Valverde Danillo, Vasconcelos Sanches de Araujo Adalberto, Carlos Borin Antonio, Canuto Sylvio
Universidade de São Paulo, Instituto de Física, Rua do Matão 1371, São Paulo, SP CEP 05508-090, Brazil.
Phys Chem Chem Phys. 2017 Nov 8;19(43):29354-29363. doi: 10.1039/c7cp04885h.
This work presents a systematic investigation of the electronic and conformational properties of five new fluorescent nucleobases belonging to the alphabet based on the isothiazole[4,3-d]pyrimidine molecule, very recently synthesized. This is of particular importance in the characterization of the main electronic aspects of these fluorescent nucleosides. The solvent effects of 1,4-dioxane and water were included combining the Sequential Monte Carlo/CASPT2 and the Free Energy Gradient (FEG) methods. For comparison, the Polarizable Continuum method was also used. The geometries of all compounds were optimized in solvent with the largest effects observed in water using the average solvent electrostatic configuration (ASEC) and the FEG approaches. Statistical analysis of the solute-solvent hydrogen bonds is performed and their effect on the absorption spectra analyzed. The dipole moments were calculated and the value obtained from the ASEC-FEG method in water follows the same trend as the natural canonical bases (adenine → uracil → guanine → cytosine). The theoretical results for the absorption spectra obtained from CASPT2(18,13) calculations using the geometries obtained with the ASEC-FEG procedure are in very good agreement with the experimental data. A detailed elucidation of the main aspects of the absorption spectra of the five new fluorescent nucleoside analogues is successfully attempted.
这项工作对最近合成的基于异噻唑并[4,3 - d]嘧啶分子的五种新型荧光核碱基的电子和构象性质进行了系统研究。这对于表征这些荧光核苷的主要电子方面尤为重要。结合序贯蒙特卡罗/CASPT2和自由能梯度(FEG)方法考虑了1,4 - 二氧六环和水的溶剂效应。为作比较,还使用了极化连续介质方法。所有化合物的几何结构在溶剂中进行了优化,在水中观察到的影响最大,采用平均溶剂静电构型(ASEC)和FEG方法。对溶质 - 溶剂氢键进行了统计分析,并分析了它们对吸收光谱的影响。计算了偶极矩,在水中通过ASEC - FEG方法获得的值与天然标准碱基(腺嘌呤→尿嘧啶→鸟嘌呤→胞嘧啶)遵循相同趋势。使用通过ASEC - FEG程序获得的几何结构,由CASPT2(18,13)计算得到的吸收光谱的理论结果与实验数据非常吻合。成功尝试了对五种新型荧光核苷类似物吸收光谱主要方面的详细阐释。