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PMID: 15447507 Published · ppublish English Journal Article

Unwrapping of DNA-protein complexes under external stretching.

Physical review. E, Statistical, nonlinear, and soft matter physics ·Vol. 70 ·No. 2 Pt 1 ·2004-08-00 ·Pages 021801

Sakaue T, Löwen H

Abstract

A DNA-protein complex modeled by a semiflexible chain and an attractive spherical core is studied in the situation when an external stretching force is acting on one end monomer of the chain while the other end monomer is kept fixed in space. Without a stretching force, the chain is wrapped around the core. By applying an external stretching force, unwrapping of the complex is induced. We study the statics and dynamics of the unwrapping process by computer simulations and simple phenomenological theory. We find two different scenarios depending on the chain stiffness: For a flexible chain, the extension of the complex scales linearly with the external force applied. The sphere-chain complex is disordered; i.e., there is no clear winding of the chain around the sphere. For a stiff chain, on the other hand, the complex structure is ordered, which is reminiscent of nucleosome. There is a clear winding number, and the unwrapping process under external stretching is discontinuous with jumps of the distance-force curve. This is associated with discrete unwinding processes of the complex. Our predictions are of relevance for experiments, which measure force-extension curves of DNA-protein complexes, such as nucleosome, using optical tweezers.

MeSH Terms
Biophysics/methods Cations DNA/chemistry Models, Theoretical Nucleic Acid Conformation Nucleosomes/chemistry Polymers/chemistry Probability Proteins/chemistry
Chemicals
Cations Nucleosomes Polymers Proteins DNA
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Sakaue Takahiro
Department of Physics, Graduate School of Science, Kyoto University, Kyoto 606-8502, Japan.
Löwen Hartmut
Article Info
Journal
Physical review. E, Statistical, nonlinear, and soft matter physics
Abbr.
Phys Rev E Stat Nonlin Soft Matter Phys
ISSN
1539-3755
Published
2004-08-00
Epub
2004-00-19
Pages
021801
Language
English
Region
United States
NLM ID
101136452
Subset
IM
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