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p53 directly enhances rejoining of DNA double-strand breaks with cohesive ends in gamma-irradiated mouse fibroblasts.

Data up to Jan 2025

Published1999
Citations90
References22

Total Citations Per Year

Abstract

References (22)

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Homologous recombination and non-homologous end-joining pathways of DNA double-strand break repair have overlapping roles in the maintenance of chromosomal integrity in vertebrate cells

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Human fibroblasts expressing the human papillomavirus E6 gene are deficient in global genomic nucleotide excision repair and sensitive to ultraviolet irradiation.

1998 • 120 citations

Nijmegen Breakage Syndrome Cells Fail To Induce the p53-Mediated DNA Damage Response following Exposure to Ionizing Radiation

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p53 deficiency does not affect the accumulation of point mutations in a transgene target.

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The Ability of p53 to Activate Downstream Genes p21 and MDM2, and Cell Cycle Arrest following DNA Damage Is Delayed and Attenuated in scid Cells Deficient in the DNA-dependent Protein Kinase

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A role for p53 in DNA end rejoining by human cell extracts

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Radioresistant MTp53-expressing rat embryo cell transformants exhibit increased DNA-dsb rejoining during exposure to ionizing radiation

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p53-null cells are more sensitive to ultraviolet light only in the presence of caffeine.

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Double-Strand Break and Recombinational Repair in Saccharomyces cerevisiae

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Evidence of the involvement of p53 in gamma -radiation-induced DNA repair in human lymphoblasts

1998 • 19 citations

p53-mediated transcription induces resistance of DNA to UV inactivation

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p53 directly enhances rejoining of DNA double-strand breaks with cohesive ends in… (1999) – PubMed | Metascience Observatory Explorer