Ras-Induced miR-146a and 193a Target Jmjd6 to Regulate Melanoma Progression

Viviana Anelli1, Anita Ordas2, Susanne Kneitz3

  • 1Cibio, University of Trento, Trento, Italy.

Frontiers in Genetics
|January 9, 2019
PubMed

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.

Related Concept Videos

The Ras Gene02:38

The Ras Gene

The Ras-gene-encoded proteins are regulators of signaling pathways controlling cell proliferation, differentiation, or cell survival. The Ras-gene family in humans constitutes three primary members—the HRas, NRas, and KRas. These genes code for four functionally distinct yet closely related proteins—the HRas, NRas, KRas4A, and KRas4B. The involvement of mutant Ras genes in human cancer was first discovered in 1982 and is among the most common causes of human tumorigenesis.
Ras is a...
7.3K
Small GTPases - Ras and Rho01:24

Small GTPases - Ras and Rho

Ras and Rho are small monomeric GTPases that act downstream of receptor tyrosine kinase (RTK) and regulate various cellular processes. These GTPases switch between active and inactive states by binding to guanine nucleotides.
Three regulatory proteins control their activity:
5.4K
Positive Regulator Molecules01:45

Positive Regulator Molecules

To consistently produce healthy cells, the cell cycle—the process that generates daughter cells—must be precisely regulated.
136.2K
GTPases and their Regulation02:14

GTPases and their Regulation

Guanine nucleotide-binding proteins (G-proteins), also known as GTPases, are a superfamily of proteins that regulate many cellular processes, such as cell signaling, vesicular transport, and the regulation of cell shape and motility. Mutation or dysfunction of these proteins can lead to disease. There are around 40,000 known G-proteins that can broadly be classified into two groups ‒  small G-proteins consisting of a single domain and large multi-domain G-proteins.
Large G-proteins,...
9.8K
Regulated Protein Degradation02:58

Regulated Protein Degradation

It is vital to regulate the activity of enzymatic as well as non-enzymatic proteins inside the cell. This can be achieved either through creating a balance between their rate of synthesis and degradation or regulating the intrinsic activity of the protein. Both these regulation mechanisms play an essential role in the normal functioning of cells.
Protein degradation plays two important roles in the cells. It helps to protect cells from misfolded or damaged proteins before they lead to a...
8.8K
Master Transcription Regulators02:23

Master Transcription Regulators

Master transcription regulators are regulatory proteins that are predominantly responsible for regulating the expression of multiple genes. Often these genes work in concert to drive a  complex process. Activation of a master transcription regulator can lead to a cascade of transcriptional activation necessary for that outcome. These regulators can directly bind to the regulatory sequences of the various genes involved, or they can indirectly regulate transcription by binding to regulatory...
7.8K