Determination of the Thermodynamic Parameters of DNA Double Helix Unwinding with the Help of Mechanical Methods
Author(s) -
Ni. Kurus,
F. N. Dultsev
Publication year - 2018
Publication title -
acs omega
Language(s) - English
Resource type - Journals
ISSN - 2470-1343
DOI - 10.1021/acsomega.7b01815
Subject(s) - quartz crystal microbalance , enthalpy , denaturation (fissile materials) , melting point , thermodynamics , helix (gastropod) , chemistry , mechanical energy , atomic force microscopy , materials science , quartz , nanotechnology , composite material , physics , ecology , power (physics) , adsorption , nuclear chemistry , snail , biology
For the first time, rupture event scanning (REVS) procedure based on quartz crystal microbalance (QCM) and involving only mechanical action was used to determine the height of the energy barrier for dsDNA unwinding. Melting point was determined with the help of this procedure. To determine the thermodynamic parameters including enthalpy, DNA denaturation was represented as a unimolecular process. This allowed us to recover the energy profiles from the experimental data obtained by force measurements at different scanning times (reaction times) for different temperatures. The thus obtained results were compared with the data obtained with the help of another mechanical method, namely, atomic force microscopy. The mechanism of DNA unwinding in QCM-based experiments through the unzipping mode, as proposed by us in previous works, was confirmed. Thus, we demonstrated that REVS procedure may be used to assess the thermodynamic parameters of dsDNA unwinding.
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