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J Cell Biol ; 219(8)2020 08 03.
Article in English | MEDLINE | ID: mdl-32497213

ABSTRACT

Nearly six decades ago, Lewis Wolpert proposed the relaxation of the polar cell cortex by the radial arrays of astral microtubules as a mechanism for cleavage furrow induction. While this mechanism has remained controversial, recent work has provided evidence for polar relaxation by astral microtubules, although its molecular mechanisms remain elusive. Here, using C. elegans embryos, we show that polar relaxation is achieved through dynein-mediated removal of myosin II from the polar cortexes. Mutants that position centrosomes closer to the polar cortex accelerated furrow induction, whereas suppression of dynein activity delayed furrowing. We show that dynein-mediated removal of myosin II from the polar cortexes triggers a bidirectional cortical flow toward the cell equator, which induces the assembly of the actomyosin contractile ring. These results provide a molecular mechanism for the aster-dependent polar relaxation, which works in parallel with equatorial stimulation to promote robust cytokinesis.


Subject(s)
Actomyosin/metabolism , Anaphase , Caenorhabditis elegans Proteins/metabolism , Caenorhabditis elegans/enzymology , Centrosome/enzymology , Cytokinesis , Dyneins/metabolism , Microtubules/enzymology , Myosin Type II/metabolism , Animals , Animals, Genetically Modified , Caenorhabditis elegans/embryology , Caenorhabditis elegans/genetics , Caenorhabditis elegans Proteins/genetics , Dyneins/genetics , Microtubules/genetics , Mutation , Myosin Type II/genetics , Signal Transduction
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