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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
JMJD5 interacts with p53 and negatively regulates p53 function in control of cell cycle and proliferation
Xiaobin Huang1, Shuilian Zhang1, Hongyan Qi1
1Department of Pathology and Pathophysiology, Research Center for Air Pollution and Health, Zhejiang University School of Medicine, Hangzhou 310058, China.
Abstract:
JMJD5 is a Jumonji C domain-containing demethylase/hydroxylase shown to be essential in embryological development, osteoclastic maturation, circadian rhythm regulation and cancer metabolism. However, its role and underlying mechanisms in oncogenesis remain unclear. Here, we demonstrate that JMJD5 forms complex with the tumor suppressor p53 by interacting with p53 DNA-binding domain (DBD), and negatively regulates its activity. Downregulation of JMJD5 resulted in increased expression of multiple p53 downstream genes, such as the cell cycle inhibitor CDKN1A and DNA repair effector P53R2, only in p53-proficient lung cancer cells. Upon DNA damage, the JMJD5-p53 association decreased, and thereby, promoted p53 recruitment to the target genes and stimulated its transcriptional activity. Furthermore, JMJD5 facilitated the cell cycle progression in a p53-dependent manner under both normal and DNA damage conditions. Depletion of JMJD5 inhibited cell proliferation and enhanced adriamycin-induced cell growth suppression in the presence of p53. Collectively, our results reveal that JMJD5 is a novel binding partner of p53 and it functions as a positive modulator of cell cycle and cell proliferation mainly through the repression of p53 pathway. Our study extends the mechanistic understanding of JMJD5 function in cancer development and implicates JMJD5 as a potential therapeutic target for cancer.
Insights
JMJD5 binds to the tumor suppressor p53, inhibiting its activity and promoting cell cycle progression. JMJD5
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- JMJD5 (Jumonji C domain-containing demethylase/hydroxylase) has known roles in development and metabolism, but its oncogenic mechanisms are unclear.
- Understanding JMJD5's interactions is crucial for cancer research.
Purpose of the Study:
- To investigate the role and molecular mechanisms of JMJD5 in cancer.
- To identify JMJD5's interaction partners and their functional consequences in oncogenesis.
Main Methods:
- Co-immunoprecipitation assays to detect JMJD5-p53 complex formation.
- Western blotting to assess gene expression changes.
- Cell proliferation assays and cell cycle analysis.
Main Results:
- JMJD5 directly interacts with the DNA-binding domain of p53, negatively regulating its transcriptional activity.
- JMJD5 downregulation increases p53 target gene expression (e.g., CDKN1A, P53R2) in p53-proficient lung cancer cells.
- JMJD5 depletion inhibits cell proliferation and enhances drug-induced cell growth suppression, dependent on p53 status.
Conclusions:
- JMJD5 is a novel binding partner of p53, acting as a positive regulator of cell cycle and proliferation by repressing the p53 pathway.
- JMJD5's function in cancer development is elucidated, highlighting its potential as a therapeutic target.
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