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Scientific Reports|January 24, 2020
Pol μ ribonucleotide insertion opposite 8-oxodG facilitates the ligation of premutagenic DNA repair intermediateMelike ÇağlayanDNA Repair|August 28, 2020
Pol β gap filling, DNA ligation and substrate-product channeling during base excision repair opposite oxidized 5-methylcytosine modificationsMelike ÇağlayanJournal of Molecular Biology|April 30, 2019
Interplay between DNA Polymerases and DNA Ligases: Influence on Substrate Channeling and the Fidelity of DNA LigationMelike ÇağlayanDNA Repair|March 13, 2025
Repair pathway coordination from gap filling by polβ and subsequent nick sealing by LIG1 or LIG3α governs BER efficiency at the downstream stepsMelike ÇağlayanNucleic Acids Research|March 7, 2020
The ligation of pol β mismatch insertion products governs the formation of promutagenic base excision DNA repair intermediatesMelike ÇağlayanThe Journal of Biological Chemistry|August 2, 2021
The scaffold protein XRCC1 stabilizes the formation of polβ/gap DNA and ligase IIIα/nick DNA complexes in base excision repairQun Tang, Melike ÇağlayanApplied Biochemistry and Biotechnology|August 27, 2011
Cloning and sequence analysis of novel DNA polymerases from thermophilic Geobacillus species isolated from hot springs in Turkey: characterization of a DNA polymerase I from Geobacillus kaue strain NBMelike Çağlayan, Neş'e BilginDNA Repair|October 15, 2015
Oxidant and environmental toxicant-induced effects compromise DNA ligation during base excision DNA repairMelike Çağlayan, Samuel H WilsonBio-Protocol|August 25, 2017
In vitro Assay to Measure DNA Polymerase β Nucleotide Insertion Coupled with the DNA Ligation Reaction during Base Excision RepairMelike Çağlayan, Samuel H WilsonBio-Protocol|July 5, 2016
Enzymatic Activity Assays in Yeast Cell ExtractsMelike Çağlayan, Samuel H WilsonPageof 4