Showing results (51-60 of 91) with videos related to
Sort By:
Pageof 10
DNA Repair|July 23, 2022
Polymorphic variant Asp239Tyr of human DNA glycosylase NTHL1 is inactive for removal of a variety of oxidatively-induced DNA base lesions from genomic DNAMelis Kant, Victoria Quintana, Erdem Coskun, et al.ACS Chemical Biology|December 17, 2020
Inhibition by Tetrahydroquinoline Sulfonamide Derivatives of the Activity of Human 8-Oxoguanine DNA Glycosylase (OGG1) for Several Products of Oxidatively induced DNA Base LesionsMelis Kant, Yu-Ki Tahara, Pawel Jaruga, et al.Nanomedicine (London, England)|February 28, 2023
Inhibition of human APE1 and MTH1 DNA repair proteins by dextran-coated γ-Fe2O3 ultrasmall superparamagnetic iron oxide nanoparticlesErdem Coskun, Neenu Singh, Leona D Scanlan, et al.Journal of Bacteriology|February 1, 2011
A major role for nonenzymatic antioxidant processes in the radioresistance of Halobacterium salinarumCourtney K Robinson, Kim Webb, Amardeep Kaur, et al.Proceedings of the National Academy of Sciences of the United States of America|March 21, 2002
Identification and characterization of a human DNA glycosylase for repair of modified bases in oxidatively damaged DNATapas K Hazra, Tadahide Izumi, Istvan Boldogh, et al.Free Radical Biology & Medicine|June 12, 2012
RNA oxidation catalyzed by cytochrome c leads to its depurination and cross-linking, which may facilitate cytochrome c release from mitochondriaMikiei Tanaka, Pawel Jaruga, Pascal A Küpfer, et al.Journal of Radiation Research|July 19, 2014
Significant disparity in base and sugar damage in DNA resulting from neutron and electron irradiationDalong Pang, Jeffrey S Nico, Lisa Karam, et al.DNA Repair|September 20, 2011
Evidence for upregulated repair of oxidatively induced DNA damage in human colorectal cancerGüldal Kirkali, Didem Keles, Aras E Canda, et al.Plos One|February 19, 2015
Bisphenol a promotes cell survival following oxidative DNA damage in mouse fibroblastsNatalie R Gassman, Erdem Coskun, Donna F Stefanick, et al.Oncotarget|June 30, 2020
Expression of a germline variant in the N-terminal domain of the human DNA glycosylase NTHL1 induces cellular transformation without impairing enzymatic function or substrate specificityCarolyn G Marsden, Pawel Jaruga, Erdem Coskun, et al.Pageof 10