Differentiation of Cytoplasmic and Meiotic Spindle Assembly MCAK Functions by Aurora B-dependent Phosphorylation
Open Access
- 1 June 2004
- journal article
- Published by American Society for Cell Biology (ASCB) in Molecular Biology of the Cell
- Vol. 15 (6) , 2895-2906
- https://doi.org/10.1091/mbc.e04-02-0082
Abstract
The KinI kinesin MCAK is a microtubule depolymerase important for governing spindle microtubule dynamics during chromosome segregation. The dynamic nature of spindle assembly and chromosome-microtubule interactions suggest that mechanisms must exist that modulate the activity of MCAK, both spatially and temporally. In Xenopus extracts, MCAK associates with and is stimulated by the inner centromere protein ICIS. The inner centromere kinase Aurora B also interacts with ICIS and MCAK raising the possibility that Aurora B may regulate MCAK activity as well. Herein, we demonstrate that recombinant Aurora B-INCENP inhibits Xenopus MCAK activity in vitro in a phosphorylation-dependent manner. Substituting endogenous MCAK in Xenopus extracts with the alanine mutant XMCAK-4A, which is resistant to inhibition by Aurora B-INCENP, led to assembly of mono-astral and monopolar structures instead of bipolar spindles. The size of these structures and extent of tubulin polymerization in XMCAK-4A extracts indicate that XM-CAK-4A is not defective for microtubule dynamics regulation throughout the cytoplasm. We further demonstrate that the ability of XMCAK-4A to localize to inner centromeres is abolished. Our results show that MCAK regulation of cytoplasmic and spindle-associated microtubules can be differentiated by Aurora B-dependent phosphorylation, and they further demonstrate that this regulation is required for bipolar meiotic spindle assembly.Keywords
This publication has 56 references indexed in Scilit:
- A Kinesin-like Motor Inhibits Microtubule Dynamic InstabilityScience, 2004
- Direct observation of microtubule dynamics at kinetochores in Xenopus extract spindlesThe Journal of cell biology, 2003
- The Microtubule-Destabilizing Kinesin XKCM1 Is Required for Chromosome Positioning during Spindle AssemblyCurrent Biology, 2002
- The Microtubule-destabilizing Kinesin XKCM1 Regulates Microtubule Dynamic Instability in CellsMolecular Biology of the Cell, 2002
- Inhibition of Aurora B Kinase Blocks Chromosome Segregation, Overrides the Spindle Checkpoint, and Perturbs Microtubule Dynamics in MitosisCurrent Biology, 2002
- The Kinase Activity of Aurora B Is Required for Kinetochore-Microtubule Interactions during MitosisCurrent Biology, 2002
- Anastral meiotic spindle morphogenesis: role of the non-claret disjunctional kinesin-like protein.The Journal of cell biology, 1996
- XKCM1: A Xenopus Kinesin-Related Protein That Regulates Microtubule Dynamics during Mitotic Spindle AssemblyCell, 1996
- An approach to correlate tandem mass spectral data of peptides with amino acid sequences in a protein databaseJournal of the American Society for Mass Spectrometry, 1994
- Real-time visualization of cell cycle-dependent changes in microtubule dynamics in cytoplasmic extractsCell, 1990