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低能电子与褪黑素及相关化合物的相互作用。

Low-Energy Electron Interaction with Melatonin and Related Compounds.

作者信息

Pshenichnyuk Stanislav A, Modelli Alberto, Jones Derek, Lazneva Eleonora F, Komolov Alexei S

机构信息

Institute of Molecule and Crystal Physics, Ufa Research Centre, Russian Academy of Sciences , Prospeκt Oktyabrya 151, 450075 Ufa, Russia.

St. Petersburg State University , Universitetskaya nab. 7/9, 199034 St. Petersburg, Russia.

出版信息

J Phys Chem B. 2017 Apr 27;121(16):3965-3974. doi: 10.1021/acs.jpcb.7b01408. Epub 2017 Apr 13.

Abstract

The electron attaching properties and fragmentation of temporary negative ions of melatonin and its biosynthetic precursor tryptophan are studied in vacuo using dissociative electron attachment (DEA) spectroscopy. The experimental findings are interpreted in silico with the support of Hartree-Fock and density functional theory calculations of empty orbital energies and symmetries, and evaluation of the electron affinities of the indolic molecules under investigation. The only fragment anions formed by DEA to melatonin at incident electron energies below 2 eV are associated with the elimination of a hydrogen atom (energetically favored from the NH site of the pyrrole ring, leaving the ring intact) or a CH radical from the temporary molecular negative ion. Opening of the pyrrole ring of melatonin is not detected over the whole electron energy range of 0-14 eV. The DEA spectra of l- and d-tryptophan are almost identical under the present experimental conditions. The adiabatic electron affinity of melatonin is predicted to be -0.49 eV at the B3LYP/6-31+G(d) level, indicating that the DEA mechanism in melatonin is likely to be present in most life forms given the availability of low energy electrons in living systems in both plant and animal kingdoms. In particular, H atom donation usually associated with free-radical scavenging activity can be stimulated by electron attachment and N-H bond cleavage at electron energies around 1 eV.

摘要

利用解离电子附着(DEA)光谱法在真空中研究了褪黑素及其生物合成前体色氨酸的临时负离子的电子附着特性和碎片化过程。在Hartree-Fock和密度泛函理论对空轨道能量和对称性的计算以及对所研究的吲哚类分子电子亲和势评估的支持下,对实验结果进行了计算机模拟解释。在入射电子能量低于2 eV时,DEA作用于褪黑素形成的唯一碎片阴离子与从临时分子负离子中消除一个氢原子(在吡咯环的NH位点上能量上更有利,使环保持完整)或一个CH自由基有关。在0 - 14 eV的整个电子能量范围内未检测到褪黑素吡咯环的开环。在当前实验条件下,l - 色氨酸和d - 色氨酸的DEA光谱几乎相同。在B3LYP/6 - 31 + G(d)水平下,预测褪黑素的绝热电子亲和势为 - 0.49 eV,这表明鉴于动植物界生命系统中存在低能电子,褪黑素中的DEA机制可能存在于大多数生命形式中。特别是,通常与自由基清除活性相关的H原子供体可以通过电子附着以及在电子能量约为1 eV时的N - H键断裂来激发。

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