Abstract
DNA polymerase β (Polβ) has been implicated in base excision repair. Polβ knockout mice exhibit apoptosis in postmitotic neuronal cells and die at birth. Also, mice deficient in nonhomologous end-joining (NHEJ), a major pathway for DNA double-strand break repair, cause massive neuronal apoptosis. Severe combined immunodeficiency (SCID) mice have a mutation in the gene encoding DNA-dependent protein kinase catalytic subunit (DNA-PKcs), the component of NHEJ, and exhibit defective lymphogenesis. To study the interaction between Polβ and DNA-PKcs, we generated mice doubly deficient in Polβ and DNA-PKcs. Polβ-/-DNA-PKcsscid/scid embryos displayed greater developmental delay, more extensive neuronal apoptosis, and earlier lethality than Polβ-/- and DNA-PKcsscid/scid embryos. Furthermore, to study the involvement of p53 in the phenotype, we generated Polβ-/-DNA-PKcsscid/scidp53-/- triple-mutant mice. The mutants did not exhibit apoptosis but were lethal with defective neurulation at midgestation. These results suggest a genetic interaction between Polβ and DNA-PKcs in embryogenesis and neurogenesis. © 2005 Nature Publishing Group All rights reserved.
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Niimi, N., Sugo, N., Aratani, Y., & Koyama, H. (2005). Genetic interaction between DNA polymerase β and DNA-PKcs in embryogenesis and neurogenesis. Cell Death and Differentiation, 12(2), 184–191. https://doi.org/10.1038/sj.cdd.4401543
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