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September 12, 2026Journal of Cell Science2 citations

Live dynamics of induced cell-cell fusion between mitotic and interphasic cells

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OAOlga AfonsoDFDaniel FelicianoJLJennifer Lippincott-Schwartz

Key Points

  • To investigate how nuclei from different cell cycle stages coordinate and integrate conflicting regulatory signals when forced to share a common cytoplasm.
  • Induced cell-cell fusion between cells in mitosis and cells in interphase.
  • Conducted live-cell imaging to track nuclear dynamics, checkpoint override events, and structural fates across varying ratios of interphase to mitotic nuclei.
  • Mitosis functions as a dominant cell cycle state, where mitotic cytoplasm forces interphase nuclei to enter premature mitosis, leading to aberrant spindle formation, partial DNA condensation, and mitotic catastrophe.
  • High ratios of interphase to mitotic nuclei force mitotic nuclei into premature mitotic exit, resulting in nuclear envelope assembly around condensed chromosomes and defective nuclear import machinery.

Abstract

The cell cycle is tightly regulated by checkpoint mechanisms that ensure faithful duplication and segregation of the genome. Here, we induced cell-cell fusion between mitotic and interphase cells to study how nuclei from different cell cycle stages behave in a shared cytoplasm. We found that mitosis is a dominant cell cycle state: the mitotic cytoplasm can drive interphase nuclei into mitosis, whereas, in high ratios of interphase versus mitotic nuclei, fusion forced mitotic nuclei to exit mitosis. Both outcomes represent checkpoint override events with impactful consequences. Interphase nuclei forced into mitosis form aberrant mitotic spindles, show partially condensed DNA and ultimately undergo mitotic catastrophe. Conversely, forced mitotic exit resulted in reformation of nuclear envelope membranes around condensed chromosomes, forming nuclei with a defective nuclear import machinery. Altogether, cell-cell fusion revealed the consequences of checkpoint override, forcing nuclei through untimely cell cycle transitions, and highlight how cell-cell fusion experiments can be a powerful system to study how competing cytoplasmic states are integrated in a shared cytoplasm, such as in muscle, placenta formation and in cancer.

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Cite This Study

Afonso et al. (2026) studied this question.

synapsesocial.com/papers/6aa51e69327956e4761f8472https://doi.org/10.1242/jcs.264827
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