论文标题

水对生物学相关分子内部价位的放松的两侧影响

Two-Sided Impact of Water on the Relaxation of Inner-Valence Vacancies of Biologically Relevant Molecules

论文作者

Skitnevskaya, Anna D., Gokhberg, Kirill, Trofimov, Alexander B., Grigoricheva, Emma K., Kuleff, Alexander I., Cederbaum, Lorenz S.

论文摘要

在分子的内部价电子电离后,所得阳离子 - 自由基存储大量的内能,如果足够的话,可以触发在螺旋蛋白衰变中弹出附加电子的弹出,通常是分子碎片化。在环境中,分子间库仑衰减(ICD)和电子转移介导的衰减(ETMD)也是可操作的,导致从邻居弹出一个或两个电子,从而阻止了最初电离分子的碎片。理论上研究了这些松弛过程,用于咪唑,吡咯和吡啶的原型杂环 - 水复合物。发现水分子的氢键位点严重影响所涉及的电子状态的性质和能量学,打开或关闭内部价离子化系统的某些弛豫过程。我们的结果表明,在其碳原子上具有内部价位的生物学相关系统的弛豫机制在很大程度上取决于捐赠或接受邻居的存在,即水或其他生物分子。

After ionization of an inner-valence electron of molecules, the resulting cation-radicals store substantial internal energy which, if sufficient, can trigger ejection of an additional electron in an Auger decay usually followed by molecule fragmentation. In the environment, intermolecular Coulombic decay (ICD) and electron-transfer mediated decay (ETMD) are also operative, resulting in one or two electrons being ejected from a neighbor, thus preventing the fragmentation of the initially ionized molecule. These relaxation processes are investigated theoretically for prototypical heterocycle-water complexes of imidazole, pyrrole, and pyridine. It is found that the hydrogen-bonding site of the water molecule critically influences the nature and energetics of the electronic states involved, opening or closing certain relaxation processes of the inner-valence ionized system. Our results indicate that the relaxation mechanisms of biologically relevant systems with inner-valence vacancies on their carbon atoms can strongly depend on the presence of the electron-density donating or accepting neighbor, either water or another biomolecule.

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