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Inducible and Reversible Dominant-negative (DN) Protein Inhibition
Published on: January 7, 2019
Translation regulatory factor RBM3 is a proto-oncogene that prevents mitotic catastrophe
S M Sureban1, S Ramalingam, G Natarajan
1Department of Medicine, University of Oklahoma Health Sciences Center, Oklahoma City, OK 73126, USA.
Abstract:
RNA-binding proteins play a key role in post-transcriptional regulation of mRNA stability and translation. We have identified that RBM3, a translation regulatory protein, is significantly upregulated in human tumors, including a stage-dependent increase in colorectal tumors. Forced RBM3 overexpression in NIH3T3 mouse fibroblasts and SW480 human colon epithelial cells increases cell proliferation and development of compact multicellular spheroids in soft agar suggesting the ability to induce anchorage-independent growth. In contrast, downregulating RBM3 in HCT116 colon cancer cells with specific siRNA decreases cell growth in culture, which was partially overcome when treated with prostaglandin E(2), a product of cyclooxygenase (COX)-2 enzyme activity. Knockdown also resulted in the growth arrest of tumor xenografts. We have also identified that RBM3 knockdown increases caspase-mediated apoptosis coupled with nuclear cyclin B1, and phosphorylated Cdc25c, Chk1 and Chk2 kinases, implying that under conditions of RBM3 downregulation, cells undergo mitotic catastrophe. RBM3 enhances COX-2, IL-8 and VEGF mRNA stability and translation. Conversely, RBM3 knockdown results in loss in the translation of these transcripts. These data demonstrate that the RNA stabilizing and translation regulatory protein RBM3 is a novel proto-oncogene that induces transformation when overexpressed and is essential for cells to progress through mitosis.
Insights
The RNA-binding protein RBM3 is upregulated in human tumors and promotes cell proliferation and anchorage-independent growth. Downregulating RBM3 halts tumor growth and induces mitotic catastrophe, identifying it as a proto-oncogene.
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Biology
Background:
- RNA-binding proteins regulate mRNA stability and translation.
- RBM3, a translation regulatory protein, is implicated in cancer biology.
Purpose of the Study:
- To investigate the role of RBM3 in human tumors and its impact on cell growth and transformation.
- To elucidate the molecular mechanisms by which RBM3 influences cancer progression.
Main Methods:
- RBM3 expression analysis in human tumors.
- Overexpression and knockdown studies in cell lines (NIH3T3, SW480, HCT116).
- Soft agar assays, xenograft studies, apoptosis assays, and Western blotting.
Main Results:
- RBM3 is upregulated in human tumors, particularly colorectal tumors.
- RBM3 overexpression promotes cell proliferation and anchorage-independent growth.
- RBM3 knockdown inhibits tumor xenograft growth, induces mitotic catastrophe, and affects mRNA translation of key genes (COX-2, IL-8, VEGF).
Conclusions:
- RBM3 functions as a proto-oncogene, driving cellular transformation and tumor progression.
- RBM3 is essential for cell cycle progression and mitosis.
- RBM3 regulates the stability and translation of specific oncogenic transcripts.
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