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Published on: January 12, 2020
NOTCH1 signaling in oral squamous cell carcinoma via a TEL2/SERPINE1 axis
Vasiliki Salameti1,2, Priyanka G Bhosale1,2, Ashley Ames-Draycott1
1Centre for Stem Cells and Regenerative Medicine, King's College London, Tower Wing, Guy's Hospital, London, UK.
Abstract:
Inactivating mutations in the EGF-like ligand binding domain of NOTCH1 are a prominent feature of the mutational landscape of oral squamous cell carcinoma (OSCC). In this study, we investigated NOTCH1 mutations in keratinocyte lines derived from OSCC biopsies that had been subjected to whole exome sequencing. One line, SJG6, was found to have truncating mutations in both NOTCH1 alleles, resulting in loss of NOTCH1 expression. Overexpression of the NOTCH1 intracellular domain (NICD) in SJG6 cells promoted cell adhesion and differentiation, while suppressing proliferation, migration and clonal growth, consistent with the previously reported tumour suppressive function of NOTCH1 in OSCC. Comparative gene expression profiling identified SERPINE1 as being downregulated on NICD overexpression and predicted an interaction between SERPINE1 and genes involved in cell proliferation and migration. Mechanistically, overexpression of NICD resulted in upregulation of ETV7/TEL2, which negatively regulates SERPINE1 expression. Knockdown of SERPINE1 phenocopied the effects of NICD overexpression in culture. Consistent with previous studies and our in vitro findings, there were inverse correlations between ETV7 and SERPINE1 expression and survival in OSCC primary tumours. Our results suggest that the tumour suppressive role of NOTCH1 in OSCC is mediated, at least in part, by inhibition of SERPINE1 via ETV7.
Insights
NOTCH1 mutations are common in oral squamous cell carcinoma (OSCC). Loss of NOTCH1 function promotes OSCC by upregulating SERPINE1, a process reversed by restoring NOTCH1 signaling via ETV7.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Inactivating NOTCH1 mutations are frequent in oral squamous cell carcinoma (OSCC).
- NOTCH1's tumor suppressive role in OSCC is established but its downstream mechanisms require further elucidation.
Purpose of the Study:
- To investigate the functional consequences of NOTCH1 loss-of-function mutations in OSCC.
- To identify downstream effectors mediating NOTCH1's tumor suppressive functions in OSCC.
Main Methods:
- Whole exome sequencing of OSCC-derived keratinocyte lines.
- Overexpression of NOTCH1 intracellular domain (NICD) in mutant cells.
- Comparative gene expression profiling.
- Gene knockdown experiments.
- Correlation analysis in patient tumors.
Main Results:
- A cell line SJG6 with biallelic NOTCH1 mutations showed loss of NOTCH1 expression.
- NICD overexpression in SJG6 cells suppressed proliferation and migration while promoting differentiation.
- NICD overexpression led to downregulation of SERPINE1, mediated by ETV7/TEL2 upregulation.
- SERPINE1 knockdown phenocopied NICD overexpression effects.
- Inverse correlation between ETV7 and SERPINE1 expression and survival in OSCC patients.
Conclusions:
- NOTCH1 loss-of-function in OSCC promotes tumor progression partly through SERPINE1 upregulation.
- The tumor suppressive function of NOTCH1 in OSCC is mediated, in part, by inhibiting SERPINE1 via ETV7.
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