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Precise Tuning of Cortical Contractility Regulates Cell Shape during Cytokinesis.
- Source :
-
Cell reports [Cell Rep] 2020 Apr 07; Vol. 31 (1), pp. 107477. - Publication Year :
- 2020
-
Abstract
- The mechanical properties of the actin cortex regulate shape changes during cell division, cell migration, and tissue morphogenesis. We show that modulation of myosin II (MII) filament composition allows tuning of surface tension at the cortex to maintain cell shape during cytokinesis. Our results reveal that MIIA generates cortex tension, while MIIB acts as a stabilizing motor and its inclusion in MII hetero-filaments reduces cortex tension. Tension generation by MIIA drives faster cleavage furrow ingression and bleb formation. We also show distinct roles for the motor and tail domains of MIIB in maintaining cytokinetic fidelity. Maintenance of cortical stability by the motor domain of MIIB safeguards against shape instability-induced chromosome missegregation, while its tail domain mediates cortical localization at the terminal stages of cytokinesis to mediate cell abscission. Because most non-muscle contractile systems are cortical, this tuning mechanism will likely be applicable to numerous processes driven by myosin-II contractility.<br />Competing Interests: Declaration of Interests The authors declare no competing interests.<br /> (Copyright © 2020 The Author(s). Published by Elsevier Inc. All rights reserved.)
- Subjects :
- Actin Cytoskeleton metabolism
Actins metabolism
Actins physiology
Animals
COS Cells
Cell Division
Cell Movement
Chlorocebus aethiops
Cytoskeletal Proteins metabolism
HeLa Cells
Humans
Morphogenesis
Muscle Contraction
Myosin Type II physiology
Nonmuscle Myosin Type IIA metabolism
Nonmuscle Myosin Type IIB metabolism
Cell Shape physiology
Cytokinesis physiology
Myosin Type II metabolism
Subjects
Details
- Language :
- English
- ISSN :
- 2211-1247
- Volume :
- 31
- Issue :
- 1
- Database :
- MEDLINE
- Journal :
- Cell reports
- Publication Type :
- Academic Journal
- Accession number :
- 32268086
- Full Text :
- https://doi.org/10.1016/j.celrep.2020.03.041