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Retinal shows its true colours: photoisomerization action spectra of mobility-selected isomers of the retinal protonated Schiff base

机译:视网膜显示其真实颜色:视网膜质子化席夫碱的迁移率选择异构体的光致异构化作用光谱

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摘要

Retinal is one of Nature's most important and widespread chromophores, exhibiting remarkable versatility in its function and spectral response, depending on its protein environment. Reliable spectroscopic and photochemical data for the isolated retinal molecule are essential for calibrating theoretical approaches that seek to model retinal's behaviour in complex protein environments. However, due to low densities and possible co-existence of multiple isomers, retinal is a challenging target for gas-phase investigations. Here, the photoisomerization behaviour of the trans isomer of the retinal protonated Schiff base (RPSB) is investigated in the gas phase by irradiating mobility-selected RPSB ions with tunable light in a tandem ion mobility spectrometer. trans RPSB ions are converted to single cis isomers and also more compact isomers through irradiation with visible light. The S1← S0 photoisomerization action spectrum of trans RPSB, obtained by monitoring production of cis isomers as a function of wavelength, exhibits a single well-defined peak with a maximum at 618 ± 5 nm. Corresponding action spectra of cis RPSB isomers exhibit broader peaks, conclusively demonstrating an isomeric dependence for the RPSB spectrum in the gas phase.
机译:视网膜是自然界中最重要和最广泛的发色团之一,视其蛋白质环境而定,其功能和光谱响应表现出卓越的多功能性。分离出的视网膜分子的可靠光谱和光化学数据对于校准理论模型至关重要,这些理论方法试图对复杂蛋白质环境中的视网膜行为进行建模。然而,由于低密度和多种异构体可能共存,视网膜是气相研究的一个挑战性目标。在此,通过在串联离子迁移谱仪中用可调光照射迁移率选择的RPSB离子,在气相中研究了视网膜质子化席夫碱(RPSB)的反式异构体的光异构行为。反式RPSB离子通过可见光照射转化为单一的顺式异构体,也转化为更紧密的异构体。反式RPSB的S1←S0光异构化作用谱是通过监测顺式异构体的生成与波长的关系而获得的,它显示出一个明确定义的峰,最大峰在618±5 nm。顺式RPSB异构体的相应作用光谱显示出较宽的峰,最终证明了气相中RPSB光谱的异构体依赖性。

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