Still and rotating myosin clusters determine cytokinetic ring constriction

2016 | journal article; research paper

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​Still and rotating myosin clusters determine cytokinetic ring constriction​
Wollrab, V.; Thiagarajan, R.; Wald, A. ; Kruse, K. & Riveline, D.​ (2016) 
Nature Communications7(1) pp. 11860​.​ DOI: https://doi.org/10.1038/ncomms11860 

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Authors
Wollrab, Viktoria; Thiagarajan, Raghavan; Wald, Anne ; Kruse, Karsten; Riveline, Daniel
Abstract
The cytokinetic ring is essential for separating daughter cells during division. It consists of actin filaments and myosin motors that are generally assumed to organize as sarcomeres similar to skeletal muscles. However, direct evidence is lacking. Here we show that the internal organization and dynamics of rings are different from sarcomeres and distinct in different cell types. Using micro-cavities to orient rings in single focal planes, we find in mammalian cells a transition from a homogeneous distribution to a periodic pattern of myosin clusters at the onset of constriction. In contrast, in fission yeast, myosin clusters rotate prior to and during constriction. Theoretical analysis indicates that both patterns result from acto-myosin self-organization and reveals differences in the respective stresses. These findings suggest distinct functional roles for rings: contraction in mammalian cells and transport in fission yeast. Thus self-organization under different conditions may be a generic feature for regulating morphogenesis in vivo.
Issue Date
2016
Journal
Nature Communications 
Organization
Institut für Numerische und Angewandte Mathematik 
Working Group
RG Wald (Applied Mathematics in the Natural Sciences) 
ISSN
2041-1723
eISSN
2041-1723
Language
English

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