Reorganization of the microtubule array in prophase/prometaphase requires cytoplasmic dynein-dependent microtubule transport
Open Access
- 16 September 2002
- journal article
- Published by Rockefeller University Press in The Journal of cell biology
- Vol. 158 (6), 997-1003
- https://doi.org/10.1083/jcb.200204109
Abstract
When mammalian somatic cells enter mitosis, a fundamental reorganization of the Mt cytoskeleton occurs that is characterized by the loss of the extensive interphase Mt array and the formation of a bipolar mitotic spindle. Microtubules in cells stably expressing GFP-alpha-tubulin were directly observed from prophase to just after nuclear envelope breakdown (NEBD) in early prometaphase. Our results demonstrate a transient stimulation of individual Mt dynamic turnover and the formation and inward motion of microtubule bundles in these cells. Motion of microtubule bundles was inhibited after antibody-mediated inhibition of cytoplasmic dynein/dynactin, but was not inhibited after inhibition of the kinesin-related motor Eg5 or myosin II. In metaphase cells, assembly of small foci of Mts was detected at sites distant from the spindle; these Mts were also moved inward. We propose that cytoplasmic dynein-dependent inward motion of Mts functions to remove Mts from the cytoplasm at prophase and from the peripheral cytoplasm through metaphase. The data demonstrate that dynamic astral Mts search the cytoplasm for other Mts, as well as chromosomes, in mitotic cells.Keywords
This publication has 25 references indexed in Scilit:
- Cell Cycle-Dependent Changes in Microtubule Dynamics in Living Cells Expressing Green Fluorescent Protein-α TubulinMolecular Biology of the Cell, 2001
- A New Model for Nuclear Envelope BreakdownMolecular Biology of the Cell, 2001
- Region-Specific Microtubule Transport in Motile CellsThe Journal of cell biology, 2000
- Microtubule motors in mitosisNature, 2000
- Microtubules Remodel Actomyosin Networks in Xenopus Egg Extracts via Two Mechanisms of F-Actin TransportThe Journal of cell biology, 2000
- Spindle Assembly in Animal CellsAnnual Review of Biochemistry, 2000
- Mammalian Spindle Orientation and Position Respond to Changes in Cell Shape in a Dynein-dependent FashionMolecular Biology of the Cell, 2000
- Control of microtubule dynamics by the antagonistic activities of XMAP215 and XKCM1 in Xenopus egg extractsNature Cell Biology, 1999
- The Kinesin-Related Protein, Hset, Opposes the Activity of Eg5 and Cross-Links Microtubules in the Mammalian Mitotic SpindleThe Journal of cell biology, 1999
- Dynein and dynactin are localized to astral microtubules and at cortical sites in mitotic epithelial cellsCurrent Biology, 1998