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RAD52 and SLX4 act nonepistatically to ensure telomere stability during alternative telomere lengthening
2019
Genes & Development
Approximately 15% of cancers use homologous recombination for alternative lengthening of telomeres (ALT). How the initiating genomic lesions invoke homology-directed telomere synthesis remains enigmatic. Here, we show that distinct dependencies exist for telomere synthesis in response to replication stress or DNA double-strand breaks (DSBs). RAD52 deficiency reduced spontaneous telomeric DNA synthesis and replication stress-associated recombination in G2, concomitant with telomere shortening
doi:10.1101/gad.319723.118
fatcat:erw4w7tpdnbrdc76woojdnog74