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光适应型和突变型AppA蓝光感应结构域中的电子转移猝灭

Electron transfer quenching in light adapted and mutant forms of the AppA BLUF domain.

作者信息

Laptenok Sergey P, Lukacs Andras, Brust Richard, Haigney Allison, Gil Agnieszka, Towrie Michael, Greetham Gregory M, Tonge Peter J, Meech Stephen R

机构信息

School of Chemistry, University of East Anglia, Norwich NR4 7TJ, UK.

出版信息

Faraday Discuss. 2015;177:293-311. doi: 10.1039/c4fd00189c.

Abstract

The Blue Light Using Flavin (BLUF) domain proteins are an important family of photoreceptors controlling a range of responses in a wide variety of organisms. The details of the primary photochemical mechanism, by which light absorption in the isoalloxazine ring of the flavin is converted into a structure change to form the signalling state of the protein, is unresolved. In this work we apply ultrafast time resolved infra-red (TRIR) spectroscopy to investigate the primary photophysics of the BLUF domain of the protein AppA (AppABLUF) a light activated antirepressor. Here a number of mutations at Y21 and W104 in AppABLUF are investigated. The Y21 mutants are known to be photoinactive, while W104 mutants show the characteristic spectral red-shift associated with BLUF domain activity. Using TRIR we observed separately the decay of the excited state and the recovery of the ground state. In both cases the kinetics are found to be non-single exponential for all the proteins studied, suggesting a range of ground state structures. In the Y21 mutants an intermediate state was also observed, assigned to formation of the radical of the isoalloxazine (flavin) ring. The electron donor is the W104 residue. In contrast, no radical intermediates were detected in the studies of the photoactive dark adapted proteins, dAppABLUF and the dW104 mutants, suggesting a structure change in the Y21 mutants which favours W104 to isoalloxazine electron transfer. In contrast, in the light adapted form of the proteins (lAppABLUF, lW104) a radical intermediate was detected and the kinetics were greatly accelerated. In this case the electron donor was Y21 and major structural changes are associated with the enhanced quenching. In AppABLUF and the seven mutants studied radical intermediates are readily observed by TRIR spectroscopy, but there is no correlation with photoactivity. This suggests that if a charge separated state has a role in the BLUF photocycle it is only as a very short lived intermediate.

摘要

蓝光利用黄素(BLUF)结构域蛋白是一类重要的光感受器,可控制多种生物体中的一系列反应。黄素异咯嗪环中的光吸收如何转化为结构变化以形成蛋白质的信号状态,其初级光化学机制的细节尚未明确。在这项工作中,我们应用超快时间分辨红外(TRIR)光谱来研究光激活抗阻遏蛋白AppA的BLUF结构域(AppABLUF)的初级光物理过程。在此,我们研究了AppABLUF中Y21和W104位点的多个突变体。已知Y21突变体无光活性,而W104突变体表现出与BLUF结构域活性相关的特征光谱红移。利用TRIR,我们分别观察了激发态的衰减和基态的恢复。在这两种情况下,所有研究的蛋白质的动力学都不是单指数的,这表明存在一系列基态结构。在Y21突变体中还观察到一个中间态,它被认为是异咯嗪(黄素)环自由基的形成。电子供体是W104残基。相比之下,在光活性暗适应蛋白dAppABLUF和dW104突变体的研究中未检测到自由基中间体,这表明Y21突变体发生了结构变化,有利于W104向异咯嗪的电子转移。相反,在蛋白质的光适应形式(lAppABLUF、lW104)中检测到一个自由基中间体,并且动力学大大加快。在这种情况下,电子供体是Y21,主要的结构变化与增强的猝灭有关。在AppABLUF和所研究的七个突变体中,通过TRIR光谱很容易观察到自由基中间体,但与光活性没有相关性。这表明,如果电荷分离态在BLUF光循环中起作用,它只是一个非常短暂的中间体。

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