Physical Review Letters · 2011 · 31 citations · 26 references
DnaEngineeringDna AnalysisMolecular BiologyDna NanotechnologyDouble-stranded DnaSingle MoleculeDna ComputingBiophysicsPhysicsCounterion CloudDna ReplicationAtomic PhysicsPhysical ChemistryAc Electric FieldsNatural SciencesBioelectronicsElectric FieldsMolecular Biophysics
We report that double-stranded DNA collapses in the presence of ac electric fields at frequencies of a few hundred Hertz, and does not stretch as commonly assumed. In particular, we show that confinement-stretched DNA can collapse to about one quarter of its equilibrium length. We propose that this effect is based on finite relaxation times of the counterion cloud, and the subsequent partitioning of the molecule into mutually attractive units. We discuss alternative models of those attractive units.
26
<i>Scaling Concepts in Polymer Physics</i>
P. G. de Gennes, Thomas A. Witten · Physics Today · 1980 · 9.3K citations
Stretching of a Single Tethered Polymer in a Uniform Flow
Thomas T. Perkins, Douglas E. Smith, Ronald G. Larson et al. · Science · 1995 · 597 citations