XB-ART-40329
Phys Rev Lett
2009 Jul 31;1035:058102.
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Hydrodynamics of cellular cortical flows and the formation of contractile rings.
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We propose a mechanism for the formation of contractile rings and the apparition of a flow in the cortical layer of cells undergoing cytokinesis at the end of cell division or during the healing of a wound in the cortex of Xenopus eggs. We generalize the hydrodynamic active gel theory along the lines of thin shell theory of continuum elasticity to describe the cell cortex. As in liquid crystal physics, the flow couples to the orientation of the actin filaments. The cortical flow is driven by an increased density of myosin motors in the cortex, and orients the filaments to form the ring.
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Species referenced: Xenopus
Genes referenced: actl6a