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Published on: February 18, 2022
Dual Role of the Alternative Reading Frame ARF Protein in Cancer
Rosa Fontana1, Michela Ranieri2, Girolama La Mantia3
1Department of Pharmacology, Moores Cancer Center, University of California, San Diego, La Jolla, CA 92093, USA. rofontana@ucsd.edu.
Abstract:
The CDKN2a/ARF locus expresses two partially overlapping transcripts that encode two distinct proteins, namely p14ARF (p19Arf in mouse) and p16INK4a, which present no sequence identity. Initial data obtained in mice showed that both proteins are potent tumor suppressors. In line with a tumor-suppressive role, ARF-deficient mice develop lymphomas, sarcomas, and adenocarcinomas, with a median survival rate of one year of age. In humans, the importance of ARF inactivation in cancer is less clear whereas a more obvious role has been documented for p16INK4a. Indeed, many alterations in human tumors result in the elimination of the entire locus, while the majority of point mutations affect p16INK4a. Nevertheless, specific mutations of p14ARF have been described in different types of human cancers such as colorectal and gastric carcinomas, melanoma and glioblastoma. The activity of the tumor suppressor ARF has been shown to rely on both p53-dependent and independent functions. However, novel data collected in the last years has challenged the traditional and established role of this protein as a tumor suppressor. In particular, tumors retaining ARF expression evolve to metastatic and invasive phenotypes and in humans are associated with a poor prognosis. In this review, the recent evidence and the molecular mechanisms of a novel role played by ARF will be presented and discussed, both in pathological and physiological contexts.
Insights
The tumor suppressor protein p14ARF (p19Arf in mouse) may paradoxically promote cancer progression. Recent findings challenge its traditional role, suggesting retained ARF expression is linked to aggressive tumors and poor prognosis.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- The CDKN2a/ARF locus encodes p14ARF and p16INK4a, both implicated in tumor suppression.
- While p16INK4a's role in human cancers is well-established, p14ARF's function is less clear.
- ARF-deficient mice exhibit high tumor incidence, supporting its tumor-suppressive function.
Purpose of the Study:
- To review recent evidence challenging the established tumor-suppressive role of ARF.
- To discuss novel molecular mechanisms and contexts of ARF's dual role in cancer.
- To explore the implications of retained ARF expression in tumor pathology.
Main Methods:
- Literature review of recent studies on ARF function in cancer.
- Analysis of molecular mechanisms underlying ARF's dual role.
- Discussion of pathological and physiological contexts of ARF activity.
Main Results:
- Novel data suggest that tumors with retained ARF expression can exhibit enhanced metastatic and invasive phenotypes.
- In humans, ARF expression in tumors is associated with a poor prognosis.
- ARF's tumor-suppressive activity involves both p53-dependent and independent pathways.
Conclusions:
- The traditional view of ARF as solely a tumor suppressor is being challenged.
- Retained ARF expression may contribute to tumor progression and invasiveness.
- Further research is needed to fully elucidate ARF's complex role in cancer pathogenesis.
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