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Variations of intracellular density during the cell cycle arise from tip-growth regulation in fission yeast

Author(s)
Odermatt, Pascal D; Miettinen, Teemu P; Lemière, Joël; Kang, Joon Ho; Bostan, Emrah; Manalis, Scott R; Huang, Kerwyn Casey; Chang, Fred; ... Show more Show less
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Creative Commons Attribution 4.0 International license https://creativecommons.org/licenses/by/4.0/
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Abstract
<jats:p>Intracellular density impacts the physical nature of the cytoplasm and can globally affect cellular processes, yet density regulation remains poorly understood. Here, using a new quantitative phase imaging method, we determined that dry-mass density in fission yeast is maintained in a narrow distribution and exhibits homeostatic behavior. However, density varied during the cell cycle, decreasing during G2, increasing in mitosis and cytokinesis, and dropping rapidly at cell birth. These density variations were explained by a constant rate of biomass synthesis, coupled to slowdown of volume growth during cell division and rapid expansion post-cytokinesis. Arrest at specific cell-cycle stages exacerbated density changes. Spatially heterogeneous patterns of density suggested links between density regulation, tip growth, and intracellular osmotic pressure. Our results demonstrate that systematic density variations during the cell cycle are predominantly due to modulation of volume expansion, and reveal functional consequences of density gradients and cell-cycle arrests.</jats:p>
Date issued
2021
URI
https://hdl.handle.net/1721.1/135632
Department
Koch Institute for Integrative Cancer Research at MIT; Massachusetts Institute of Technology. Department of Physics; Massachusetts Institute of Technology. Department of Biological Engineering; Massachusetts Institute of Technology. Department of Mechanical Engineering
Journal
eLife
Publisher
eLife Sciences Publications, Ltd

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