• search hit 1 of 1
Back to Result List

Conformational and Phase Transitions in DNA-Photosensitive Surfactant Solutions: Experiment and Modeling

  • DNA binding to trans- and cis-isomers of azobenzene containing cationic surfactant in 5 mM NaCl solution was investigated by the methods of dynamic light scattering (DLS), low-gradient viscometry (LGV), atomic force microscopy (AFM), circular dichroism (CD), gel electrophoresis (GE), flow birefringence (FB), UV-Vis spectrophotometry. Light-responsive conformational transitions of DNA in complex with photosensitive surfactant, changes in DNA optical anisotropy and persistent length, phase transition of DNA into nanoparticles induced by high surfactant concentration, as well as transformation of surfactant conformation under its binding to macromolecule were studied. Computer simulations of micelles formation for cis- and trans-isomers of azobenzene containing surfactant, as well as DNA-surfactant interaction, were carried out. Phase diagram for DNA-surfactant solutions was designed. The possibility to reverse the DNA packaging induced by surfactant binding with the dilution and light irradiation was shown. (c) 2014 Wiley Periodicals,DNA binding to trans- and cis-isomers of azobenzene containing cationic surfactant in 5 mM NaCl solution was investigated by the methods of dynamic light scattering (DLS), low-gradient viscometry (LGV), atomic force microscopy (AFM), circular dichroism (CD), gel electrophoresis (GE), flow birefringence (FB), UV-Vis spectrophotometry. Light-responsive conformational transitions of DNA in complex with photosensitive surfactant, changes in DNA optical anisotropy and persistent length, phase transition of DNA into nanoparticles induced by high surfactant concentration, as well as transformation of surfactant conformation under its binding to macromolecule were studied. Computer simulations of micelles formation for cis- and trans-isomers of azobenzene containing surfactant, as well as DNA-surfactant interaction, were carried out. Phase diagram for DNA-surfactant solutions was designed. The possibility to reverse the DNA packaging induced by surfactant binding with the dilution and light irradiation was shown. (c) 2014 Wiley Periodicals, Inc. Biopolymers 103: 109-122, 2015.show moreshow less

Export metadata

Additional Services

Search Google Scholar Statistics
Metadaten
Author details:Nina Kasyanenko, Liudmila LysyakovaORCiDGND, Ruslan Ramazanov, Alexey Nesterenko, Igor Yaroshevich, Evgenii TitovORCiDGND, G. Alexeev, Andrey Lezov, I. Unksov
DOI:https://doi.org/10.1002/bip.22575
ISSN:0006-3525
ISSN:1097-0282
Pubmed ID:https://pubmed.ncbi.nlm.nih.gov/25302479
Title of parent work (English):Biopolymers
Publisher:Wiley-Blackwell
Place of publishing:Hoboken
Publication type:Article
Language:English
Year of first publication:2015
Publication year:2015
Release date:2017/03/27
Tag:DNA volume and persistent length; DNA-surfactant complexes; light-induced DNA de-compaction; phase diagram
Volume:103
Issue:2
Number of pages:14
First page:109
Last Page:122
Funding institution:RFBR, G-RISC, DAAD [13-03-01192 a]; Saint Petersburg State University [11.38.644.2013, 11.50.1589.2013, 11.38.267.2014]
Organizational units:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Physik und Astronomie
Peer review:Referiert
Accept ✔
This website uses technically necessary session cookies. By continuing to use the website, you agree to this. You can find our privacy policy here.