Catalytically inactive DNA ligase IV promotes DNA repair in living cells

Author:

Goff Noah J123,Brenière Manon4,Buehl Christopher J123,de Melo Abinadabe J4,Huskova Hana4,Ochi Takashi5,Blundell Tom L6,Mao Weifeng72,Yu Kefei72,Modesti Mauro4,Meek Katheryn123ORCID

Affiliation:

1. College of Veterinary Medicine, Michigan State University , East Lansing, MI 48824, USA

2. Department of Microbiology & Molecular Genetics, Michigan State University , East Lansing, MI 48824, USA

3. Department of Pathobiology & Diagnostic Investigation, Michigan State University , East Lansing , MI 48824 , USA

4. Centre de Recherche en Cancérologie de Marseille, CNRS UMR7258, Inserm U1068, Institut Paoli-Calmettes, Aix-Marseille Universiteé , Marseille , France

5. The Astbury Centre for Structural Molecular Biology, School of Molecular and Cellular Biology, Faculty of Biological Sciences, University of Leeds , Leeds LS2 9TJ, UK

6. Department of Biochemistry, University of Cambridge , Cambridge CB2 1GA, UK

7. College of Human Medicine, Michigan State University , East Lansing, MI 48824, USA

Abstract

Abstract DNA double strand breaks (DSBs) are induced by external genotoxic agents (ionizing radiation or genotoxins) or by internal processes (recombination intermediates in lymphocytes or by replication errors). The DNA ends induced by these genotoxic processes are often not ligatable, requiring potentially mutagenic end-processing to render ends compatible for ligation by non-homologous end-joining (NHEJ). Using single molecule approaches, Loparo et al. propose that NHEJ fidelity can be maintained by restricting end-processing to a ligation competent short-range NHEJ complex that ‘maximizes the fidelity of DNA repair’. These in vitro studies show that although this short-range NHEJ complex requires DNA ligase IV (Lig4), its catalytic activity is dispensable. Here using cellular models, we show that inactive Lig4 robustly promotes DNA repair in living cells. Compared to repair products from wild-type cells, those isolated from cells with inactive Lig4 show a somewhat increased fraction that utilize micro-homology (MH) at the joining site consistent with alternative end-joining (a-EJ). But unlike a-EJ in the absence of NHEJ, a large percentage of joints isolated from cells with inactive Lig4 occur with no MH – thus, clearly distinct from a-EJ. Finally, biochemical assays demonstrate that the inactive Lig4 complex promotes the activity of DNA ligase III (Lig3).

Funder

National Institute of Food and Agriculture

Public Health Service

French National Research Agency

French National League against cancer

French National Cancer Institute

Publisher

Oxford University Press (OUP)

Subject

Genetics

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