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DNA and Chromosomes
2 Results
- DNA and ChromosomesOpen Access
Effects of DNA end configuration on XRCC4-DNA ligase IV and its stimulation of Artemis activity
Journal of Biological ChemistryVol. 292Issue 34p13914–13924Published online: July 10, 2017- Christina A. Gerodimos
- Howard H.Y. Chang
- Go Watanabe
- Michael R. Lieber
Cited in Scopus: 22In humans, nonhomologous DNA end-joining (NHEJ) is the major pathway by which DNA double-strand breaks are repaired. Recognition of each broken DNA end by the DNA repair protein Ku is the first step in NHEJ, followed by the iterative binding of nucleases, DNA polymerases, and the XRCC4-DNA ligase IV (X4-LIV) complex in an order influenced by the configuration of the two DNA ends at the break site. The endonuclease Artemis improves joining efficiency by functioning in a complex with DNA-dependent protein kinase, catalytic subunit (DNA-PKcs) that carries out endonucleolytic cleavage of 5′ and 3′ overhangs. - DNA and ChromosomesOpen Access
Different DNA End Configurations Dictate Which NHEJ Components Are Most Important for Joining Efficiency
Journal of Biological ChemistryVol. 291Issue 47p24377–24389Published online: October 4, 2016- Howard H.Y. Chang
- Go Watanabe
- Christina A. Gerodimos
- Takashi Ochi
- Tom L. Blundell
- Stephen P. Jackson
- and others
Cited in Scopus: 62The nonhomologous DNA end-joining (NHEJ) pathway is a key mechanism for repairing dsDNA breaks that occur often in eukaryotic cells. In the simplest model, these breaks are first recognized by Ku, which then interacts with other NHEJ proteins to improve their affinity at DNA ends. These include DNA-PKcs and Artemis for trimming the DNA ends; DNA polymerase μ and λ to add nucleotides; and the DNA ligase IV complex to ligate the ends with the additional factors, XRCC4 (X-ray repair cross-complementing protein 4), XLF (XRCC4-like factor/Cernunos), and PAXX (paralog of XRCC4 and XLF).