Hart Katarina, Foloppe Nicolas, Baker Christopher M, Denning Elizabeth J, Nilsson Lennart, Mackerell Alexander D
Department of Biosciences and Nutrition, Center for Biosciences, Karolinska Institutet, SE-141 83 HUDDINGE, Sweden.
J Chem Theory Comput. 2012 Jan 10;8(1):348-362. doi: 10.1021/ct200723y.
The B-form of DNA can populate two different backbone conformations: BI and BII, defined by the difference between the torsion angles ε and ζ (BI = ε-ζ < 0 and BII = ε-ζ > 0). BI is the most populated state, but the population of the BII state, which is sequence dependent, is significant and accumulating evidence shows that BII affects the overall structure of DNA, and thus influences protein-DNA recognition. This work presents a reparametrization of the CHARMM27 additive nucleic acid force field to increase the sampling of the BII form in MD simulations of DNA. In addition, minor modifications of sugar puckering were introduced to facilitate sampling of the A form of DNA under the appropriate environmental conditions. Parameter optimization was guided by quantum mechanical data on model compounds, followed by calculations on several DNA duplexes in the condensed phase. The selected optimized parameters were then validated against a number of DNA duplexes, with the most extensive tests performed on the EcoRI dodecamer, including comparative calculations using the Amber Parm99bsc0 force field. The new CHARMM model better reproduces experimentally observed sampling of the BII conformation, including sampling as a function of sequence. In addition, the model reproduces the A form of the 1ZF1 duplex in 75 % ethanol, and yields a stable Z-DNA conformation of duplex (GTACGTAC) in its crystal environment. The resulting model, in combination with a recent reoptimization of the CHARMM27 force field for RNA, will be referred to as CHARMM36.
DNA的B型可呈现两种不同的主链构象:BI和BII,由扭转角ε和ζ的差异定义(BI = ε - ζ < 0且BII = ε - ζ > 0)。BI是最常见的状态,但BII状态的占比与序列有关,且有大量证据表明BII会影响DNA的整体结构,进而影响蛋白质与DNA的识别。这项工作对CHARMM27加性核酸力场进行了重新参数化,以增加DNA分子动力学模拟中BII形式的采样。此外,对糖环构象进行了微小修改,以便在适当的环境条件下促进DNA A型的采样。参数优化以模型化合物的量子力学数据为指导,随后对凝聚相中的几种DNA双链体进行计算。然后针对多种DNA双链体对选定的优化参数进行验证,对EcoRI十二聚体进行了最广泛的测试,包括使用Amber Parm99bsc0力场进行的比较计算。新的CHARMM模型能更好地重现实验观察到的BII构象采样,包括作为序列函数的采样。此外,该模型能在75%乙醇中重现1ZF1双链体的A型,并在其晶体环境中产生双链体(GTACGTAC)的稳定Z-DNA构象。由此产生的模型,结合最近对CHARMM27 RNA力场的重新优化,将被称为CHARMM36。