Molecular Cell · 2024 · 19 citations · 60 references
Replication fork collision with a DNA nick can generate a one-ended break, fostering genomic instability. The opposing fork's collision with the nick could form a second DNA end, enabling conservative repair by homologous recombination (HR). To study mechanisms of nickase-induced HR, we developed the Flp recombinase "step arrest" nickase in mammalian cells. A Flp-nick induces two-ended, BRCA2/RAD51-dependent short tract gene conversion (STGC), BRCA2/RAD51-independent long tract gene conversion, and discoordinated two-ended invasions. HR pathways induced by a replication-independent break and the Flp-nickase differ in their dependence on BRCA1, MRE11, and CtIP. To determine the origin of the second DNA end during Flp-nickase-induced STGC, we blocked the opposing fork using a Tus/Ter replication fork barrier (RFB). Flp-nickase-induced STGC remained robust and two ended. Thus, a single replication fork's collision with a Flp-nick triggers two-ended HR, possibly reflecting replicative bypass of lagging strand nicks. This response may limit genomic instability during replication of nicked DNA.
60
Landscape of somatic mutations in 560 breast cancer whole-genome sequences
Serena Nik‐Zainal, Helen Davies, Johan Staaf et al. · Nature · 2016 · 2.3K citations · Full text
Trapping of PARP1 and PARP2 by Clinical PARP Inhibitors
Junko Murai, Shar-yin N. Huang, Benu Brata Das et al. · Cancer Research · 2012 · 2.1K citations · Full text
Crystal Structures of Human Topoisomerase I in Covalent and Noncovalent Complexes with DNA
Matthew R. Redinbo, Lance Stewart, Peter Kühn et al. · Science · 1998 · 874 citations