Related Experiment Video
Updated: Apr 6, 2026

Genome-wide Screen for miRNA Targets Using the MISSION Target ID Library
Published on: April 6, 2012
Functional microRNA high throughput screening reveals miR-9 as a central regulator of liver oncogenesis by affecting
Alexandra Drakaki1,2, Maria Hatziapostolou3, Christos Polytarchou4
1Division of Hematology/Oncology, David Geffen School of Medicine, University of California, Los Angeles, Los Angeles, CA, USA. adrakaki@mednet.ucla.edu.
Background:
Hepatocellular carcinoma (HCC) is the second leading cause of cancer-related deaths, reflecting the aggressiveness of this type of cancer and the absence of effective therapeutic regimens. MicroRNAs have been involved in the pathogenesis of different types of cancers, including liver cancer. Our aim was to identify microRNAs that have both functional and clinical relevance in HCC and examine their downstream signaling effectors.
Methods:
MicroRNA and gene expression levels were measured by quantitative real-time PCR in HCC tumors and controls. A TargetScan algorithm was used to identify miR-9 downstream direct targets.
Results:
A high-throughput screen of the human microRNAome revealed 28 microRNAs as regulators of liver cancer cell invasiveness. MiR-9, miR-21 and miR-224 were the top inducers of HCC invasiveness and also their expression was increased in HCC relative to control liver tissues. Integration of the microRNA screen and expression data revealed miR-9 as the top microRNA, having both functional and clinical significance. MiR-9 levels correlated with HCC tumor stage and miR-9 overexpression induced SNU-449 and HepG2 cell growth, invasiveness and their ability to form colonies in soft agar. Bioinformatics and 3'UTR luciferase analyses identified E-cadherin (CDH1) and peroxisome proliferator-activated receptor alpha (PPARA) as direct downstream effectors of miR-9 activity. Inhibition of PPARA suppressed CDH1 mRNA levels, suggesting that miR-9 regulates CDH1 expression directly through binding in its 3'UTR and indirectly through PPARA. On the other hand, miR-9 inhibition of overexpression suppressed HCC tumorigenicity and invasiveness. PPARA and CDH1 mRNA levels were decreased in HCC relative to controls and were inversely correlated with miR-9 levels.
Conclusions:
Taken together, this study revealed the involvement of the miR-9/PPARA/CDH1 signaling pathway in HCC oncogenesis.
Insights
This study identifies microRNA-9 (miR-9) as a key regulator in hepatocellular carcinoma (HCC) development. MiR-9 promotes HCC growth and invasiveness by targeting PPARA and CDH1, offering potential therapeutic targets for liver cancer.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Hepatocellular carcinoma (HCC) is a leading cause of cancer mortality globally.
- Effective therapeutic strategies for HCC remain limited.
- MicroRNAs play a crucial role in the development of various cancers, including liver cancer.
Purpose of the Study:
- To identify microRNAs with functional and clinical relevance in HCC.
- To investigate the downstream signaling pathways regulated by these microRNAs.
Main Methods:
- Quantitative real-time PCR was used to measure microRNA and gene expression levels in HCC tissues and controls.
- A high-throughput screen identified microRNA regulators of liver cancer cell invasiveness.
- Bioinformatics and 3'UTR luciferase assays identified direct targets of miR-9.
Main Results:
- MiR-9, miR-21, and miR-224 were identified as top inducers of HCC invasiveness, with elevated expression in HCC.
- MiR-9 levels correlated with HCC tumor stage and promoted cell growth, invasiveness, and colony formation.
- E-cadherin (CDH1) and peroxisome proliferator-activated receptor alpha (PPARA) were identified as direct downstream targets of miR-9; PPARA inhibition reduced CDH1 levels.
Conclusions:
- The miR-9/PPARA/CDH1 signaling pathway is implicated in HCC oncogenesis.
- MiR-9 overexpression promotes HCC tumorigenicity and invasiveness.
- Decreased PPARA and CDH1 levels in HCC inversely correlate with miR-9 levels.
More Related Videos
08:50In Vitro Cultivation Techniques for Modeling Liver Organogenesis, Building Assembloids, and Designing Synthetic Tissues using Human Cell Lines
Published on: April 18, 2025
09:45An In Vitro Protocol for Evaluating MicroRNA Levels, Functions, and Associated Target Genes in Tumor Cells
Published on: May 21, 2019
Related Concept Videos
MicroRNAs
MicroRNAs