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对2-硫代黄嘌呤水合作用的从头算和AIM研究。

An ab initio and AIM investigation into the hydration of 2-thioxanthine.

作者信息

Yuan Xiu-Xiang, Wang Yan-Fang, Wang Xin, Chen Wenbo, Fossey John S, Wong Ning-Bew

机构信息

Faculty of Chemistry, Sichuan University, Chengdu, PR China.

出版信息

Chem Cent J. 2010 Mar 23;4:6. doi: 10.1186/1752-153X-4-6.

Abstract

BACKGROUND

Hydration is a universal phenomenon in nature. The interactions between biomolecules and water of hydration play a pivotal role in molecular biology. 2-Thioxanthine (2TX), a thio-modified nucleic acid base, is of significant interest as a DNA inhibitor yet its interactions with hydration water have not been investigated either computationally or experimentally. Here in, we reported an ab initio study of the hydration of 2TX, revealing water can form seven hydrated complexes.

RESULTS

Hydrogen-bond (H-bond) interactions in 1:1 complexes of 2TX with water are studied at the MP2/6-311G(d, p) and B3LYP/6-311G(d, p) levels. Seven 2TX...H2O hydrogen bonded complexes have been theoretically identified and reported for the first time. The proton affinities (PAs) of the O, S, and N atoms and deprotonantion enthalpies (DPEs) of different N-H bonds in 2TX are calculated, factors surrounding why the seven complexes have different hydrogen bond energies are discussed. The theoretical infrared and NMR spectra of hydrated 2TX complexes are reported to probe the characteristics of the proposed H-bonds. An improper blue-shifting H-bond with a shortened C-H bond was found in one case. NBO and AIM analysis were carried out to explain the formation of improper blue-shifting H-bonds, and the H-bonding characteristics are discussed.

CONCLUSION

2TX can interact with water by five different H-bonding regimes, N-H...O, O-H...N, O-H...O, O-H...S and C-H...O, all of which are medium strength hydrogen bonds. The most stable H-bond complex has a closed structure with two hydrogen bonds (N(7)-H...O and O-H...O), whereas the least stable one has an open structure with one H-bond. The interaction energies of the studied complexes are correlated to the PA and DPE involved in H-bond formation. After formation of H-bonds, the calculated IR and NMR spectra of the 2TX-water complexes change greatly, which serves to identify the hydration of 2TX.

摘要

背景

水合作用是自然界中一种普遍现象。生物分子与水合水之间的相互作用在分子生物学中起着关键作用。2-硫代黄嘌呤(2TX)是一种硫修饰的核酸碱基,作为一种DNA抑制剂备受关注,但其与水合水的相互作用尚未通过计算或实验进行研究。在此,我们报道了对2TX水合作用的从头算研究,揭示了水可形成七种水合复合物。

结果

在MP2/6-311G(d, p)和B3LYP/6-311G(d, p)水平上研究了2TX与水的1:1复合物中的氢键(H键)相互作用。首次从理论上鉴定并报道了七种2TX...H₂O氢键复合物。计算了2TX中O、S和N原子的质子亲和能(PAs)以及不同N-H键的去质子化焓(DPEs),讨论了七种复合物具有不同氢键能的相关因素。报道了水合2TX复合物的理论红外和核磁共振光谱,以探测所提出氢键的特征。在一种情况下发现了一种具有缩短C-H键的不适当蓝移氢键。进行了自然键轨道(NBO)和分子中的原子(AIM)分析来解释不适当蓝移氢键的形成,并讨论了氢键特征。

结论

2TX可通过五种不同的氢键作用方式与水相互作用,即N-H...O、O-H...N、O-H...O、O-H...S和C-H...O,所有这些都是中等强度的氢键。最稳定的氢键复合物具有由两个氢键(N(7)-H...O和O-H...O)组成的封闭结构,而最不稳定的具有由一个氢键组成的开放结构。所研究复合物的相互作用能与氢键形成中涉及的PA和DPE相关。形成氢键后,计算得到的2TX-水复合物的红外和核磁共振光谱发生了很大变化,这有助于识别2TX的水合作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6dae/2853538/4bd65e4b5b89/1752-153X-4-6-i1.jpg

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