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Updated: Apr 19, 2026

Examination of Mitotic and Meiotic Fission Yeast Nuclear Dynamics by Fluorescence Live-cell Microscopy
Published on: June 24, 2019
Live cell interferometry quantifies dynamics of biomass partitioning during cytokinesis
Thomas A Zangle1, Michael A Teitell2, Jason Reed3
1Department of Bioengineering, University of California Los Angeles (UCLA), Los Angeles, California, United States of America; Jonsson Comprehensive Cancer Center, UCLA, Los Angeles, California, United States of America.
Abstract:
The equal partitioning of cell mass between daughters is the usual and expected outcome of cytokinesis for self-renewing cells. However, most studies of partitioning during cell division have focused on daughter cell shape symmetry or segregation of chromosomes. Here, we use live cell interferometry (LCI) to quantify the partitioning of daughter cell mass during and following cytokinesis. We use adherent and non-adherent mouse fibroblast and mouse and human lymphocyte cell lines as models and show that, on average, mass asymmetries present at the time of cleavage furrow formation persist through cytokinesis. The addition of multiple cytoskeleton-disrupting agents leads to increased asymmetry in mass partitioning which suggests the absence of active mass partitioning mechanisms after cleavage furrow positioning.

