Yildirim Ilyas, Kennedy Scott D, Stern Harry A, Hart James M, Kierzek Ryszard, Turner Douglas H
J Chem Theory Comput. 2012 Jan 10;8(1):172-181. doi: 10.1021/ct200557r. Epub 2011 Dec 1.
All-atom force fields are important for predicting thermodynamic, structural, and dynamic properties of RNA. In this paper, results are reported for thermodynamic integration calculations of free energy differences of duplex formation when CG pairs in the RNA duplexes r(CCGG)(2), r(GGCC)(2), r(GCGC)(2), and r(CGCG)(2) are replaced by isocytidine-isoguanosine (iCiG) pairs. Agreement with experiment was improved when ε/ζ, α/γ, β, and χ torsional parameters in the AMBER99 force field were revised on the basis of quantum mechanical calculations. The revised force field, AMBER99TOR, brings free energy difference predictions to within 1.3, 1.4, 2.3, and 2.6 kcal/mol at 300 K, respectively, compared to experimental results for the thermodynamic cycles of CCGG → iCiCiGiG, GGCC → iGiGiCiC, GCGC → iGiCiGiC, and CGCG → iCiGiCiG. In contrast, unmodified AMBER99 predictions for GGCC → iGiGiCiC and GCGC → iGiCiGiC differ from experiment by 11.7 and 12.6 kcal/mol, respectively. In order to test the dynamic stability of the above duplexes with AMBER99TOR, four individual 50 ns molecular dynamics (MD) simulations in explicit solvent were run. All except r(CCGG)(2) retained A-form conformation for ≥82% of the time. This is consistent with NMR spectra of r(iGiGiCiC)(2), which reveal an A-form conformation. In MD simulations, r(CCGG)(2) retained A-form conformation 52% of the time, suggesting that its terminal base pairs may fray. The results indicate that revised backbone parameters improve predictions of RNA properties and that comparisons to measured sequence dependent thermodynamics provide useful benchmarks for testing force fields and computational methods.
全原子力场对于预测RNA的热力学、结构和动力学性质非常重要。本文报道了在RNA双链体r(CCGG)(2)、r(GGCC)(2)、r(GCGC)(2)和r(CGCG)(2)中,当CG碱基对被异胞嘧啶 - 异鸟苷(iCiG)碱基对取代时,双链形成自由能差异的热力学积分计算结果。基于量子力学计算对AMBER99力场中的ε/ζ、α/γ、β和χ扭转参数进行修订后,与实验的一致性得到了改善。修订后的力场AMBER99TOR在300 K时,对于CCGG → iCiCiGiG、GGCC → iGiGiCiC、GCGC → iGiCiGiC和CGCG → iCiGiCiG热力学循环的自由能差异预测分别在1.3、1.4、2.3和2.6 kcal/mol以内。相比之下,未修改的AMBER99对GGCC → iGiGiCiC和GCGC → iGiCiGiC的预测与实验结果分别相差11.7和12.6 kcal/mol。为了用AMBER99TOR测试上述双链体的动态稳定性,在显式溶剂中进行了四个单独的50 ns分子动力学(MD)模拟。除r(CCGG)(2)外,所有双链体在≥82%的时间内保持A构象。这与r(iGiGiCiC)(2)的NMR光谱一致,该光谱显示为A构象。在MD模拟中,r(CCGG)(2)在52%的时间内保持A构象,表明其末端碱基对可能会解开。结果表明,修订后的主链参数改善了对RNA性质的预测,并且与测量的序列依赖性热力学进行比较为测试力场和计算方法提供了有用的基准。