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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Electrostatic Protein-Chromophore Interactions Promote the all-trans->13-cis Isomerization of the Protonated Retinal Schiff Base in Bacteriorhodopsin:An ab Initio CASSCF/MRCI Study
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Electrostatic Protein-Chromophore Interactions Promote the all-trans->13-cis Isomerization of the Protonated Retinal Schiff Base in Bacteriorhodopsin:An ab Initio CASSCF/MRCI Study

机译:静电蛋白-生色团相互作用促进细菌视紫红质中质子化视网膜席夫碱的全反式-> 13-顺式异构化:从头算CASSCF / MRCI研究

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Ab initio calculations of the potential energy surfaces of the states So, S I, and' S2 of protonated Schiff base model molecules containing three, four, and five conjugated double bonds have been carried out at the HFI MRCI and CASSCF/MRCI levels of theory .Our calculations demonstrate that predictions of crossings of electronic states depend on the method of calculation and are different at the CASSCF and CASSCF/MRCI levels. Moreover, when a counterion is added in the vicinity of a protonated Schiff base, HF/MRCI and CASSCF/MRCI calculations predict ditferent regions for SrJSlcrossing. The length of the conjugated system seems not to affect such qualitative results considerably ..Our calculations suggest that (i) the second excited state is of no importance for the primary step of the photocycle of bacteriorhodopsin, (ii) an efficient decay into the electronic ground state during an all-trans.- l3-cis isomerization is only possible due to the interaction of the protonated Schiff base with a counterion, (iii) this isomerization reaction can occur spontaneously only after a preceding relaxation of bond lengths in the excited state, and (iv) an all-trans -l3,l4-di-cis double isomerization is most likely inefficient due to a non vanishing barrier in the excited state.
机译:在理论的HFI MRCI和CASSCF / MRCI水平上,已经进行了包含三个,四个和五个共轭双键的质子化席夫碱模型分子的状态So,S1和S2的势能面的从头计算。我们的计算表明,电子态交叉的预测取决于计算方法,并且在CASSCF和CASSCF / MRCI级别上有所不同。此外,当在质子化的席夫碱附近添加抗衡离子时,HF / MRCI和CASSCF / MRCI计算可预测SrJSlcrossing的不同区域。共轭体系的长度似乎不会显着影响此类定性结果。.我们的计算表明:(i)第二激发态对于细菌视紫红质的光循环的第一步并不重要,(ii)有效衰减到电子中全反式-l3-顺式异构化过程中的基态仅可能由于质子化席夫碱与抗衡离子的相互作用而产生。(iii)该异构化反应只有在激发态中键长事先松弛后才能自发发生(iv)由于在激发态下没有消失的势垒,所以全反式-1,3,14-二-顺式双异构化效率很低。

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