Physics – Condensed Matter – Statistical Mechanics
Scientific paper
2008-08-06
Journal of Physics: Condensed Matter 3, 21 (2008) 034103-1-13
Physics
Condensed Matter
Statistical Mechanics
To be published in J. Phys. Condensed Matter
Scientific paper
10.1088/0953-8984/21/3/034103
Understanding the melting of short DNA sequences probes DNA at the scale of the genetic code and raises questions which are very different from those posed by very long sequences, which have been extensively studied. We investigate this problem by combining experiments and theory. A new experimental method allows us to make a mapping of the opening of the guanines along the sequence as a function of temperature. The results indicate that non-local effects may be important in DNA because an AT-rich region is able to influence the opening of a base pair which is about 10 base pairs away. An earlier mesoscopic model of DNA is modified to correctly describe the time scales associated to the opening of individual base pairs well below melting, and to properly take into account the sequence. Using this model to analyze some characteristic sequences for which detailed experimental data on the melting is available [Montrichok et al. 2003 Europhys. Lett. {\bf 62} 452], we show that we have to introduce non-local effects of AT-rich regions to get acceptable results. This brings a second indication that the influence of these highly fluctuating regions of DNA on their neighborhood can extend to some distance.
Angelov Dimitar
Cuesta-Lopez Santiago
Peyrard Michel
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