[PDF][PDF] RETRACTED: Sealing of Chromosomal DNA Nicks during Nucleotide Excision Repair Requires XRCC1 and DNA Ligase IIIα in a Cell-Cycle-Specific Manner

J Moser, H Kool, I Giakzidis, K Caldecott… - Molecular cell, 2007 - cell.com
J Moser, H Kool, I Giakzidis, K Caldecott, LHF Mullenders, MI Fousteri
Molecular cell, 2007cell.com
Impaired gap filling and sealing of chromosomal DNA in nucleotide excision repair (NER)
leads to genome instability. XRCC1-DNA ligase IIIα (XRCC1-Lig3) plays a central role in the
repair of DNA single-strand breaks but has never been implicated in NER. Here we show
that XRCC1-Lig3 is indispensable for ligation of NER-induced breaks and repair of UV
lesions in quiescent cells. Furthermore, our results demonstrate that two distinct complexes
differentially carry out gap filling in NER. XRCC1-Lig3 and DNA polymerase δ colocalize …
Summary
Impaired gap filling and sealing of chromosomal DNA in nucleotide excision repair (NER) leads to genome instability. XRCC1-DNA ligase IIIα (XRCC1-Lig3) plays a central role in the repair of DNA single-strand breaks but has never been implicated in NER. Here we show that XRCC1-Lig3 is indispensable for ligation of NER-induced breaks and repair of UV lesions in quiescent cells. Furthermore, our results demonstrate that two distinct complexes differentially carry out gap filling in NER. XRCC1-Lig3 and DNA polymerase δ colocalize and interact with NER components in a UV- and incision-dependent manner throughout the cell cycle. In contrast, DNA ligase I and DNA polymerase ɛ are recruited to UV-damage sites only in proliferating cells. This study reveals an unexpected and key role for XRCC1-Lig3 in maintenance of genomic integrity by NER in both dividing and nondividing cells and provides evidence for cell-cycle regulation of NER-mediated repair synthesis in vivo.
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