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PMID: 16648255 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S.

Diffusion of isolated DNA molecules: dependence on length and topology.

Robertson RM, Laib S, Smith DE

Abstract

The conformation and dynamics of circular polymers is a subject of considerable theoretical and experimental interest. DNA is an important example because it occurs naturally in different topological states, including linear, relaxed circular, and supercoiled circular forms. A fundamental question is how the diffusion coefficients of isolated polymers scale with molecular length and how they vary for different topologies. Here, diffusion coefficients D for relaxed circular, supercoiled, and linear DNA molecules of length L ranging from approximately 6 to 290 kbp were measured by tracking the Brownian motion of single molecules. A topology-independent scaling law D approximately L(-nu) was observed with nu(L) = 0.571 +/- 0.014, nu(C) = 0.589 +/- 0.018, and nu(S) = 0.571 +/- 0.057 for linear, relaxed circular, and supercoiled DNA, respectively, in good agreement with the scaling exponent of nu congruent with 0.588 predicted by renormalization group theory for polymers with significant excluded volume interactions. Our findings thus provide evidence in support of several theories that predict an effective diameter of DNA much greater than the Debye screening length. In addition, the measured ratio D(Circular)/D(Linear) = 1.32 +/- 0.014 was closer to the value of 1.45 predicted by using renormalization group theory than the value of 1.18 predicted by classical Kirkwood hydrodynamic theory and agreed well with a value of 1.31 predicted when incorporating a recently proposed expression for the radius of gyration of circular polymers into the Zimm model.

MeSH Terms
DNA/chemistry,genetics,isolation & purification Diffusion Electrophoresis, Agar Gel Nucleic Acid Conformation
Chemicals
DNA
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Robertson Rae M
Department of Physics, University of California at San Diego, Mail Code 0379, 9500 Gilman Drive, La Jolla, CA 92093, USA.
Laib Stephan
Smith Douglas E
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Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
0027-8424
Published
2006-05-09
Epub
2006-00-28
Pages
7310-4
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC1450111
Subset
IM
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