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Global DNA dynamics of 8-oxoguanine repair by human OGG1 revealed by stopped-flow kinetics and molecular dynamics simulation
Research output
:
Contribution to journal
›
Article
›
peer-review
Section of Molecular Biology and Biotechnology
Magnetic Resonance Laboratory in Chemistry, Biology and Medicine
Section of Chemical and Biological Physics
Protein Engineering Laboratory
Defense-Repair Systems Laboratory
Overview
Cite this
DOI
https://doi.org/10.1039/c7mb00343a
Final published version
M. V. Lukina
V. V. Koval
A. A. Lomzov
D. O. Zharkov
O. S. Fedorova
Original language
English
Pages (from-to)
1954-1966
Number of pages
13
Journal
Molecular BioSystems
Volume
13
Issue number
10
DOIs
https://doi.org/10.1039/c7mb00343a
Publication status
Published -
1 Oct 2017
OECD FOS+WOS
Research areas
RESONANCE ENERGY-TRANSFER, BASE-EXCISION-REPAIR, NUCLEIC-ACIDS, ACTIVE-SITE, BIOCHEMICAL EXPLORATION, SUBSTRATE RECOGNITION, DAMAGE RECOGNITION, LESION RECOGNITION, GENERALIZED BORN, GLYCOSYLASE, DNA Damage/genetics, Humans, Substrate Specificity, DNA Repair/genetics, Molecular Dynamics Simulation, Guanine/analogs & derivatives, DNA/chemistry, Protein Binding, DNA Glycosylases/metabolism, Kinetics
ID: 8672787