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Updated: Jan 31, 2026

A Robust Discovery Platform for the Identification of Novel Mediators of Melanoma Metastasis
Published on: March 8, 2022
Ras-Induced miR-146a and 193a Target Jmjd6 to Regulate Melanoma Progression
Viviana Anelli1, Anita Ordas2, Susanne Kneitz3
1Cibio, University of Trento, Trento, Italy.
Abstract:
Ras genes are among the most commonly mutated genes in human cancer; yet our understanding of their oncogenic activity at the molecular mechanistic level is incomplete. To identify downstream events that mediate ras-induced cellular transformation in vivo, we analyzed global microRNA expression in three different models of Ras-induction and tumor formation in zebrafish. Six microRNAs were found increased in Ras-induced melanoma, glioma and in an inducible model of ubiquitous Ras expression. The upregulation of the microRNAs depended on the activation of the ERK and AKT pathways and to a lesser extent, on mTOR signaling. Two Ras-induced microRNAs (miR-146a and 193a) target Jmjd6, inducing downregulation of its mRNA and protein levels at the onset of Ras expression during melanoma development. However, at later stages of melanoma progression, jmjd6 levels were found elevated. The dynamic of Jmjd6 levels during progression of melanoma in the zebrafish model suggests that upregulation of the microRNAs targeting Jmjd6 may be part of an anti-cancer response. Indeed, triple transgenic fish engineered to express a microRNA-resistant Jmjd6 from the onset of melanoma have increased tumor burden, higher infiltration of leukocytes and shorter melanoma-free survival. Increased JMJD6 expression is found in several human cancers, including melanoma, suggesting that the up-regulation of Jmjd6 is a critical event in tumor progression. The following link has been created to allow review of record GSE37015: http://www.ncbi.nlm.nih.gov/geo/query/acc.cgi?token=jjcrbiuicyyqgpc&acc=GSE37015.
Insights
Ras mutations drive cancer by altering microRNA expression. While some microRNAs initially suppress tumor growth by targeting JMJD6, elevated JMJD6 levels later promote melanoma progression in zebrafish, indicating a complex role in cancer development.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Ras genes are frequently mutated in human cancers, but their oncogenic mechanisms remain incompletely understood.
- Identifying downstream effectors of Ras is crucial for understanding tumor initiation and progression.
Purpose of the Study:
- To investigate microRNA expression changes in response to Ras activation in zebrafish cancer models.
- To elucidate the molecular mechanisms by which Ras influences cellular transformation and tumor development.
Main Methods:
- Global microRNA expression profiling in three distinct zebrafish models of Ras induction and tumor formation.
- Analysis of microRNA dependency on ERK, AKT, and mTOR signaling pathways.
- Validation of microRNA targets, specifically JMJD6, using mRNA and protein level assessments.
Main Results:
- Six microRNAs were consistently upregulated in Ras-induced melanoma and glioma.
- Ras-induced microRNAs (miR-146a, 193a) initially downregulated JMJD6, but JMJD6 levels increased during later melanoma progression.
- Overexpression of microRNA-resistant JMJD6 in zebrafish led to increased tumor burden and reduced survival.
Conclusions:
- Ras activation alters microRNA expression, influencing key tumor suppressors like JMJD6.
- The dynamic regulation of JMJD6 by microRNAs suggests a complex role in cancer progression, potentially acting as an anti-cancer response initially.
- Elevated JMJD6 is implicated in tumor progression and may represent a therapeutic target in human cancers.
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