Emanuel Institute of Biochemical Physics, Russian Academy of Sciences, Moscow, 119334, Russia.
Biochemistry (Mosc). 2010 Jan;75(1):25-35. doi: 10.1134/s0006297910010049.
The coherent 11-cis-retinal photoisomerization dynamics in bovine rhodopsin was studied by femtosecond time-resolved laser absorption spectroscopy at 30-fs resolution. Femtosecond pulses of 500, 535, and 560 nm wavelength were used for rhodopsin excitation to produce different initial Franck-Condon states and relevant distinct values of the vibrational energy of the molecule in its electron excited state. Time evolution of the photoinduced rhodopsin absorption spectra was monitored after femtosecond excitation in the spectral range of 400-720 nm. Oscillations of the time-resolved absorption signals of rhodopsin photoproducts represented by photorhodopsin(570) with vibrationally-excited all-trans-retinal and rhodopsin(498) in its initial state with vibrationally-excited 11-cis-retinal were studied. These oscillations reflect the dynamics of coherent vibrational wave-packets in the ground state of photoproducts. Fourier analysis of these oscillatory components has revealed frequencies, amplitudes, and initial phases of different vibrational modes, along which the motion of wave-packets of both photoproducts occurs. The main vibrational modes established are 62, 160 cm(-1) and 44, 142 cm(-1) for photorhodopsin(570) and for rhodopsin(498), respectively. These vibrational modes are directly involved in the coherent reaction under the study, and their amplitudes in the power spectrum obtained through the Fourier transform of the kinetic curves depend on the excitation wavelength of rhodopsin.
采用飞秒时间分辨激光吸收光谱技术,在 30fs 的分辨率下,研究了牛视紫红质中相干的 11-顺式-视黄醛光致异构化动力学。使用 500nm、535nm 和 560nm 的飞秒脉冲激发视紫红质,产生不同的初始 Franck-Condon 态和分子在其电子激发态中相关的不同振动能量值。在飞秒激发后,监测 400nm-720nm 光谱范围内的光诱导视紫红质吸收光谱的时间演化。以振动激发的全反式视黄醛和初始状态下振动激发的 11-顺式视黄醛的视紫红质(570)和视紫红质(498)为代表的光产物的时间分辨吸收信号的振荡进行了研究。这些振荡反映了光产物基态相干振动波包的动力学。对这些振荡分量进行傅里叶分析,揭示了不同振动模式的频率、幅度和初始相位,波包在这些模式中运动。确定的主要振动模式分别为 62cm(-1)、160cm(-1)和 44cm(-1)、142cm(-1),分别对应于光产物视紫红质(570)和视紫红质(498)。这些振动模式直接参与了所研究的相干反应,并且通过对动力学曲线进行傅里叶变换获得的功率谱中它们的幅度取决于视紫红质的激发波长。