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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 Wilson
Biorxiv : 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 Wilson
Nucleic 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.
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