DNA 中 Watson–Crick 和 Hoogsteen 碱基配对互变的炼金术自由能计算,Journal of Chemical Theory and Computation 您所在的位置:网站首页 crick怎么读 DNA 中 Watson–Crick 和 Hoogsteen 碱基配对互变的炼金术自由能计算,Journal of Chemical Theory and Computation

DNA 中 Watson–Crick 和 Hoogsteen 碱基配对互变的炼金术自由能计算,Journal of Chemical Theory and Computation

2024-05-12 09:39| 来源: 网络整理| 查看: 265

Alchemical Free-Energy Calculations of Watson–Crick and Hoogsteen Base Pairing Interconversion in DNA

Hoogsteen (HG) base pairs have a transient nature and can be structurally similar to Watson–Crick (WC) base pairs, making their occurrence and thermodynamic stability difficult to determine experimentally. Herein, we employed the restrain–free-energy perturbation–release (R-FEP-R) method to calculate the relative free energy of the WC and HG base pairing modes in isolated and bound DNA systems and predict the glycosyl torsion conformational preference of purine bases. Notably, this method does not require prior knowledge of the transition pathway between the two end states. Remarkably, relatively fast convergence was reached, with results in excellent agreement with experimental data for all the examined DNA systems. The R-REP-R method successfully determined the stability of HG base pairing and more generally, the conformational preference of purine bases, in these systems. Therefore, this computational approach can help to understand the dynamic equilibrium between the WC and HG base pairing modes in DNA.



【本文地址】

公司简介

联系我们

今日新闻

    推荐新闻

    专题文章
      CopyRight 2018-2019 实验室设备网 版权所有