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Primary photochemistry and photoisomerization of retinal at 77 degrees K in cattle and squid rhodopsins.

机译:牛和鱿鱼视紫红质在77度K处视网膜的主要光化学和光异构化。

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摘要

The relative quantum yields of the photoreactions Rhodopsin in equilibrium Bathorhodopsin in equilibrium Isorhodopsin over an extended wavelength region have been determined in cattle and squid rhodopsins at 77 degrees K. The quantum yields were found to be wavelength independent and unchanged for samples suspended in D2O. The rhodopsin-bathorhodopsin forward and backward quantum yields sum to larger than one. These results are consistent with the previous suggestion that the excited singlet potential of rhodopsin has a single minimum along the 11-12 torsional coordinate. The values of the quantum yields are important for evaluating dynamic models of the rhodopsin-bathorhodopsin transition. We conclude that equilibration in the common excited state afer excitation of rhodopsin, as previously suggested, does not occur. Models involving molecular excitation trajectories conserving torsional momenta and excited state to ground state surface crossings better fit the data, and a semiquantitative analysis is presented. Probabilities of surface crossings are calculated.
机译:已经确定了牛和鱿鱼视紫红质在77度K下在扩展波长区域内平衡的视紫红质在平衡的异视紫红质中的光反应视紫红质的相对量子产率。发现该量子产率与波长无关,对于悬浮在D2O中的样品而言,其量子产率是不变的。视紫红质-视紫红质的正向和反向量子产率之和大于一。这些结果与以前的观点一致,即视紫红质的激发单重态电势沿11-12扭转坐标具有一个最小值。量子产率的值对于评估视紫红质-视紫红质转变的动力学模型很重要。我们得出结论,视紫红质激发后,在普通激发态下的平衡不会发生,如先前所建议的。涉及分子激励轨迹的模型能够保持扭转力矩和激发态至基态表面的交叉点,从而更好地拟合了数据,并进行了半定量分析。计算出表面交叉的概率。

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