4.7 Article

Stable and dynamic microtubules coordinately shape the myosin activation zone during cytokinetic furrow formation

Journal

JOURNAL OF CELL BIOLOGY
Volume 183, Issue 3, Pages 457-470

Publisher

ROCKEFELLER UNIV PRESS
DOI: 10.1083/jcb.200807128

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Funding

  1. Seaver Institute
  2. National Institute of General Medical Sciences [1 P50 GM066050]

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The cytokinetic furrow arises from spatial and temporal regulation of cortical contractility. To test the role microtubules play in furrow specification, we studied myosin II activation in echinoderm zygotes by assessing serine19-phosphorylated regulatory light chain (pRLC) localization after precisely timed drug treatments. Cortical pRLC was globally depressed before cytokinesis, then elevated only at the equator. We implicated cell cycle biochemistry (not microtubules) in pRLC depression, and differential microtubule stability in localizing the subsequent myosin activation. With no microtubules, pRLC accumulation occurred globally instead of equatorially, and loss of just dynamic microtubules increased equatorial pRLC recruitment. Nocodazole treatment revealed a population of stable astral microtubules that formed during anaphase; among these, those aimed toward the equator grew longer, and their tips coincided with cortical pRLC accumulation. Shrinking the mitotic apparatus with colchicine revealed pRLC suppression near dynamic microtubule arrays. We conclude that opposite effects of stable versus dynamic microtubules focuses myosin activation to the cell equator during cytokinesis.

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