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Computational approaches in modeling spectra of biological chromophores

机译:生物生色团光谱建模的计算方法

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摘要

Computational approaches to describe optical spectra of biological chromophores in proteins, in solutions and in the gas phase are discussed. Recently, accurate measurements of spectral properties for the series of chromophores in different media allowed the authors to estimate the positions of the bands with a high accuracy and to challenge theoreticians by stating that the measured S_0-S_1 transition wavelengths may be used as new benchmark values for the theory. The novel computational approaches based on the multiconfigurational quasidegenerate perturbation theory present the practical means how to adapt the high level methodology for calculations of accurate excitation energies in large biological chromophores. The theory is illustrated for a series of model compounds for which experimental data are available: the retinal molecule in the protonated Shiff-base form, the chromophores from the Green Fluorescent Protein family including the kindling protein asFP595, and the chromophore from the BLUF domain containing photoreceptor proteins.
机译:讨论了描述蛋白质,溶液和气相中生物发色团光谱的计算方法。最近,在不同介质中一系列发色团的光谱性质的准确测量,使作者能够高精度地估计谱带的位置,并通过指出测得的S_0-S_1跃迁波长可以用作新的基准值来挑战理论家。对于理论。基于多构型准生成微扰理论的新颖计算方法提出了一种实用的方法,该方法适用于高级方法来计算大型生物发色团中的精确激发能。说明了可用于实验数据的一系列模型化合物的理论:质子化的Shiff碱基形式的视网膜分子,绿色荧光蛋白家族的发色团(包括点燃蛋白asFP595)和BLUF结构域的发色团感光蛋白。

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