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Nature Communications|October 13, 2018
Pol μ dGTP mismatch insertion opposite T coupled with ligation reveals promutagenic DNA repair intermediateMelike Çağlayan, Samuel H WilsonDNA Repair|November 25, 2015
Reprint of "Oxidant and environmental toxicant-induced effects compromise DNA ligation during base excision DNA repair"Melike Çağlayan, Samuel H WilsonMutagenesis|September 11, 2020
DNA ligase I variants fail in the ligation of mutagenic repair intermediates with mismatches and oxidative DNA damageQun Tang, Pradnya Kamble, Melike ÇağlayanBiorxiv : the Preprint Server for Biology|March 30, 2023
Structures of LIG1 active site mutants reveal the importance of DNA end rigidity for mismatch discriminationMitchell Gulkis, Qun Tang, Matthew Petrides, et al.Nature Communications|July 5, 2022
Structures of LIG1 that engage with mutagenic mismatches inserted by polβ in base excision repairQun Tang, Mitchell Gulkis, Robert McKenna, et al.Bio-Protocol|July 9, 2016
Enzymatic Activity Assays for Base Excision Repair Enzymes in Cell Extracts from Vertebrate CellsMelike Çağlayan, Julie K Horton, Samuel H WilsonNucleic Acids Research|February 17, 2024
Unfilled gaps by polβ lead to aberrant ligation by LIG1 at the downstream steps of base excision repair pathwayMitchell Gulkis, Ernesto Martinez, Danah Almohdar, et al.Research Square|April 24, 2023
Structures of LIG1 active site mutants reveal the importance of DNA end rigidity for mismatch discriminationMitchell Gulkis, Qun Tang, Matthew Petrides, et al.Biorxiv : the Preprint Server for Biology|July 16, 2025
Single-molecule analysis of gap and nick binding by LIG1 and LIG3α at the final step of DNA repairSurajit Chatterjee, Kar Men Lee, Kanal Balu, et al.The Journal of Biological Chemistry|March 24, 2024
Structures of LIG1 provide a mechanistic basis for understanding a lack of sugar discrimination against a ribonucleotide at the 3'-end of nick DNAKanal Elamparithi Balu, Mitchell Gulkis, Danah Almohdar, et al.Pageof 4