Golyshev V M, Pyshnyi D V, Lomzov A A
Institute of Chemical Biology and Fundamental Medicine, Siberian Branch of the Russian Academy of Sciences, Novosibirsk, 630090 Russia.
Novosibirsk State University, Novosibirsk, 630090 Russia.
Mol Biol (Mosk). 2021 Nov-Dec;55(6):1030-1044. doi: 10.31857/S0026898421060069.
The development of approaches for predictive calculation of hybridization properties of various nucleic acid (NA) derivatives is the basis for the rational design of the NA-based constructs. Modern advances in computer modeling methods provide the feasibility of these calculations. We have analyzed the possibility of calculating the energy of DNA/RNA and RNA/RNA duplex formation using representative sets of complexes (65 and 75 complexes, respectively). We used the classical molecular dynamics (MD) method, the MMPBSA or MMGBSA approaches to calculate the enthalpy (ΔH°) component, and the quasi-harmonic approximation (Q-Harm) or the normal mode analysis (NMA) methods to calculate the entropy (ΔS°) contribution to the Gibbs energy (ΔG°37) of the NA complex formation. We have found that the MMGBSA method in the analysis of the MD trajectory of only the NA duplex and the empirical linear approximation allow calculation of the enthalpy of formation of the DNA, RNA, and hybrid duplexes of various lengths and GC content with an accuracy of 8.6%. Within each type of complex, the combination of rather efficient MMGBSA and Q-Harm approaches being applied to the trajectory of only the bimolecular complex makes it possible to calculate the ΔG°37 of the duplex formation with an error value of 10%. The high accuracy of predictive calculation for different types of natural complexes (DNA/RNA, DNA/RNA, and RNA/RNA) indicates the possibility of extending the considered approach to analogs and derivatives of nucleic acids, which gives a fundamental opportunity in the future to perform rational design of new types of NA-targeted sequence-specific compounds.
各种核酸(NA)衍生物杂交特性预测计算方法的发展是基于NA构建体合理设计的基础。计算机建模方法的现代进展为这些计算提供了可行性。我们分析了使用代表性复合物集(分别为65个和75个复合物)计算DNA/RNA和RNA/RNA双链体形成能量的可能性。我们使用经典分子动力学(MD)方法、MMPBSA或MMGBSA方法来计算焓(ΔH°)分量,并使用准谐波近似(Q-Harm)或正常模式分析(NMA)方法来计算熵(ΔS°)对NA复合物形成吉布斯自由能(ΔG°37)的贡献。我们发现,仅在NA双链体的MD轨迹分析中使用MMGBSA方法和经验线性近似,能够以8.6%的精度计算不同长度和GC含量的DNA、RNA及杂交双链体的形成焓。在每种类型的复合物中,将相当高效的MMGBSA和Q-Harm方法应用于仅双分子复合物的轨迹,使得能够以10%的误差值计算双链体形成的ΔG°37。对不同类型天然复合物(DNA/RNA、DNA/RNA和RNA/RNA)预测计算的高精度表明,将所考虑的方法扩展到核酸类似物和衍生物是可能的,这为未来合理设计新型NA靶向序列特异性化合物提供了根本机会。