School of Chemistry and Chemical Engineering, Beijing Institute of Technology, South Street no 5, Zhongguancun, Haidian District, 100081 Beijing, China.
Department of Chemistry and Molecular Biology, University of Gothenburg, Medicinaregatan 9c, 405 30 Göteborg, Sweden.
J Chem Inf Model. 2022 Jan 24;62(2):386-398. doi: 10.1021/acs.jcim.1c01169. Epub 2022 Jan 7.
Damaged or mismatched DNA bases are normally thought to be able to flip out of the helical stack, providing enzymes with access to the faulty genetic information otherwise hidden inside the helix. Thymine glycol (Tg) is one of the most common products of nucleic acid damage. However, the static and dynamic structures of DNA duplexes affected by 5R-Tg epimers are still not clearly understood, including the ability of these to undergo spontaneous base flipping. Structural effects of the 5R-Tg epimers on the duplex DNA are herein studied using molecular dynamics together with reliable DFT based calculations. In comparison with the corresponding intact DNA, the -5R,6S-Tg epimer base causes little perturbation to the duplex DNA, and a barrier of 4.9 kcal mol is obtained by meta-eABF for -5R,6S-Tg base flipping out of the duplex DNA, comparable to the 5.4 kcal mol obtained for the corresponding thymine flipping in intact DNA. For the -5R,6R-Tg epimer, three stable local structures were identified, of which the most stable disrupts the Watson-Crick hydrogen-bonded G5/C20 base pair, leading to conformational distortion of the duplex. Interestingly, the relative barrier height of the 5R-Tg flipping is only 1.0 kcal mol for one of these -5R,6R-Tg epimers. Water bridge interactions were identified to be essential for 5R-Tg flipping. The study clearly demonstrates the occurrence of partial -5R,6R-Tg epimer flipping in solution.
受损或不匹配的 DNA 碱基通常被认为能够脱离螺旋堆叠,为酶提供进入隐藏在螺旋内部的错误遗传信息的途径。胸腺嘧啶二醇(Tg)是核酸损伤最常见的产物之一。然而,受 5R-Tg 差向异构体影响的 DNA 双链的静态和动态结构仍不清楚,包括这些结构能够自发发生碱基翻转的能力。本研究使用分子动力学结合可靠的基于 DFT 的计算方法,研究了 5R-Tg 差向异构体对 DNA 双链的结构影响。与相应的完整 DNA 相比,-5R,6S-Tg 差向异构体碱基对双链 DNA 的扰动很小,通过 meta-eABF 计算得到-5R,6S-Tg 碱基从双链 DNA 中翻转出来的势垒为 4.9 kcal mol-1,与完整 DNA 中相应胸腺嘧啶翻转的 5.4 kcal mol-1 相当。对于-5R,6R-Tg 差向异构体,确定了三种稳定的局部结构,其中最稳定的结构破坏了 Watson-Crick 氢键形成的 G5/C20 碱基对,导致双链的构象扭曲。有趣的是,这些-5R,6R-Tg 差向异构体之一的 5R-Tg 翻转的相对势垒高度仅为 1.0 kcal mol-1。水桥相互作用对于 5R-Tg 翻转是必不可少的。该研究清楚地表明了部分-5R,6R-Tg 差向异构体在溶液中发生翻转。