v-Src causes delocalization of Mklp1, Aurora B, and INCENP from the spindle midzone during cytokinesis failure
Shuhei Soeda1, Yuji Nakayama, Takuya Honda
1Department of Molecular Cell Biology, Graduate School of Pharmaceutical Sciences, Chiba University, Inohana 1-8-1, Chuo-ku, Chiba 260-8675, Japan.
Abstract:
Src-family tyrosine kinases are aberrantly activated in cancers, and this activation is associated with malignant tumor progression. v-Src, encoded by the v-src transforming gene of the Rous sarcoma virus, is a mutant variant of the cellular proto-oncogene c-Src. Although investigations with temperature sensitive mutants of v-Src have shown that v-Src induces many oncogenic processes, the effects on cell division are unknown. Here, we show that v-Src inhibits cellular proliferation of HCT116, HeLa S3 and NIH3T3 cells. Flow cytometry analysis indicated that inducible expression of v-Src results in an accumulation of 4N cells. Time-lapse analysis revealed that binucleation is induced through the inhibition of cytokinesis, a final step of cell division. The localization of Mklp1, which is essential for cytokinesis, to the spindle midzone is inhibited in v-Src-expressing cells. Intriguingly, Aurora B, which regulates Mklp1 localization at the midzone, is delocalized from the spindle midzone and the midbody but not from the metaphase chromosomes upon v-Src expression. Mklp2, which is responsible for the relocation of Aurora B from the metaphase chromosomes to the spindle midzone, is also lost from the spindle midzone. These results suggest that v-Src inhibits cytokinesis through the delocalization of Mklp1 and Aurora B from the spindle midzone, resulting in binucleation.
Insights
v-Src protein kinase inhibits cell division by blocking cytokinesis, leading to binucleation. This occurs through disruption of key proteins like Mklp1 and Aurora B at the spindle midzone.
Area of Science:
- Cell Biology
- Molecular Oncology
- Virology
Background:
- Src-family tyrosine kinases, including v-Src, are implicated in cancer progression.
- The precise impact of v-Src on the cell division process, particularly cytokinesis, remains largely uncharacterized.
Purpose of the Study:
- To investigate the effects of v-Src expression on cell proliferation and division.
- To elucidate the molecular mechanisms by which v-Src influences cytokinesis.
Main Methods:
- Utilized inducible v-Src expression in HCT116, HeLa S3, and NIH3T3 cell lines.
- Employed flow cytometry for cell cycle analysis and time-lapse microscopy for observing cell division.
- Investigated the localization of key cytokinesis proteins, including Mklp1, Aurora B, and Mklp2.
Main Results:
- v-Src expression inhibited cellular proliferation and induced binucleation.
- Flow cytometry revealed an accumulation of 4N cells, indicating failed cell division.
- v-Src disrupted cytokinesis by inhibiting Mklp1 localization to the spindle midzone.
- Aurora B and Mklp2 delocalization from the spindle midzone and midbody was observed in v-Src-expressing cells.
Conclusions:
- v-Src inhibits cytokinesis, leading to binucleation, by interfering with the proper localization of Mklp1 and Aurora B.
- These findings reveal a novel mechanism by which viral oncoproteins can disrupt fundamental cellular processes like cell division.
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