Literature DB >> 3539854

Establishment of the mechanism of cytokinesis in animal cells.

R Rappaport.   

Abstract

The division mechanism is fixed in the surface during anaphase or about 4 minutes before furrowing begins in cylindrical cells. Under experimental conditions, the minimum time that the mitotic apparatus must act upon the surface is about 1 minute. The stimulus period is followed by a latent period of 2-3 minutes. The time of furrow formation can be advanced or delayed by manipulating the surface and the mitotic apparatus. Since furrows can be elicited long after normal division would have been completed, it is suggested that the brevity of the normal interaction period is not a consequence of the constitution of the interactants. The component of the mitotic apparatus that establishes the furrow moves from the region of the mitotic axis to the surface at 6-8 microns/minute, The components of the mitotic apparatus that are essential for furrow establishment are confined to the achromatic regions. In spherical cells with large asters, the spindles are not required, although the spindle's ability to establish furrows in spherical cells can be demonstrated by changing the cell's geometry. In nonspherical cells with small asters, the spindle is probably the normal active agent. Although the ability of the mitotic apparatus to establish furrows can be diminished or abolished by measures that reduce its overall size, there are no decisive data concerning which of its ultrastructural components play essential roles in cytokinesis. The effect of changing the geometrical relation between the mitotic apparatus and the surface differs according to the region affected. Division can be blocked or impeded only by changing the relation between the equatorial surface and the mitotic apparatus. The ability of the mitotic apparatus to establish furrows is diminished by increasing the distance between the astral centers and also by increasing the distance between the mitotic axis and the equatorial surface. The cleavage block that results from reduction in size of the mitotic apparatus can be reversed only by decreasing the distance from the mitotic axis to the equatorial surface. Artificial constrictions imposed in other regions are ineffective. The normal distance relation between the astral centers and the equatorial and polar surfaces in spherical eggs is not required for division. Cleavage can occur when the dimensional relations are reversed. Both the surface and the mitotic apparatus can interact to establish furrows after exposure to measures that disrupt their normal organization. Single, isolated asters can cause furrow-like constrictions. Their immediate effect is to cause local contraction in nearby surface.(ABSTRACT TRUNCATED AT 400 WORDS)

Mesh:

Year:  1986        PMID: 3539854     DOI: 10.1016/s0074-7696(08)61065-7

Source DB:  PubMed          Journal:  Int Rev Cytol        ISSN: 0074-7696


  91 in total

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4.  An immersed boundary method for simulating a single axisymmetric cell growth and division.

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Review 5.  Understanding cytokinesis failure.

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6.  Chromosomal passengers: toward an integrated view of mitosis.

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7.  Essential function of the polo box of Cdc5 in subcellular localization and induction of cytokinetic structures.

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8.  Ablation of PRC1 by small interfering RNA demonstrates that cytokinetic abscission requires a central spindle bundle in mammalian cells, whereas completion of furrowing does not.

Authors:  Cristiana Mollinari; Jean-Philippe Kleman; Yasmina Saoudi; Sandra A Jablonski; Julien Perard; Tim J Yen; Robert L Margolis
Journal:  Mol Biol Cell       Date:  2004-12-22       Impact factor: 4.138

Review 9.  Behavior and function of paternally inherited centrioles in brown algal zygotes.

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Journal:  J Plant Res       Date:  2005-11-03       Impact factor: 2.629

Review 10.  Cytokinesis and the contractile ring in fission yeast: towards a systems-level understanding.

Authors:  Mark Bathe; Fred Chang
Journal:  Trends Microbiol       Date:  2009-12-01       Impact factor: 17.079

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