Cembran Alessandro, Bernardi Fernando, Olivucci Massimo, Garavelli Marco
Dipartimento di Chimica G. Ciamician, Università di Bologna, via Selmi 2, Bologna, I-40126 Italy.
J Am Chem Soc. 2004 Dec 15;126(49):16018-37. doi: 10.1021/ja048782+.
CASPT2//CASSCF photoisomerization path computations have been used to unveil the effects of an acetate counterion on the photochemistry of two retinal protonated Schiff base (PSB) models: the 2-cis-penta-2,4-dieniminium and the all-trans-epta-2,4,6-trieniminium cations. Different positions/orientations of the counterion have been investigated and related to (i) the spectral tuning and relative stability of the S0, S1, and S2 singlet states; (ii) the selection of the photochemically relevant excited state; (iii) the control of the radiationless decay and photoisomerization rates; and, finally, (iv) the control of the photoisomerization stereospecificity. A rationale for the results is given on the basis of a simple (electrostatic) qualitative model. We show that the model readily explains the computational results providing a qualitative explanation for different aspects of the experimentally observed "environment" dependent PSB photochemistry. Electrostatic effects likely involved in controlling retinal photoisomerization stereoselectivity in the protein are also discussed under the light of these results, and clues for a stereocontrolled electrostatically driven photochemical process are presented. These computations provide a rational basis for the formulation of a mechanistic model for photoisomerization electrostatic catalysis.
CASPT2//CASSCF光异构化路径计算已被用于揭示醋酸根抗衡离子对两种视网膜质子化席夫碱(PSB)模型光化学的影响:2-顺式-戊-2,4-二烯亚胺离子和全反式-庚-2,4,6-三烯亚胺离子。已研究了抗衡离子的不同位置/取向,并将其与(i)S0、S1和S2单重态的光谱调谐和相对稳定性;(ii)光化学相关激发态的选择;(iii)无辐射衰变和光异构化速率的控制;以及最后(iv)光异构化立体特异性的控制相关联。基于一个简单的(静电)定性模型给出了结果的原理。我们表明该模型很容易解释计算结果,为实验观察到的“环境”依赖性PSB光化学的不同方面提供了定性解释。还根据这些结果讨论了可能参与控制蛋白质中视网膜光异构化立体选择性的静电效应,并提出了立体控制的静电驱动光化学过程的线索。这些计算为光异构化静电催化机理模型的制定提供了合理依据。