Alcolea Palafox Mauricio
Departamento de Química-Física, Facultad de Ciencias Químicas, Universidad Complutense de Madrid, Madrid, Spain.
Biopolymers. 2019 Mar;110(3):e23247. doi: 10.1002/bip.23247. Epub 2019 Jan 24.
The effect of the sulphur atom on the uracil ring was analyzed in different DNA:RNA microhelixes with three nucleotide base-pairs, including uridine, 2-thiouridine, 4-thiouridine, 2,4-dithiouridine, cytidine, adenosine and guanosine. Distinct backbone and helical parameters were optimized at different density functional (DFT) levels. The Watson-Crick pair with 2-thiouridine appears weaker than with uridine, but its interaction with water molecules appears easier. Two types of microhelixes were found, depending on the H-bond of H2' hydroxyl atom: A-type appears with the ribose ring in E-envelope C -endo, and B-type in E-envelope C -endo. B-type is less common but it is more stable and with higher dipole-moment. The sulphur atoms significantly increase the dipole-moment of the microhelix, as well as the rise and propeller twist parameters. Simulations with four Na atoms H-bonded to the phosphate groups, and further hydration with explicit water molecules were carried out. A re-definition of the numerical value calculation of several base-pair and base-stacking parameters is suggested.
在包含尿苷、2-硫代尿苷、4-硫代尿苷、2,4-二硫代尿苷、胞苷、腺苷和鸟苷的具有三个核苷酸碱基对的不同DNA:RNA微螺旋中,分析了硫原子对尿嘧啶环的影响。在不同的密度泛函理论(DFT)水平上优化了不同的主链和螺旋参数。与尿苷相比,2-硫代尿苷的沃森-克里克碱基对似乎较弱,但其与水分子的相互作用似乎更容易。根据H2'羟基的氢键发现了两种类型的微螺旋:A型微螺旋中核糖环呈E-信封式C-内向构象,B型微螺旋中核糖环呈E-信封式C-外向构象。B型微螺旋不太常见,但更稳定且偶极矩更高。硫原子显著增加了微螺旋的偶极矩以及上升和螺旋桨扭转参数。进行了四个与磷酸基团形成氢键的钠原子的模拟,并使用显式水分子进行了进一步的水合作用。建议重新定义几个碱基对和碱基堆积参数的数值计算。