Folding and unfolding of a triple-branch DNA molecule with four conformational states

Autor(en): Engel, Sandra
Alemany, Anna
Forns, Nuria
Maass, Philipp 
Ritort, Felix
Stichwörter: biomolecules; biophysics; FORCE; Materials Science; Materials Science, Multidisciplinary; Metallurgy & Metallurgical Engineering; NANOPORE; OPTICAL TWEEZERS; Physics; Physics, Applied; Physics, Condensed Matter; POLYMER; SINGLE-STRANDED-DNA; statistical physics; TRANSLOCATION
Erscheinungsdatum: 2011
Herausgeber: TAYLOR & FRANCIS LTD
Journal: PHILOSOPHICAL MAGAZINE
Volumen: 91
Ausgabe: 13-15, SI
Startseite: 2049
Seitenende: 2065
Zusammenfassung: 
Single-molecule experiments provide new insights into biological processes hitherto not accessible by measurements performed on bulk systems. We report on a study of the kinetics of a triple-branch DNA molecule with four conformational states by pulling experiments with optical tweezers and theoretical modelling. Three distinct force rips associated with different transitions between the conformational states are observed in the folding and unfolding trajectories. By applying transition rate theory to a free energy model of the molecule, probability distributions for the first rupture forces of the different transitions are calculated. Good agreement of the theoretical predictions with the experimental findings is achieved. Furthermore, due to our specific design of the molecule, we found a useful method to identify permanently frayed molecules by estimating the number of opened base-pairs from the measured force jump values.
Beschreibung: 
12th International Workshop on Complex System, Andalo, ITALY, MAR 15-18, 2010
ISSN: 14786435
DOI: 10.1080/14786435.2011.557671

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