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A theoretical study of medium effects on the structure of the glycine analogue aminomethylphosphonic acid

机译:介质对甘氨酸类似物氨基甲基膦酸结构影响的理论研究

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α-Aminophosphonic acids are analogues of natural α-aminoacids and very promising agents for use in various pharmaceutical applications. However, in contrast to the numerous theoretical investigations on the structure of natural α-aminoacids, only very few studies on α-aminophosphonic acids have been performed. In the present work, we report a detailed investigation of the simplest compound, the glycine analogue aminomethylphosphonic acid (AMPA), by means of quantum mechanical calculations at the B3LYP/6-311 + + G(3df,2p)// B3LYP/6-31 + G(d,p) and MP2/6-311+ +G(3df,2p)//B3LYP/6-31 + G(d,p) levels. We focus on the structure of the neutral species looking at the evolution of non-ionized and ionized forms from gas phase to non-polar solvents and aqueous media. Continuum and discrete-continuum solvent models have been employed to account for the effects of the environment. The discussion is centered on: (1) the geometry and relative stability of possible conformers in gas phase and aqueous solution, (2) the free energy of tautomerization in different media, (3) the role of hydrogen bonds in liquid water, and (4) the free energy of transfer from water to a hydrophobic solvent such as cyclohexane. Systematic comparison between AMPA and Gly is performed. Though both systems exhibit many similarities, some important differences have also been found that may be explained, at least in part, by the higher acidity of phosphonic acids compared to carboxylic acids. In particular, in solvents lacking hydrogen-bond formation capability, Gly derivatives should mainly exist as non-ionized molecules while the equivalent AMPA derivatives should adopt a zwitterionic structure in media with dielectric constant above 10. This might have significant environmental or biological consequences that will need to be addressed.
机译:α-氨基膦酸是天然α-氨基酸的类似物,是非常有前途的试剂,可用于各种制药应用。然而,与对天然α-氨基酸的结构的大量理论研究相反,仅对α-氨基膦酸进行的研究很少。在目前的工作中,我们通过B3LYP / 6-311 + + G(3df,2p)// B3LYP / 6的量子力学计算,报告了最简单的化合物甘氨酸类似物氨基甲基膦酸(AMPA)的详细研究。 -31 + G(d,p)和MP2 / 6-311 + + G(3df,2p)// B3LYP / 6-31 + G(d,p)水平。我们着眼于中性物种的结构,着眼于非离子化和离子化形式从气相向非极性溶剂和水性介质的演变。连续体和离散连续体溶剂模型已用于考虑环境的影响。讨论的重点是:(1)气相和水溶液中可能构象异构体的几何形状和相对稳定性;(2)在不同介质中互变异构的自由能;(3)液态水中氢键的作用;以及( 4)从水转移到疏水溶剂(例如环己烷)的自由能。在AMPA和Gly之间进行了系统比较。尽管两个系统都显示出许多相似之处,但也发现了一些重要的差异,至少部分地可以通过与羧酸相比,膦酸的更高酸度来解释。特别是在缺乏氢键形成能力的溶剂中,Gly衍生物应主要以非电离分子形式存在,而等效的AMPA衍生物应在介电常数大于10的介质中采用两性离子结构。这可能会产生重大的环境或生物学后果,需要解决。

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