Alexandrov Boian S, Gelev Vladimir, Monisova Yevgeniya, Alexandrov Ludmil B, Bishop Alan R, Rasmussen Kim Ø, Usheva Anny
Theoretical Division and Center for Nonlinear Studies, Los Alamos National Laboratory, Los Alamos, NM 87545, USA.
Nucleic Acids Res. 2009 Apr;37(7):2405-10. doi: 10.1093/nar/gkp016. Epub 2009 Mar 5.
No simple model exists that accurately describes the melting behavior and breathing dynamics of double-stranded DNA as a function of nucleotide sequence. This is especially true for homogenous and periodic DNA sequences, which exhibit large deviations in melting temperature from predictions made by additive thermodynamic contributions. Currently, no method exists for analysis of the DNA breathing dynamics of repeats and of highly G/C- or A/T-rich regions, even though such sequences are widespread in vertebrate genomes. Here, we extend the nonlinear Peyrard-Bishop-Dauxois (PBD) model of DNA to include a sequence-dependent stacking term, resulting in a model that can accurately describe the melting behavior of homogenous and periodic sequences. We collect melting data for several DNA oligos, and apply Monte Carlo simulations to establish force constants for the 10 dinucleotide steps (CG, CA, GC, AT, AG, AA, AC, TA, GG, TC). The experiments and numerical simulations confirm that the GG/CC dinucleotide stacking is remarkably unstable, compared with the stacking in GC/CG and CG/GC dinucleotide steps. The extended PBD model will facilitate thermodynamic and dynamic simulations of important genomic regions such as CpG islands and disease-related repeats.
不存在能准确描述双链DNA的解链行为和呼吸动力学随核苷酸序列变化的简单模型。对于均匀和周期性DNA序列而言尤其如此,这些序列的解链温度与通过加和热力学贡献所做预测存在很大偏差。目前,尚无分析重复序列以及高度富含G/C或A/T区域的DNA呼吸动力学的方法,尽管此类序列在脊椎动物基因组中广泛存在。在此,我们扩展了DNA的非线性佩亚德 - 毕晓普 - 多索(PBD)模型,纳入了一个序列依赖的堆积项,从而得到一个能准确描述均匀和周期性序列解链行为的模型。我们收集了几种DNA寡聚物的解链数据,并应用蒙特卡罗模拟来确定10种二核苷酸步(CG、CA、GC、AT、AG、AA、AC、TA、GG、TC)的力常数。实验和数值模拟证实,与GC/CG和CG/GC二核苷酸步中的堆积相比,GG/CC二核苷酸堆积明显不稳定。扩展后的PBD模型将有助于对诸如CpG岛和疾病相关重复序列等重要基因组区域进行热力学和动力学模拟。