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Updated: Mar 11, 2026

Heterokaryon Technique for Analysis of Cell Type-specific Localization
Published on: March 11, 2011
v-Src-induced nuclear localization of YAP is involved in multipolar spindle formation in tetraploid cells
Keiko Kakae1, Masayoshi Ikeuchi1, Takahisa Kuga1
1Department of Biochemistry & Molecular Biology, Kyoto Pharmaceutical University, Kyoto 607-8414, Japan.
Abstract:
The protein-tyrosine kinase, c-Src, is involved in a variety of signaling events, including cell division. We have reported that v-Src, which is a mutant variant of the cellular proto-oncogene, c-Src, causes delocalization of Aurora B kinase, resulting in a furrow regression in cytokinesis and the generation of multinucleated cells. However, the effect of v-Src on mitotic spindle formation is unknown. Here we show that v-Src-expressing HCT116 and NIH3T3 cells undergo abnormal cell division, in which cells separate into more than two cells. Upon v-Src expression, the proportion of multinucleated cells is increased in a time-dependent manner. Flow cytometry analysis revealed that v-Src increases the number of cells having a ≥4N DNA content. Microscopic analysis showed that v-Src induces the formation of multipolar spindles with excess centrosomes. These results suggest that v-Src induces multipolar spindle formation by generating multinucleated cells. Tetraploidy activates the tetraploidy checkpoint, leading to a cell cycle arrest of tetraploid cells at the G1 phase, in which the nuclear exclusion of the transcription co-activator YAP plays a critical role. In multinucleated cells that are induced by cytochalasin B and the Plk1 inhibitor, YAP is excluded from the nucleus. However, v-Src prevents this nuclear exclusion of YAP through a decrease in the phosphorylation of YAP at Ser127 in multinucleated cells. Furthermore, v-Src decreases the expression level of p53, which also plays a critical role in the cell cycle arrest of tetraploid cells. These results suggest that v-Src promotes abnormal spindle formation in at least two ways: generation of multinucleated cells and a weakening of the tetraploidy checkpoint.
Insights
The viral proto-oncogene v-Src promotes abnormal cell division by causing multipolar spindle formation and weakening the tetraploidy checkpoint, leading to multinucleated cells and cell cycle dysregulation.
Area of Science:
- Cell Biology
- Molecular Oncology
- Cell Cycle Regulation
Background:
- The protein-tyrosine kinase c-Src regulates cell division.
- v-Src, a viral oncogene variant, causes multinucleated cells by affecting Aurora B kinase and cytokinesis.
- The impact of v-Src on mitotic spindle formation remained unclear.
Purpose of the Study:
- To investigate the effect of v-Src on mitotic spindle formation and cell division.
- To elucidate the mechanisms by which v-Src promotes abnormal cell division and tetraploidy.
- To determine v-Src's influence on the tetraploidy checkpoint and associated proteins like YAP and p53.
Main Methods:
- Expression of v-Src in HCT116 and NIH3T3 cells.
- Flow cytometry to analyze DNA content.
- Microscopic analysis of cell division, spindle formation, and centrosome number.
- Western blotting to assess protein phosphorylation and expression levels (YAP, p53).
Main Results:
- v-Src expression led to abnormal cell division, resulting in cells with more than two daughter cells and a time-dependent increase in multinucleated cells.
- v-Src induced multipolar spindle formation with excess centrosomes and increased the proportion of cells with ≥4N DNA content.
- v-Src prevented YAP nuclear exclusion in multinucleated cells by reducing YAP phosphorylation at Ser127 and decreased p53 expression, thereby weakening the tetraploidy checkpoint.
Conclusions:
- v-Src promotes abnormal spindle formation and cell division through the generation of multinucleated cells.
- v-Src weakens the tetraploidy checkpoint by inhibiting YAP nuclear exclusion and reducing p53 levels.
- These combined effects contribute to v-Src-induced genomic instability and potentially oncogenesis.
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