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Promyelocytic leukemia proteins regulate fanconi anemia gene expression

Title
Promyelocytic leukemia proteins regulate fanconi anemia gene expression
Author(s)
Munkhjargal, AnudariKim, Myung-JinKim, Da-YeonJeon, Young-JunKee, YounghoonKim, Lark-KyunKim, Yong-Hwan
Issued Date
2021-08
Citation
International Journal of Molecular Sciences, v.22, no.15, pp.7782
Type
Article
Author Keywords
PML nuclear bodyFanconi anemiainterstrand DNA crosslinkCHK1 inhibitors
Keywords
DNA-DAMAGEMONOUBIQUITINATED FANCD2CHECKPOINT PATHWAYNUCLEAR-BODIESPMLCHK1DYNAMICS
ISSN
1661-6596
Abstract
Promyelocytic leukemia (PML) protein is the core component of subnuclear structures called PML nuclear bodies that are known to play important roles in cell survival, DNA damage responses, and DNA repair. Fanconi anemia (FA) proteins are required for repairing interstrand DNA crosslinks (ICLs). Here we report a novel role of PML proteins, regulating the ICL repair pathway. We found that depletion of the PML protein led to the significant reduction of damage-induced FANCD2 mono-ubiquitination and FANCD2 foci formation. Consistently, the cells treated with siRNA against PML showed enhanced sensitivity to a crosslinking agent, mitomycin C. Further studies showed that depletion of PML reduced the protein expression of FANCA, FANCG, and FANCD2 via reduced transcriptional activity. Interestingly, we observed that damage-induced CHK1 phosphorylation was severely impaired in cells with depleted PML, and we demonstrated that CHK1 regulates FANCA, FANCG, and FANCD2 transcription. Finally, we showed that inhibition of CHK1 phosphorylation further sensitized cancer cells to mitomycin C. Taken together, these findings suggest that the PML is critical for damage-induced CHK1 phosphorylation, which is important for FA gene expression and for repairing ICLs. © 2021 by the authors. Licensee MDPI, Basel, Switzerland.
URI
http://hdl.handle.net/20.500.11750/15497
DOI
10.3390/ijms22157782
Publisher
Multidisciplinary Digital Publishing Institute (MDPI)
Related Researcher
  • 기영훈 Kee, Younghoon
  • Research Interests Genomic instability; DNA damage; DNA replication; DNA repair; Protein ubiquitination; Genome stability; DNA damage repair; Ubiquitin and proteolysis; tumor suppressive mechanisms
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Appears in Collections:
Department of New Biology Genomic Instability Lab 1. Journal Articles

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