中文

Modeling DNA Structure, Elasticity and Deformations at the Base-pair Level

软凝聚态物质 2009-11-10 v1 统计力学 q-bio

摘要

We present a generic model for DNA at the base-pair level. We use a variant of the Gay-Berne potential to represent the stacking energy between neighboring base-pairs. The sugar-phosphate backbones are taken into account by semi-rigid harmonic springs with a non-zero spring length. The competition of these two interactions and the introduction of a simple geometrical constraint leads to a stacked right-handed B-DNA-like conformation. The mapping of the presented model to the Marko-Siggia and the Stack-of-Plates model enables us to optimize the free model parameters so as to reproduce the experimentally known observables such as persistence lengths, mean and mean squared base-pair step parameters. For the optimized model parameters we measured the critical force where the transition from B- to S-DNA occurs to be approximately 140pN140{pN}. We observe an overstretched S-DNA conformation with highly inclined bases that partially preserves the stacking of successive base-pairs.

关键词

引用

@article{arxiv.cond-mat/0306015,
  title  = {Modeling DNA Structure, Elasticity and Deformations at the Base-pair Level},
  author = {Boris Mergell and Mohammad R. Ejtehadi and Ralf Everaers},
  journal= {arXiv preprint arXiv:cond-mat/0306015},
  year   = {2009}
}

备注

15 pages, 25 figures. submitted to PRE