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Updated: Jun 17, 2026

Spatial and Temporal Control of Murine Melanoma Initiation from Mutant Melanocyte Stem Cells
Published on: June 7, 2019
Oncogenic B-Raf(V600E) induces spindle abnormalities, supernumerary centrosomes, and aneuploidy in human melanocytic
Yongping Cui1, Meghan K Borysova, Joseph O Johnson
1Department of Molecular Oncology and Analytic Microscopy Core Facility, H. Lee Moffitt Cancer Center and Research Institute and Cancer Biology Graduate Program, University of South Florida, Tampa, Florida 33612, USA.
Abstract:
Activating B-Raf mutations arise in 60% to 70% of human melanomas and are thought to play a vital role in tumorigenesis, although how this occurs remains poorly understood. Wild-type B-Raf is critical for normal mitosis of human somatic cells, suggesting that mutational activation of B-Raf might compromise mitosis. We examined this hypothesis by introducing oncogenic mutant B-Raf(V600E) into established human melanoma cells, assessing the effects on mitosis and their possible relationship to extracellular signal-regulated kinase (ERK) pathway activation. Exogenous expression of this activated B-Raf mutant led to a high incidence of aberrant spindles and supernumerary centrosomes. These mitotic abnormalities were suppressed by expression of a B-Raf(V600E) mutant-specific shRNA or by the addition of the mitogen-activated protein/ERK kinase-specific inhibitor U0126. Mitotic abnormalities generated by B-Raf(V600E) also caused missegregation of chromosomes leading to aneuploidy. Because activating B-Raf mutations are detected frequently in benign nevi, we extended our studies to primary human melanocytes. Remarkably, short-term expression of B-Raf(V600E) was sufficient to induce aneuploidy in human melanocytes or in immortalized human mammary epithelial cells. Collectively, our studies identify a novel role for the B-Raf oncogene in driving aneuploidy in melanocytic cells. We propose that disruption of mitotic controls by oncogenic B-Raf has important implications for understanding melanoma tumor development.
Insights
Activating B-Raf mutations in melanoma disrupt cell division, causing chromosome errors. This finding reveals a new role for B-Raf in cancer development and aneuploidy.
Area of Science:
- Oncology
- Cell Biology
- Genetics
Background:
- Activating B-Raf mutations are common in melanoma.
- The precise role of B-Raf in tumorigenesis is not fully understood.
- Wild-type B-Raf is essential for normal cell division (mitosis).
Purpose of the Study:
- To investigate if mutated B-Raf compromises mitosis.
- To assess the impact of B-Raf(V600E) on cell division and the ERK pathway.
Main Methods:
- Introduced oncogenic B-Raf(V600E) into melanoma cells.
- Assessed mitotic abnormalities and centrosome संख्या.
- Utilized B-Raf(V600E)-specific shRNA and U0126 (MEK inhibitor).
Main Results:
- B-Raf(V600E) expression caused abnormal spindles and extra centrosomes.
- These defects were reversed by shRNA or U0126.
- Mitotic errors led to chromosome missegregation and aneuploidy.
- B-Raf(V600E) induced aneuploidy in melanocytes and epithelial cells.
Conclusions:
- Oncogenic B-Raf disrupts mitotic controls, leading to aneuploidy.
- This highlights a novel role for B-Raf in driving melanoma development.
- Mitotic disruption by B-Raf has significant implications for cancer research.
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07:14Live Cell Imaging to Assess the Dynamics of Metaphase Timing and Cell Fate Following Mitotic Spindle Perturbations
Published on: September 20, 2019
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