Institute of Biotechnology of the Czech Academy of Sciences, BIOCEV, Průmyslová 595, CZ-252 50 Vestec, Czech Republic.
Phys Chem Chem Phys. 2020 Mar 28;22(12):6538-6552. doi: 10.1039/c9cp04918e. Epub 2020 Jan 29.
Flavin mononucleotide (FMN) belongs to the large family of flavins, ubiquitous yellow-coloured biological chromophores that contain an isoalloxazine ring system. As a cofactor in flavoproteins, it is found in various enzymes and photosensory receptors, like those featuring the light-oxygen-voltage (LOV) domain. The photocycle of FMN is triggered by blue light and proceeds via a cascade of intermediate states. In this work, we have studied isolated FMN in an aqueous solution in order to elucidate the intrinsic electronic and vibrational changes of the chromophore upon excitation. The ultrafast transitions of excited FMN were monitored through the joint use of femtosecond stimulated Raman spectroscopy (FSRS) and transient absorption spectroscopy encompassing a time window between 0 ps and 6 ns with 50 fs time resolution. Global analysis of the obtained transient visible absorption and transient Raman spectra in combination with extensive quantum chemistry calculations identified unambiguously the singlet and triplet FMN populations and addressed solvent dynamics effects. The good agreement between the experimental and theoretical spectra facilitated the assignment of electronic transitions and vibrations. Our results represent the first steps towards more complex experiments aimed at tracking structural changes of FMN embedded in light-inducible proteins upon photoexcitation.
黄素单核苷酸(FMN)属于黄素的大家族,是一种普遍存在的黄色生物色素,含有异咯嗪环系统。作为黄素蛋白的辅因子,它存在于各种酶和感光受体中,如具有光氧电压(LOV)结构域的受体。FMN 的光循环由蓝光触发,并通过一系列中间状态进行。在这项工作中,我们在水溶液中研究了分离的 FMN,以阐明发色团在激发时的固有电子和振动变化。通过联合使用飞秒受激拉曼光谱(FSRS)和瞬态吸收光谱,在 0 ps 到 6 ns 的时间窗口内以 50 fs 的时间分辨率监测激发 FMN 的超快跃迁。获得的瞬态可见吸收和瞬态拉曼光谱的全局分析与广泛的量子化学计算相结合,明确识别了单重态和三重态 FMN 种群,并解决了溶剂动力学效应。实验和理论光谱之间的良好一致性有助于电子跃迁和振动的归属。我们的结果代表了朝着更复杂的实验迈出的第一步,这些实验旨在跟踪光诱导蛋白中嵌入的 FMN 在光激发下的结构变化。