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Stabilizing factors of the molecular structure in silicon-based peptidomimetics in gas-phase and water solution. Assessment of the correlation between different descriptors of hydrogen bond strength

机译:气相和水溶液中硅基拟肽分子结构的稳定因子。评估氢键强度不同描述子之间的相关性

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The use of DFT (B3LYP and M06L) and ab initio (MP2) computational methods allowed us to perform a thorough conformational study of N-[dihydroxy (methyl)silyl]methylformamide (DHSF) and 3-[dihydroxy (methyl) silyl] propanamide (DHSP), that could be considered simplified models of the environment of the silanediol group in silicon gem-diols that have proven efficiency as protease inhibitors. We have found a total of 13 molecular conformations that represent minima in the potential energy surfaces of DHSF (six conformers) and DHSP (seven conformers). The key feature in their molecular structure is the occurrence of intramolecular hydrogen bonding between the hydroxyl and aminocarbonyl groups. We have estimated the strength of each individual hydrogen bond in the mentioned species using the descriptors proposed by three different methodologies, i.e., the quantum theory of atoms in molecules (QTAIM), the natural bond orbitals population analysis (NBO), and the so-called empirical Rozenberg's enthalpy-distance relationship. We have found a good correlation among the calculated values for the different descriptors within the whole set of conformers in the molecular systems in this study. We have also discussed the predicted order of stabilities of the different conformers of each species in terms of the so-called ring anomeric effect (RAE) and generalized anomeric effect (GAE). Finally, we also analyzed the discrepancies found in the order of stability when going from the isolated molecule approximation to water solution (PCM).
机译:使用DFT(B3LYP和M06L)和从头算(MP2)计算方法使我们能够对N- [二羟基(甲基)甲硅烷基]甲基甲酰胺(DHSF)和3- [二羟基(甲基)甲硅烷基]丙酰胺进行彻底的构象研究(DHSP),可以认为是已证明具有蛋白酶抑制剂功效的硅宝石二醇中硅烷二醇基团环境的简化模型。我们已经发现总共13个分子构象,它们代表DHSF(六个构象异构体)和DHSP(七个构象异构体)的势能面中的最小值。它们的分子结构中的关键特征是在羟基和氨基羰基之间存在分子内氢键。我们使用三种不同方法提出的描述子,对上述物种中每个氢键的强度进行了估算,这些方法是分子中的原子量子理论(QTAIM),自然键轨道种群分析(NBO)以及称为经验罗森伯格的焓-距离关系。在这项研究中,我们发现分子构象的整个构象集中不同描述符的计算值之间具有良好的相关性。我们还讨论了根据所谓的环异头作用(RAE)和广义异头作用(GAE),每种物种不同构象体的预测稳定性顺序。最后,我们还分析了从分离的分子近似到水溶液(PCM)时按稳定性顺序发现的差异。

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