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Published on: April 7, 2017
Galectin-3 mediates cross-talk between K-Ras and Let-7c tumor suppressor microRNA
Ran Levy1, Anat Biran, Francoise Poirier
1Department of Neurobiology, The George S. Wise Faculty of Life Sciences, Tel Aviv University, Tel Aviv, Israel.
Background:
Galectin-3 (Gal-3) and active (GTP-bound) K-Ras contribute to the malignant phenotype of many human tumors by increasing the rate of cell proliferation, survival, and migration. These Gal-3-mediated effects result from a selective binding to K-Ras.GTP, causing increased nanoclustering in the cell membrane and leading to robust Ras signaling. Regulation of the interactions between Gal-3 and active K-Ras is not fully understood.
Methods And Findings:
To gain a better understanding of what regulates the critical interactions between these two proteins, we examined the role of Gal-3 in the regulation of K-Ras by using Gal-3-knockout mouse embryonic-fibroblasts (Gal-3-/- MEFs) and/or Gal-3/Gal-1 double-knockout MEFs. We found that knockout of Gal-3 induced strong downregulation (∼60%) of K-Ras and K-Ras.GTP. The downregulation was somewhat more marked in the double-knockout MEFs, in which we also detected robust inhibition(∼50%) of ERK and Akt activation. These additional effects are probably attributable to inhibition of the weak interactions of K-Ras.GTP with Gal-1. Re-expression of Gal-3 reversed the phenotype of the Gal-3-/- MEFs and dramatically reduced the disappearance of K-Ras in the presence of cycloheximide to the levels seen in wild-type MEFs. Furthermore, phosphorylation of Gal-3 by casein kinase-1 (CK-1) induced translocation of Gal-3 from the nucleus to the cytoplasm and the plasma membrane, leading to K-Ras stabilization accompanied by downregulation of the tumor suppressor miRNA let-7c, known to negatively control K-Ras transcription.
Conclusions:
Our results suggest a novel cross-talk between Gal-3-mediated downregulation of let 7c microRNA (which in turn negatively regulates K-Ras transcription) and elucidates the association among Gal-3 let-7c and K-Ras transcription/translation, cellular compartmentalization and activity.
Insights
Galectin-3 (Gal-3) stabilizes K-Ras by downregulating the tumor suppressor let-7c microRNA. This Gal-3 mechanism impacts K-Ras transcription and cellular activity, offering new therapeutic targets.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Galectin-3 (Gal-3) and active K-Ras (K-Ras.GTP) promote tumor malignancy via proliferation, survival, and migration.
- Gal-3 binds K-Ras.GTP, increasing cell membrane nanoclustering and Ras signaling.
- Regulation of Gal-3 and K-Ras.GTP interactions is not fully understood.
Purpose of the Study:
- To investigate the regulatory mechanisms governing Gal-3 and K-Ras.GTP interactions.
- To elucidate the role of Gal-3 in K-Ras regulation within the cellular context.
Main Methods:
- Utilized Gal-3-knockout (Gal-3-/-) and double-knockout (Gal-3/Gal-1) mouse embryonic fibroblasts (MEFs).
- Assessed K-Ras, K-Ras.GTP, ERK, and Akt activation levels.
- Investigated K-Ras stability using cycloheximide and re-expression of Gal-3.
- Examined the effect of Gal-3 phosphorylation by casein kinase-1 (CK-1) on protein localization and miRNA expression.
Main Results:
- Gal-3 knockout led to significant downregulation (~60%) of K-Ras and K-Ras.GTP.
- Double knockout MEFs showed further inhibition (~50%) of ERK and Akt activation.
- Re-expression of Gal-3 restored K-Ras levels and stability.
- Gal-3 phosphorylation induced its translocation, K-Ras stabilization, and let-7c microRNA downregulation.
Conclusions:
- Discovered novel cross-talk where Gal-3 downregulates let-7c microRNA, which negatively regulates K-Ras transcription.
- Elucidated the association between Gal-3, let-7c, and K-Ras in regulating transcription, translation, and cellular compartmentalization.
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