MAD2L2 promotes replication fork protection and recovery in a shieldin-independent and REV3L-dependent manner.
Ontology highlight
ABSTRACT: Protection of stalled replication forks is essential to prevent genome instability, a major driving force of tumorigenesis. Several key regulators of DNA double-stranded break (DSB) repair, including 53BP1 and RIF1, have been implicated in fork protection. MAD2L2, also known as REV7, plays an important role downstream of 53BP1/RIF1 by counteracting resection at DSBs in the recently discovered shieldin complex. The ability to bind and counteract resection at exposed DNA ends at DSBs makes MAD2L2/shieldin a prime candidate for also suppressing nucleolytic processing at stalled replication forks. However, the function of MAD2L2/shieldin outside of DNA repair is unknown. Here we address this by using genetic and single-molecule analyses and find that MAD2L2 is required for protecting and resta
SUBMITTER: Paniagua I
PROVIDER: S-EPMC9458726 | biostudies-literature | 2022 Sep
REPOSITORIES: biostudies-literature
ACCESS DATA