Gene/Protein
Disease
Symptom
Drug
Enzyme
Compound
Pivot Concepts:
Gene/Protein
Disease
Symptom
Drug
Enzyme
Compound
Target Concepts:
Gene/Protein
Disease
Symptom
Drug
Enzyme
Compound
Query: UNIPROT:P04637 (
p53
)
77,613
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
Proper resolution of stalled replication forks is essential for genome stability. Purification of
FBH1
, a UvrD DNA helicase, identified a physical interaction with replication protein A (RPA), the major cellular single-stranded DNA (ssDNA)-binding protein complex. Compared with control cells,
FBH1
-depleted cells responded to replication stress with considerably fewer double-strand breaks (DSBs), a dramatic reduction in the activation of ATM and DNA-PK and phosphorylation of RPA2 and
p53
, and a significantly increased rate of survival. A minor decrease in ssDNA levels was also observed. All these phenotypes were rescued by wild-type
FBH1
, but not a
FBH1
mutant lacking helicase activity.
FBH1
depletion had no effect on other forms of genotoxic stress in which DSBs form by means that do not require ssDNA intermediates. In response to catastrophic genotoxic stress, apoptosis prevents the persistence and propagation of DNA lesions. Our findings show that
FBH1
helicase activity is required for the efficient induction of DSBs and apoptosis specifically in response to DNA replication stress.
...
PMID:FBH1 promotes DNA double-strand breakage and apoptosis in response to DNA replication stress. 2331
The molecular events occurring following the disruption of DNA replication forks are poorly characterized, despite extensive use of replication inhibitors such as hydroxyurea in the treatment of malignancies. Here, we identify a key role for the
FBH1
helicase in mediating DNA double-strand break formation following replication inhibition. We show that
FBH1
-deficient cells are resistant to killing by hydroxyurea, and exhibit impaired activation of the pro-apoptotic factor
p53
, consistent with decreased DNA double-strand break formation. Similar findings were obtained in murine ES cells carrying disrupted alleles of Fbh1. We also show that
FBH1
through its helicase activity co-operates with the MUS81 nuclease in promoting the endonucleolytic DNA cleavage following prolonged replication stress. Accordingly, MUS81 and EME1-depleted cells show increased resistance to the cytotoxic effects of replication stress. Our data suggest that
FBH1
helicase activity is required to eliminate cells with excessive replication stress through the generation of MUS81-induced DNA double-strand breaks.
...
PMID:FBH1 co-operates with MUS81 in inducing DNA double-strand breaks and cell death following replication stress. 2336 Oct 13