Publication: FANCD2 Facilitates Replication through Common Fragile Sites.
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Date
2016
Authors
Madireddy, Advaitha
Kosiyatrakul, Settapong T
Boisvert, Rebecca A
Herrera-Moyano, Emilia
García-Rubio, María L
Gerhardt, Jeannine
Vuono, Elizabeth A
Owen, Nichole
Yan, Zi
Olson, Susan
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Abstract
Common fragile sites (CFSs) are genomic regions that are unstable under conditions of replicative stress. Although the characteristics of CFSs that render them vulnerable to stress are associated mainly with replication, the cellular pathways that protect CFSs during replication remain unclear. Here, we identify and describe a role for FANCD2 as a trans-acting facilitator of CFS replication, in the absence of exogenous replicative stress. In the absence of FANCD2, replication forks stall within the AT-rich fragility core of CFS, leading to dormant origin activation. Furthermore, FANCD2 deficiency is associated with DNA:RNA hybrid formation at CFS-FRA16D, and inhibition of DNA:RNA hybrid formation suppresses replication perturbation. In addition, we also found that FANCD2 reduces the number of potential sites of replication initiation. Our data demonstrate that FANCD2 protein is required to ensure efficient CFS replication and provide mechanistic insight into how FANCD2 regulates CFS stability.
Description
MeSH Terms
BRCA2 Protein
Cell Line, Transformed
Chromosome Fragile Sites
DNA
DNA Replication
Fanconi Anemia
Fanconi Anemia Complementation Group A Protein
Fanconi Anemia Complementation Group D2 Protein
Fanconi Anemia Complementation Group Proteins
Fibroblasts
Gene Expression
Genomic Instability
Herpesvirus 4, Human
Humans
Lymphocytes
RNA
Cell Line, Transformed
Chromosome Fragile Sites
DNA
DNA Replication
Fanconi Anemia
Fanconi Anemia Complementation Group A Protein
Fanconi Anemia Complementation Group D2 Protein
Fanconi Anemia Complementation Group Proteins
Fibroblasts
Gene Expression
Genomic Instability
Herpesvirus 4, Human
Humans
Lymphocytes
RNA
DeCS Terms
CIE Terms
Keywords
DNA replication, DNA:RNA hybrids, Fanconi anemia, cancer, common fragile sites, genomic instability