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Wnt inhibitory factor 1 suppresses cancer stemness and induces cellular senescence
I Ramachandran1, V Ganapathy1, E Gillies2
1Department of Otorhinolaryngology, The University of Oklahoma Health Sciences Center, Oklahoma City, OK, USA.
Abstract:
Hyperactivation of the Wingless-type (Wnt)/β-catenin pathway promotes tumor initiation, tumor growth and metastasis in various tissues. Although there is evidence for the involvement of Wnt/β-catenin pathway activation in salivary gland tumors, the precise mechanisms are unknown. Here we report for the first time that downregulation of the Wnt inhibitory factor 1 (WIF1) is a widespread event in salivary gland carcinoma ex-pleomorphic adenoma (CaExPA). We also show that WIF1 downregulation occurs in the CaExPA precursor lesion pleomorphic adenoma (PA) and indicates a higher risk of progression from benign to malignant tumor. Our results demonstrate that diverse mechanisms including WIF1 promoter hypermethylation and loss of heterozygosity contribute to WIF1 downregulation in human salivary gland tumors. In accordance with a crucial role in suppressing salivary gland tumor progression, WIF1 re-expression in salivary gland tumor cells inhibited cell proliferation, induced more differentiated phenotype and promoted cellular senescence, possibly through upregulation of tumor-suppressor genes, such as p53 and p21. Most importantly, WIF1 significantly diminished the number of salivary gland cancer stem cells and the anchorage-independent cell growth. Consistent with this observation, WIF1 caused a reduction in the expression of pluripotency and stemness markers (OCT4 and c-MYC), as well as adult stem cell self-renewal and multi-lineage differentiation markers, such as WNT3A, TCF4, c-KIT and MYB. Furthermore, WIF1 significantly increased the expression of microRNAs pri-let-7a and pri-miR-200c, negative regulators of stemness and cancer progression. In addition, we show that WIF1 functions as a positive regulator of miR-200c, leading to downregulation of BMI1, ZEB1 and ZEB2, with a consequent increase in downstream targets such as E-cadherin. Our study emphasizes the prognostic and therapeutic potential of WIF1 in human salivary gland CaExPA. Moreover, our findings demonstrate a novel mechanism by which WIF1 regulates cancer stemness and senescence, which might have major implications in the field of cancer biology.
Insights
Downregulation of Wnt inhibitory factor 1 (WIF1) drives salivary gland tumor progression. Restoring WIF1 suppresses cancer stem cells and promotes differentiation, highlighting its therapeutic potential.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- The Wingless-type (Wnt)/β-catenin pathway is hyperactivated in various cancers, including salivary gland tumors, but its precise role remains unclear.
- Wnt inhibitory factor 1 (WIF1) is implicated in tumor suppression, yet its function in salivary gland neoplasms is not well-defined.
Purpose of the Study:
- To investigate the role of WIF1 downregulation in salivary gland tumors, particularly carcinoma ex-pleomorphic adenoma (CaExPA).
- To elucidate the mechanisms of WIF1 downregulation and its impact on tumor progression and cancer stemness.
Main Methods:
- Analysis of WIF1 expression in human salivary gland tumors (PA and CaExPA).
- Investigation of WIF1 promoter hypermethylation and loss of heterozygosity.
- Functional studies involving WIF1 re-expression in salivary gland tumor cells.
- Assessment of stemness markers, microRNA expression, and downstream targets.
Main Results:
- WIF1 downregulation is a frequent event in CaExPA and its precursor, pleomorphic adenoma (PA), correlating with increased progression risk.
- Mechanisms include WIF1 promoter hypermethylation and loss of heterozygosity.
- WIF1 re-expression inhibited proliferation, promoted differentiation and senescence, and reduced cancer stem cells by downregulating OCT4, c-MYC, and stemness regulators.
- WIF1 upregulated tumor suppressors (p53, p21) and tumor-suppressive microRNAs (let-7a, miR-200c), leading to decreased BMI1, ZEB1/2, and increased E-cadherin.
Conclusions:
- WIF1 downregulation is a critical event in salivary gland tumor progression, acting as a prognostic marker.
- WIF1 re-expression offers therapeutic potential by targeting cancer stemness and promoting senescence.
- WIF1 regulates cancer stemness and senescence through novel molecular pathways involving microRNAs and key developmental genes.
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