Institute of Biotechnology of the Czech Academy of Sciences, 25250 Vestec, Czech Republic.
ELI Beamlines Facility Extreme Light Infrastructure ERIC, 25241 Dolni Brezany, Czech Republic.
Biomolecules. 2023 Jan 12;13(1):161. doi: 10.3390/biom13010161.
Time-resolved femtosecond-stimulated Raman spectroscopy (FSRS) provides valuable information on the structural dynamics of biomolecules. However, FSRS has been applied mainly up to the nanoseconds regime and above 700 cm, which covers only part of the spectrum of biologically relevant time scales and Raman shifts. Here we report on a broadband (~200-2200 cm) dual transient visible absorption (visTA)/FSRS set-up that can accommodate time delays from a few femtoseconds to several hundreds of microseconds after illumination with an actinic pump. The extended time scale and wavenumber range allowed us to monitor the complete excited-state dynamics of the biological chromophore flavin mononucleotide (FMN), both free in solution and embedded in two variants of the bacterial light-oxygen-voltage (LOV) photoreceptor EL222. The observed lifetimes and intermediate states (singlet, triplet, and adduct) are in agreement with previous time-resolved infrared spectroscopy experiments. Importantly, we found evidence for additional dynamical events, particularly upon analysis of the low-frequency Raman region below 1000 cm. We show that fs-to-sub-ms visTA/FSRS with a broad wavenumber range is a useful tool to characterize short-lived conformationally excited states in flavoproteins and potentially other light-responsive proteins.
时间分辨飞秒受激拉曼光谱(FSRS)提供了关于生物分子结构动力学的有价值的信息。然而,FSRS 主要应用于纳秒级以上和 700 cm 以上的范围,这只涵盖了生物相关时间尺度和拉曼位移的部分光谱。在这里,我们报告了一种宽带(~200-2200 cm)双瞬态可见吸收(visTA)/FSRS 装置,该装置可以在光照后的几个飞秒到几百微秒的时间延迟内进行测量。扩展的时间尺度和波数范围使我们能够监测生物发色团黄素单核苷酸(FMN)的完整激发态动力学,无论是在溶液中自由存在还是嵌入两种细菌光氧电压(LOV)光受体 EL222 的变体中。观察到的寿命和中间状态(单重态、三重态和加合物)与以前的时间分辨红外光谱实验一致。重要的是,我们发现了额外动态事件的证据,特别是在低于 1000 cm 的低频拉曼区域的分析中。我们表明,具有宽波数范围的 fs 到亚毫秒级 visTA/FSRS 是一种有用的工具,可用于表征短寿命构象激发态的黄素蛋白和潜在的其他光响应蛋白。