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芳香族神经毒物显色效应中发色团的理论测定

Theoretical determination of chromophores in the chromogenic effects of aromatic neurotoxicants.

作者信息

Zhan Chang-Guo, Dixon David A, Sabri Mohammad I, Kim Min-Sun, Spencer Peter S

机构信息

Theory, Modeling & Simulation, William R. Wiley Environmental Molecular Sciences Laboratory, Pacific Northwest National Laboratory, MS K1-83, P.O. Box 999, Richland, WA 99352, USA.

出版信息

J Am Chem Soc. 2002 Mar 20;124(11):2744-52. doi: 10.1021/ja0113394.

Abstract

We report the first computational study of the chromophores responsible for the chromogenic effects of aromatic neurotoxicants containing a 1,2-diacetyl moiety in their oxidation metabolites. A series of ab initio electronic structure calculations was performed on two representative aromatic compounds, 1,2-diacetylbenzene (1,2-DAB) and 1,2-diacetyl tetramethyl tetralin (1,2-DATT), the putative active metabolites of the neurotoxic aromatic hydrocarbon compounds 1,2-diethylbenzene (1,2-DEB) and acetyl ethyl tetramethyl tetralin (AETT), and on the products of their possible reactions with proteins that result in chromogenic effects. The electronic excitation energies determined by three different computational approaches were found to be consistent with each other. The calculated results are consistent with the conclusion/prediction that the chromogenic effects of 1,2-DAB (or 1,2-DEB) and 1,2-DATT (or AETT) could result from ninhydrin-like reactions, rather than the formation of pyrrole-like compounds. Our pK(a) calculations further indicate that the chromophore, i.e., the product of the ninhydrin-like reaction showing the blue color, is deprotonated in neutral aqueous solution. The corresponding protonated structure has a different color as it absorbs in the blue region of the visible spectrum, and its chromogenic contribution would be significant in solution at low pH.

摘要

我们报告了对氧化代谢物中含有1,2 - 二乙酰基部分的芳香族神经毒物的发色效应所涉及的发色团进行的首次计算研究。对两种代表性芳香族化合物,即1,2 - 二乙酰基苯(1,2 - DAB)和1,2 - 二乙酰基四甲基四氢化萘(1,2 - DATT),以及神经毒性芳香烃化合物1,2 - 二乙苯(1,2 - DEB)和乙酰基乙基四甲基四氢化萘(AETT)的假定活性代谢物,及其与蛋白质可能发生的导致发色效应的反应产物进行了一系列从头算电子结构计算。通过三种不同计算方法确定的电子激发能相互一致。计算结果与1,2 - DAB(或1,2 - DEB)和1,2 - DATT(或AETT)的发色效应可能源于茚三酮样反应而非吡咯样化合物形成的结论/预测相符。我们的pK(a)计算进一步表明,发色团,即显示蓝色的茚三酮样反应产物,在中性水溶液中是去质子化的。相应的质子化结构具有不同颜色,因为它在可见光谱的蓝色区域吸收,并且其发色贡献在低pH值的溶液中会很显著。

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