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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
HUWE1 controls the development of non-small cell lung cancer through down-regulation of p53
Dong Yang1,2, Daomei Cheng3, Qiu Tu1
1Key Laboratory of Animal Models and Human Disease Mechanisms of Chinese Academy of Sciences/Key Laboratory of Bioactive Peptides of Yunnan Province, Kunming Institute of Zoology, Chinese Academy of Sciences, Kunming, Yunnan 650223, China.
Abstract:
Lung cancer is the most frequent cancer type and the leading cause of tumor-associated deaths worldwide. TP53 is an important tumor suppressor gene and is frequently inactivated in lung cancer. E3 ligases targeting p53, such as MDM2, are involved in the development of lung cancer. The E3 ligase HUWE1, which targets many tumor-associated proteins including p53, has been reported to be highly expressed in lung cancer; however, its role in lung tumorigenesis is unclear. Methods: The expression of HUWE1 and p53 in lung cancer cells was modulated and the phenotypes were assessed by performing soft agar colony forming assays, cell cycle analysis, BrdU incorporation assays, and xenograft tumor growth assays. The effect on tumorigenesis in genetically-engineered mice was also analyzed. The mechanism through which HUWE1 sustained lung cancer cell malignancy was confirmed by western blotting. HUWE1 expression in clinical lung cancer was identified by immunohistochemistry and validated by analyzing lung adenocarcinoma and lung squamous carcinoma samples from the Cancer Genome Atlas (TCGA) database. Finally, we assessed the association between HUWE1 expression and patient outcome using online survival analysis software including survival information from the caBIG, GEO, and TCGA database. Results: Inactivation of HUWE1 in a human lung cancer cell line inhibited proliferation, colony-forming capacity, and tumorigenicity. Mechanistically, this phenotype was driven by increased p53, which was due to attenuated proteasomal degradation by HUWE1. Up-regulation of p53 inhibited cancer cell malignancy, mainly through the induction of p21 expression and the down-regulation of HIF1α. Huwe1 deletion completely abolished the development of EGFRVIII-induced lung cancer in Huwe1 conditional knockout mice. Furthermore, survival analysis of lung cancer patients showed that increased HUWE1 expression is significantly associated with worse prognosis. Conclusion: Our data suggest that HUWE1 plays a critical role in lung cancer and that the HUWE1-p53 axis might be a potential target for lung cancer therapy.
Insights
High expression of HUWE1 E3 ligase drives lung cancer progression by degrading p53. Inhibiting HUWE1 shows therapeutic potential for lung cancer patients, improving prognosis.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Lung cancer is a leading cause of cancer deaths globally.
- TP53 tumor suppressor gene inactivation is common in lung cancer.
- E3 ligases like MDM2 and HUWE1 influence lung cancer development, with HUWE1's role unclear.
Purpose of the Study:
- To investigate the role of HUWE1 in lung tumorigenesis.
- To elucidate the mechanism by which HUWE1 affects lung cancer malignancy.
- To evaluate HUWE1 as a potential therapeutic target in lung cancer.
Main Methods:
- Modulation of HUWE1 and p53 expression in lung cancer cells and mice.
- Phenotypic assessments including soft agar assays, cell cycle analysis, and xenograft studies.
- Analysis of HUWE1 expression in clinical samples (TCGA) and correlation with patient survival.
Main Results:
- HUWE1 inactivation inhibited lung cancer cell proliferation, colony formation, and tumorigenicity.
- HUWE1 inhibition led to increased p53 levels by reducing its proteasomal degradation.
- Increased p53 suppressed malignancy via p21 induction and HIF1α downregulation; HUWE1 deletion prevented lung cancer in mice.
- High HUWE1 expression correlated with poor patient prognosis.
Conclusions:
- HUWE1 plays a critical role in promoting lung cancer.
- The HUWE1-p53 axis is a significant factor in lung cancer development.
- Targeting the HUWE1-p53 pathway presents a promising therapeutic strategy for lung cancer.
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