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Updated: Jan 27, 2026

Profiling of Estrogen-regulated MicroRNAs in Breast Cancer Cells
Published on: February 21, 2014
MiR-195 regulates mitochondrial function by targeting mitofusin-2 in breast cancer cells
Paresh Kumar Purohit1,2, Ruairidh Edwards3, Kostas Tokatlidis3
1a Functional Genomics Unit , CSIR-Institute of Genomics and Integrative Biology , Delhi , India.
Abstract:
Mitochondrial dynamics is a highly dysregulated process in cancer. Apoptosis and mitochondrial fission are two concurrent events wherein increased mitochondrial fragmentation serves as a hallmark of apoptosis. We have shown earlier that miR-195 exerts pro-apoptotic effects in breast cancer cells. Herein, we have demonstrated miR-195 as a modulator of mitochondrial dynamics and function. Imaging experiments upon miR-195 treatment have shown that mitochondria undergo extensive fission. We validated mitofusin2 as a potential target of miR-195. This may provide a molecular explanation for the respiratory defects induced by miR-195 over-expression in breast cancer cells. Active, but not total, mitochondrial mass, was reduced with increasing levels of miR-195. We have further shown that miR-195 enhances mitochondrial SOD-2 expression but does not affect PINK1 levels in breast cancer cells. Collectively, we have revealed that miR-195 is a modulator of mitochondrial dynamics by targeting MFN2 thereby impairing mitochondrial function. Concomitantly, it enhances the scavenger of reactive oxygen species (SOD-2) to maintain moderate levels of oxidative stress. Our findings suggest a therapeutic potential of miR-195 in both ER-positive as well as ER-negative breast cancer cells.
Insights
MicroRNA-195 (miR-195) promotes breast cancer cell death by fragmenting mitochondria and targeting MFN2. It also boosts SOD-2 to manage oxidative stress, suggesting therapeutic potential.
Area of Science:
- Molecular Biology
- Cancer Research
- Mitochondrial Biology
Background:
- Mitochondrial dynamics are altered in cancer.
- miR-195 shows pro-apoptotic effects in breast cancer.
- Mitochondrial fragmentation is a hallmark of apoptosis.
Purpose of the Study:
- To investigate miR-195's role in modulating mitochondrial dynamics and function in breast cancer.
- To identify molecular targets of miR-195 involved in mitochondrial regulation.
Main Methods:
- miR-195 mimic transfection in breast cancer cells.
- Mitochondrial imaging and analysis.
- Western blotting to assess protein levels (MFN2, SOD-2, PINK1).
Main Results:
- miR-195 induces significant mitochondrial fission.
- Mitofusin 2 (MFN2) is identified as a direct target of miR-195.
- miR-195 overexpression leads to reduced active mitochondrial mass and impaired mitochondrial function.
- miR-195 enhances SOD-2 expression while not affecting PINK1 levels.
Conclusions:
- miR-195 modulates mitochondrial dynamics by targeting MFN2, impairing mitochondrial function.
- miR-195 enhances antioxidant defense via SOD-2, maintaining moderate oxidative stress.
- miR-195 demonstrates therapeutic potential for both ER-positive and ER-negative breast cancers.
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