Trujillo Cristina, Mó Otilia, Yáñez Manuel
Departamento de Química, C-9, Universidad Autónoma de Madrid, Cantoblanco, 28049, Madrid, Spain.
Org Biomol Chem. 2007 Oct 7;5(19):3092-9. doi: 10.1039/b708045j. Epub 2007 Aug 15.
The prototropic tautomerism of 2-, 4-selenouracil and 2,4-diselenouracil has been studied using density functional theory (DFT) methods, at the B3LYP/6-311 + G(3df,2p)//B3LYP/6-31G(d,p) level. The relative stability order of selenouracil tautomers does not resemble that of uracil tautomers, but it is similar to that of thiouracils, even though the energy gaps between the different tautomers of selenouracils are smaller than for thiouracils. The tautomerism activation barriers are high enough as to conclude that only the oxo-selenone or the diselenone structures should be found in the gas phase. The specific interaction with one water molecule reduces these barriers by a half, but still the oxo-selenone form is always the most stable tautomer. The addition of a second water molecule has a relatively small effect, as well as bulk effects, evaluated by means of a continuum-polarized model. For isolated 2- and 4-selenouracils, the more favorable tautomerization process corresponds to a hydrogen transfer towards the selenium atom, the activation barriers for transfer towards the oxygen atom being much higher. This situation changes when specific and bulk effects are included, and the latter process becomes the more favorable one. For 2,4-diselenouracil the more favorable tautomerization, in the gas phase, corresponds to the H shift from N1 to the Se atom at C2, while solvation effects favor the transfer from N3 to the Se atom at C4.
采用密度泛函理论(DFT)方法,在B3LYP/6-311+G(3df,2p)//B3LYP/6-31G(d,p)水平上研究了2-、4-硒尿嘧啶和2,4-二硒尿嘧啶的质子转移互变异构现象。硒尿嘧啶互变异构体的相对稳定性顺序与尿嘧啶互变异构体不同,但与硫尿嘧啶相似,尽管硒尿嘧啶不同互变异构体之间的能隙比硫尿嘧啶的小。互变异构的活化能垒足够高,以至于可以得出结论,在气相中只能找到氧代硒酮或二硒酮结构。与一个水分子的特定相互作用使这些能垒降低了一半,但氧代硒酮形式仍然总是最稳定的互变异构体。添加第二个水分子以及通过连续极化模型评估的溶剂化效应的影响相对较小。对于孤立的2-和4-硒尿嘧啶,更有利的互变异构过程对应于氢向硒原子的转移,向氧原子转移的活化能垒要高得多。当考虑特定效应和溶剂化效应时,这种情况会发生变化,后一种过程变得更有利。对于2,4-二硒尿嘧啶,在气相中更有利的互变异构对应于H从N1转移到C2处的Se原子,而溶剂化效应有利于从N3转移到C4处的Se原子。