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Theoretical Studies on the Electronic Structure Parameters and Reactive Activity of Neu5Gc and Neu5Ac under Food Processing Solvent Environment

机译:食品加工溶剂环境下Neu5Gc和Neu5Ac的电子结构参数和反应活性的理论研究

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摘要

The animal product hazard factor N-glycolylneuraminic (Neu5Gc) and brain nutrient substance N-acetylneuraminic acid (Neu5Ac) were studied at the M062X/6-311 + G(d,p) geometry optimization level. We considered the electronic structure parameters with different solvents: (benzene ε = 2.27, acetic acid ε = 6.25, ethanol ε = 24.85, lactic acid ε = 22.00, formic acid ε = 51.1, water ε = 78.35). The maximum molecular surface electrostatic potentials, which were 62.77 for Neu5Gc and 60.90 kcal/mol for Neu5Ac, are both located on the carboxyl group hydrogen. The orbital analysis showed that the amide group and carboxyl group confer the sites with susceptibility to nucleophilic and electrophilic attack, respectively. The solvent effect showed that polar solvents, such as formic acid and water, can enhance the two molecules’ nucleophilic activity. To better understand the roles of the hydroxyl group in the two molecules, the independent gradient model theory confirmed the four intramolecular hydrogen bonds of Neu5Gc at gas phase, whereas Neu5Ac only has two. The lowest bond dissociation energy in solvent occurs at O7-H, which is 104.03 kcal/mol in water for Neu5Gc and 104.57 kcal/mol in lactic acid for Neu5Ac. The lowest proton affinity value for Neu5Gc (20.34 kcal/mol) and Neu5Ac (20.76 kcal/mol) was both occur at the carboxyl group O6-H under ethanol. The antioxidant mechanisms of the two sialic acid are prone to sequential proton-loss electron transfer under polar or non-polar solvents.
机译:在M062X / 6-311 + G(d,p)几何优化水平下研究了动物产品危害因子N-羟乙酰神经氨酸(Neu5Gc)和脑营养物质N-乙酰神经氨酸(Neu5Ac)。我们考虑了不同溶剂的电子结构参数:(苯ε= 2.27,乙酸ε= 6.25,乙醇ε= 24.85,乳酸ε= 22.00,甲酸ε= 51.1,水ε= 78.35)。最大分子表面静电势(位于Neu5Gc处为62.77,对于Neu5Ac为60.90 kcal / mol)均位于羧基氢上。轨道分析表明,酰胺基和羧基分别使这些位点易受亲核和亲电攻击。溶剂效应表明,极性溶剂(例如甲酸和水)可以增强两个分子的亲核活性。为了更好地理解两个分子中羟基的作用,独立梯度模型理论确定了Neu5Gc在气相中的四个分子内氢键,而Neu5Ac只有两个。溶剂中的最低键解离能发生在O7-H处,对于Neu5Gc,在水中为104.03 kcal / mol;对于Neu5Ac,在乳酸中为104.57 kcal / mol。 Neu5Gc(20.34 kcal / mol)和Neu5Ac(20.76 kcal / mol)的最低质子亲和力值均发生在乙醇中的羧基O6-H处。两种唾液酸的抗氧化机理在极性或非极性溶剂下都容易发生连续的质子损失电子转移。

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