Luo J, Bruice T C
Department of Chemistry and Biochemistry, University of California at Santa Barbara 93106, USA.
J Biomol Struct Dyn. 2000 Feb;17(4):629-43. doi: 10.1080/07391102.2000.10506554.
The replacement of phosphodiester linkages of the polyanion DNA with S-methylthiourea linkers provides the polycation deoxyribonucleic S-methylthiourea (DNmt). Molecular dynamics studies to 1,220 ps of the hybrid triplex formed from octameric DNmt strands d(Tmt)8 with a complementary DNA oligomer strand d(Ap)8 have been carried out with explicit water solvent and Na+Cl- counterions under periodic boundary conditions using the CHARMM force field and the Ewald summation method. The Watson-Crick and Hoogsteen hydrogen-bonding patterns of the A/T tracts remained intact without any structural restraints for triplex structures throughout the simulation. The duplex portion of the triplex structure equilibrated at a B-DNA conformation in terms of the helical rise and other helical parameters. The dynamic structures of the DNmt x DNA x DNmt triplex were determined by examining histograms from the last 800 ps of the dynamics run. These included the hydrogen-bonding pattern (sequence recognition), three-centered bifurcating occurrences, minor groove width variations, and bending of tracts for the hybrid triplex structures. Together with the Watson-Crick hydrogen-bondings, the strong Hoogsteen hydrogen-bondings, the partially maintained three-centered bifurcatings in the Watson-Crick pair, and the medium-strength three-centered bifurcatings in the Hoogsteen pair suggest that the hybrid triplex is energetically favorable as compared to a duplex with similar base stacking, van der Waals interactions, and helical parameters. This is in agreement with our previously reported thermodynamic study, in which only triplex structures were observed in solution. The bending angle measured between the local axis vectors of the first and last helical axis segments is about 20 degrees for the Watson-Crick portion of the averaged structure. Propeller twist (associated with three-centered hydrogen-bonding) up to -30 degrees, native to DNA AT base pairing, was also observed for the triplex structure. The sugar pseudorotation phase angles and the ring rotation angles for the DNA strand are within the C3'-endo domain and C2'-endo domain for the DNmt strand. Water spines are observed in both minor and major grooves throughout the dynamics run. The molecular dynamics simulations of the structural properties of DNmt x DNA x DNmt hybrid triplex is compared to the DNG x DNA x DNG hybrid triplex (In DNG the -O-(PO2-)-O- linkers in DNA is replaced by -NH-C(=N+H2)-NH-).
用S - 甲基硫脲连接体取代聚阴离子DNA的磷酸二酯键,可得到聚阳离子脱氧核糖核酸S - 甲基硫脲(DNmt)。在周期性边界条件下,使用CHARMM力场和埃瓦尔德求和方法,在显式水溶剂和Na⁺Cl⁻抗衡离子存在的情况下,对由八聚体DNmt链d(Tmt)8与互补DNA寡聚体链d(Ap)8形成的杂交三链体进行了1220皮秒的分子动力学研究。在整个模拟过程中,A/T区域的沃森 - 克里克和霍格施泰因氢键模式保持完整,三链体结构没有任何结构限制。就螺旋上升和其他螺旋参数而言,三链体结构的双链部分在B - DNA构象下达到平衡。通过检查动力学运行最后800皮秒的直方图,确定了DNmt×DNA×DNmt三链体的动态结构。这些包括氢键模式(序列识别)、三中心分叉情况、小沟宽度变化以及杂交三链体结构中片段的弯曲。与沃森 - 克里克氢键一起,强霍格施泰因氢键、沃森 - 克里克对中部分保留的三中心分叉以及霍格施泰因对中中等强度的三中心分叉表明,与具有相似碱基堆积、范德华相互作用和螺旋参数的双链体相比,杂交三链体在能量上更有利。这与我们之前报道的热力学研究一致,在该研究中,溶液中仅观察到三链体结构。对于平均结构的沃森 - 克里克部分,在第一个和最后一个螺旋轴段的局部轴向量之间测量的弯曲角度约为20度。对于三链体结构,还观察到高达 - 30度的螺旋桨扭转(与三中心氢键相关),这是DNA AT碱基对特有的。DNA链的糖假旋转相角和环旋转角在DNmt链的C3'-内型域和C2'-内型域内。在整个动力学运行过程中,在小沟和大沟中均观察到水刺。将DNmt×DNA×DNmt杂交三链体的结构特性分子动力学模拟与DNG×DNA×DNG杂交三链体(在DNG中,DNA中的 - O - (PO₂⁻) - O - 连接体被 - NH - C(=N⁺H₂) - NH - 取代)进行了比较。