and slows down protein relaxation which stabilizes the primary charge-separated state P(+)Q(A)(-). A comparison with analogous effects observed in trehalose-coated RCs suggests that protein motions are less severely reduced in PVA films than in trehalose matrices at comparable water/RC ratios.

摘要

通过将蛋白质掺入不同水/反应中心(RC)比例的聚乙烯醇(PVA)薄膜中,在室温下对来自光合细菌球形红杆菌的分离反应中心(RC)中电子转移与蛋白质动力学之间的耦合进行了研究。电荷复合的动力学分析表明,含RC的PVA薄膜脱水会导致从还原的初级醌受体(QA-)到次级醌QB的电子转移出现可逆的、不均匀的抑制。固体PVA基质更广泛的脱水会加速电子从QA-转移到初级光氧化电子供体P+。这些效应表明,将RC掺入脱水的PVA薄膜中会在室温下阻碍QA-到QB电子转移的构象动力学门控,并减缓稳定初级电荷分离态P+QA-的蛋白质弛豫。与在海藻糖包被的RC中观察到的类似效应的比较表明,在可比的水/RC比例下,PVA薄膜中蛋白质运动的减少程度比海藻糖基质中的要小。

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