Sedimentation of macroscopic rigid knots and its relation to gel electrophoretic mobility of DNA knots

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作者
Cédric Weber
Mathias Carlen
Giovanni Dietler
Eric J. Rawdon
Andrzej Stasiak
机构
[1] King's College London,Department of Mathematics
[2] Materials and Molecular Modelling,undefined
[3] The Strand,undefined
[4] LCVMM,undefined
[5] Ecole Polytechnique Fédérale de Lausanne (EPFL),undefined
[6] LPMV,undefined
[7] Ecole Polytechnique Fédérale de Lausanne (EPFL),undefined
[8] University of St. Thomas,undefined
[9] Center for Integrative Genomics,undefined
[10] Faculty of Biology and Medicine,undefined
[11] University of Lausanne,undefined
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We address the general question of the extent to which the hydrodynamic behaviour of microscopic freely fluctuating objects can be reproduced by macrosopic rigid objects. In particular, we compare the sedimentation speeds of knotted DNA molecules undergoing gel electrophoresis to the sedimentation speeds of rigid stereolithographic models of ideal knots in both water and silicon oil. We find that the sedimentation speeds grow roughly linearly with the average crossing number of the ideal knot configurations and that the correlation is stronger within classes of knots. This is consistent with previous observations with DNA knots in gel electrophoresis.
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