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Updated: May 8, 2026

Genome-wide Screen for miRNA Targets Using the MISSION Target ID Library
Published on: April 6, 2012
The diverse role of miR-31 in regulating cancer associated phenotypes
Eeva M Laurila1, Anne Kallioniemi
1Institute of Biomedical Technology, University of Tampere and BioMediTech, Tampere, Finland.
Abstract:
In the past 10 years research on miRNAs has demonstrated their central role in regulating gene expression both in normal and diseased tissue. The expression of miRNAs is widely altered in cancer, leading to abnormal expression of the genes regulated by these miRNAs, and subsequently alterations in entire molecular networks and pathways. One especially interesting cancer-related miRNA is miR-31 which is frequently altered in a large variety of cancers. The functional role of miR-31 is extremely complex and miR-31 can hold both tumor suppressive and oncogenic roles in different tumor types. The phenotype caused by aberrant miR-31 expression seems to be strongly dependent on the endogenous expression levels. For example, in breast cancer loss of miR-31 expression is associated with high risk of metastases, whereas in colorectal cancer high miR-31 expression correlates with advanced disease stage. This review summarizes the complex expression patterns of miR-31 in human cancers, describes the variable phenotypes caused by altered miR-31 expression, and highlights the current knowledge on the genes targeted by miR-31.
Insights
MicroRNAs (miRNAs) regulate genes in cancer. This review explores miR-31
Area of Science:
- Molecular Biology
- Genetics
- Oncology
Background:
- MicroRNAs (miRNAs) are key regulators of gene expression in normal and diseased tissues.
- Altered miRNA expression is common in cancer, affecting molecular pathways.
- miR-31 is frequently dysregulated across various human cancers.
Purpose of the Study:
- To summarize miR-31 expression patterns in human cancers.
- To describe the diverse phenotypes associated with aberrant miR-31.
- To highlight current knowledge on miR-31 target genes.
Main Methods:
- Literature review of studies on miR-31 in cancer.
- Analysis of expression patterns and functional roles.
- Compilation of data on miR-31 target genes.
Main Results:
- miR-31 exhibits complex expression patterns in different cancers.
- miR-31 can function as both a tumor suppressor and oncogene.
- Phenotypic effects of miR-31 depend on expression levels and cancer type.
Conclusions:
- miR-31's role in cancer is context-dependent.
- Understanding miR-31's dual role is crucial for cancer research.
- Further investigation into miR-31 targets and pathways is warranted.
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