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Photoadduct Formation from the FMN Singlet Excited State in the LOV2 Domain of Chlamydomonas reinhardtii Phototropin

机译:莱茵衣藻光蛋白LOV2结构域中FMN单重态激发态的光加合物形成。

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摘要

The two light, oxygen, and voltage domains of phototropin are blue-light photoreceptor domains that control various functions in plants and green algae. The key step of the light-driven reaction is the formation of a photoadduct between its FMN chromophore and a conserved cysteine, where the canonical reaction proceeds through the FMN triplet state. Here, complete photoreaction mapping of CrLOV2 from Chlamydomonas reinhardtii phototropin and AsLOV2 from Avena sativa phototropin-1 was realized by ultrafast broadband spectroscopy from femtoseconds to microseconds. We demonstrate that in CrLOV2, a direct photoadduct formation channel originates from the initially excited singlet state, in addition to the canonical reaction through the triplet state. This direct photoadduct reaction is coupled by a proton or hydrogen transfer process, as indicated by a significant kinetic isotope effect of 1.4 on the fluorescence lifetime. Kinetic model analyses showed that 38% of the photoadducts are generated from the singlet excited state.
机译:肌钙蛋白的两个光,氧和电压域是控制植物和绿藻中各种功能的蓝光感光域。光驱动反应的关键步骤是在其FMN发色团和保守的半胱氨酸之间形成光加合物,其中规范反应通过FMN三重态进行。在这里,通过飞秒到微秒的超快速宽带光谱分析,实现了对莱茵衣藻光蛋白的CrLOV2和Avena sativa phototropin-1的AsLOV2的完整光反应作图。我们证明,在CrLOV2中,除了通过三重态的规范反应外,直接的光加合物形成通道还来自最初激发的单重态。这种直接的光加合物反应通过质子或氢转移过程耦合,如1.4对荧光寿命的显着动力学同位素效应所示。动力学模型分析表明,38%的光加合物由单重激发态产生。

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