Bubble propagation in a helicoidal molecular chain
arXiv:cond-mat/0007416 · doi:10.1103/PhysRevE.63.021901
Abstract
We study the propagation of very large amplitude localized excitations in a model of DNA that takes explicitly into account the helicoidal structure. These excitations represent the ``transcription bubble'', where the hydrogen bonds between complementary bases are disrupted, allowing access to the genetic code. We propose these kind of excitations in alternative to kinks and breathers. The model has been introduced by Barbi et al. [Phys. Lett. A 253, 358 (1999)], and up to now it has been used to study on the one hand low amplitude breather solutions, and on the other hand the DNA melting transition. We extend the model to include the case of heterogeneous chains, in order to get closer to a description of real DNA; in fact, the Morse potential representing the interaction between complementary bases has two possible depths, one for A-T and one for G-C base pairs. We first compute the equilibrium configurations of a chain with a degree of uncoiling, and we find that a static bubble is among them; then we show, by molecular dynamics simulations, that these bubbles, once generated, can move along the chain. We find that also in the most unfavourable case, that of a heterogeneous DNA in the presence of thermal noise, the excitation can travel for well more 1000 base pairs.
25 pages, 7 figures. Submitted to Phys. Rev. E
References in corpus (2)
Cited by in corpus (16)
- On the nonlinear dynamics of topological solitons in DNA
- Thermal denaturation of an helicoidal DNA model
- Physics of base-pairing dynamics in DNA
- Thermodynamics of Twisted DNA with Solvent Interaction
- Perturbed soliton excitations in DNA molecular chain
- A composite model for DNA torsion dynamics
- Base pair opening and bubble transport in a DNA double helix induced by a protein molecule in a viscous medium
- Soliton-like base pair opening in a helicoidal DNA: An analogy with helimagnet and cholesterics
- Slow closure of denaturation bubbles in DNA: twist matters
- Nonlinear molecular excitations in a completely inhomogeneous DNA chain
- Theoretical and Experimental Investigations of DNA Open States
- Bubble generation in a twisted and bent DNA-like model
- Dynamics of a bubble formed in double stranded DNA
- Multi-site H-bridge breathers in a DNA--shaped double strand
- On the thermodynamics of DNA in the Peyrard-Bishop-Dauxois model
- Nonlinear waves in double-stranded DNA