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Published on: September 29, 2018
Disruption of TP63-miR-27a* Feedback Loop by Mutant TP53 in Head and Neck Cancer
Nikhil S Chari1, Cristina Ivan2, Xiandong Le1
1Department of Head and Neck Surgery, The University of Texas MD Anderson Cancer Center, Houston, TX.
Background:
Alterations in the epidermal growth factor receptor and PI3K pathways in head and neck squamous cell carcinomas (HNSCCs) are frequent events that promote tumor progression. Ectopic expression of the epidermal growth factor receptor-targeting microRNA (miR), miR-27a* (miR-27a-5p), inhibits tumor growth. We sought to identify mechanisms mediating repression of miR-27a* in HNSCC, which have not been previously identified.
Methods:
We quantified miR-27a* in 47 oral cavity squamous cell carcinoma patient samples along with analysis of miR-27a* in 73 oropharyngeal and 66 human papillomavirus-positive (HPV+) samples from The Cancer Genome Atlas. In vivo and in vitro TP53 models engineered to express mutant TP53, along with promoter analysis using chromatin immunoprecipitation and luciferase assays, were used to identify the role of TP53 and TP63 in miR-27a* transcription. An HNSCC cell line engineered to conditionally express miR-27a* was used in vitro to determine effects of miR-27a* on target genes and tumor cells.
Results:
miR-27a* expression was repressed in 47 oral cavity tumor samples vs matched normal tissue (mean log2 difference = -0.023, 95% confidence interval = -0.044 to -0.002; two-sided paired t test, P = .03), and low miR-27a* levels were associated with poor survival in HPV+ and oropharyngeal HNSCC samples. Binding of ΔNp63α to the promoter led to an upregulation of miR-27a*. In vitro and in vivo findings showed that mutant TP53 represses the miR-27a* promoter, downregulating miR-27a* levels. ΔNp63α and nucleoporin 62, a protein involved in ΔNP63α transport, were validated as novel targets of miR-27a*.
Conclusion:
Our results characterize a negative feedback loop between TP63 and miR-27a*. Genetic alterations in TP53, a frequent event in HNSCC, disrupt this regulatory loop by repressing miR-27a* expression, promoting tumor survival.
Insights
Mutant TP53 represses miR-27a* in head and neck cancers, disrupting a feedback loop with TP63 and promoting tumor survival. This finding reveals a new mechanism driving HNSCC progression.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Head and neck squamous cell carcinomas (HNSCCs) frequently exhibit alterations in epidermal growth factor receptor and PI3K pathways, driving tumor progression.
- Epidermal growth factor receptor-targeting microRNA (miR), miR-27a*, inhibits tumor growth when ectopically expressed.
- Mechanisms of miR-27a* repression in HNSCC remain largely unidentified.
Purpose of the Study:
- To identify mechanisms responsible for the repression of miR-27a* in HNSCC.
- To investigate the role of TP53 and TP63 in the transcriptional regulation of miR-27a*.
- To determine the impact of miR-27a* on target genes and tumor cells in HNSCC.
Main Methods:
- Quantification of miR-27a* in patient-derived HNSCC samples and TCGA datasets.
- In vivo and in vitro studies using TP53 models and promoter analysis (chromatin immunoprecipitation, luciferase assays) to assess TP53 and TP63 roles.
- Engineering an HNSCC cell line for conditional miR-27a* expression to evaluate its effects on target genes and cellular behavior.
Main Results:
- miR-27a* expression was significantly repressed in oral cavity tumors compared to normal tissue.
- Low miR-27a* levels correlated with poorer survival in human papillomavirus-positive (HPV+) and oropharyngeal HNSCC.
- Mutant TP53 was found to repress the miR-27a* promoter, leading to decreased miR-27a* levels, while ΔNp63α binding upregulated miR-27a*.
- ΔNp63α and nucleoporin 62 were identified as novel targets of miR-27a*.
Conclusions:
- A negative feedback loop exists between TP63 and miR-27a* in HNSCC.
- Genetic alterations in TP53 disrupt this regulatory loop, leading to miR-27a* repression and promoting tumor survival.
- Understanding this mechanism offers potential therapeutic targets for HNSCC.
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