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p73 - NAV3 axis plays a critical role in suppression of colon cancer metastasis
Apoorva Uboveja1, Yatendra Kumar Satija2,3, Fouzia Siraj4
1Dr. B.R. Ambedkar Centre for Biomedical Research, University of Delhi, New Delhi, 110007, India.
Abstract:
p73 is a member of the p53 tumor suppressor family, which transactivates p53-responsive genes and mediates DNA damage response. Recent evidences suggest that p73 exerts its tumor suppressor functions by suppressing metastasis, but the exact mechanism remains unknown. Here, we identify Navigator-3 (NAV3), a microtubule-binding protein, as a novel transcriptional target of p73, which gets upregulated by DNA damage in a p73-dependent manner and plays a vital role in p73-mediated inhibition of cancer cell invasion, migration, and metastasis. Induction of p73 in response to DNA damage leads to rapid increase in endogenous NAV3 mRNA and protein levels. Through bioinformatic analysis, we identified two p73-binding sites in NAV3 promoter. Consistent with this, p73 binding to NAV3 promoter was confirmed through luciferase, Chromatin Immunoprecipitation, and site-directed mutagenesis assays. Abrogation of NAV3 and p73 expression significantly increased the invasion and migration rate of colorectal cancer cells as confirmed by wound-healing, cell invasion, and cell migration assays. Also, knockdown of NAV3 decreased the expression of E-cadherin and increased the expression of other prominent mesenchymal markers such as N-cadherin, Snail, Vimentin, and Fibronectin. Immunohistochemistry analysis revealed the downregulation of both NAV3 and p73 expression in metastatic colon cancer tissues as compared to non-metastatic cancer tissues. Additionally, the expression pattern of NAV3 and p73 showed extensively significant correlation in both non-metastatic and metastatic human colon cancer tissue samples. Taken together, our study provide conclusive evidence that Navigator-3 is a direct transcriptional target of p73 and plays crucial role in response to genotoxic stress in p73-mediated inhibition of cancer cell invasion, migration, and metastasis.
Insights
The tumor suppressor p73 directly targets Navigator-3 (NAV3), a protein crucial for inhibiting cancer cell invasion, migration, and metastasis following DNA damage. Reduced NAV3 and p73 expression correlates with metastatic colon cancer.
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Biology
Background:
- p73, a p53 family member, suppresses tumors by regulating DNA damage response.
- p73's role in inhibiting cancer metastasis is suggested but mechanistically unclear.
Purpose of the Study:
- To identify novel targets of p73 involved in metastasis suppression.
- To elucidate the mechanism by which p73 inhibits cancer cell invasion, migration, and metastasis.
Main Methods:
- Bioinformatic analysis to identify p73-binding sites in the NAV3 promoter.
- Luciferase, Chromatin Immunoprecipitation, and site-directed mutagenesis assays to confirm p73-NAV3 interaction.
- Wound-healing, cell invasion, and migration assays to assess the functional role of NAV3 and p73.
- Immunohistochemistry to analyze NAV3 and p73 expression in human colon cancer tissues.
Main Results:
- Navigator-3 (NAV3) identified as a direct transcriptional target of p73, upregulated by DNA damage.
- p73 binds to the NAV3 promoter, inducing NAV3 expression.
- Abrogation of NAV3 or p73 significantly increased colorectal cancer cell invasion and migration.
- NAV3 knockdown altered expression of epithelial-mesenchymal transition markers.
- Downregulation of NAV3 and p73 observed in metastatic colon cancer, correlating with disease progression.
Conclusions:
- Navigator-3 is a direct transcriptional target of p73.
- p73-mediated upregulation of NAV3 is critical for inhibiting cancer cell invasion, migration, and metastasis.
- NAV3 plays a vital role in the cellular response to genotoxic stress and metastasis suppression.
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