Molecular Biology of the Cell · 2006 · 47 citations · 69 references
Protein FunctionC-terminal DomainsMacromolecular ArchitectureProtein AssemblyNatural SciencesMacromolecular MachineMolecular BiologyMacromolecular SystemCytoskeletonBiomolecular InteractionSpindle BipolarityCellular BiochemistrySpindle AssemblyMedicineCell BiologyMicrotubule DynamicsBiomolecular EngineeringMulti-protein Assembly
Spindle assembly and accurate chromosome segregation require the proper regulation of microtubule dynamics. MCAK, a Kinesin-13, catalytically depolymerizes microtubules, regulates physiological microtubule dynamics, and is the major catastrophe factor in egg extracts. Purified GFP-tagged MCAK domain mutants were assayed to address how the different MCAK domains contribute to in vitro microtubule depolymerization activity and physiological spindle assembly activity in egg extracts. Our biochemical results demonstrate that both the neck and the C-terminal domain are necessary for robust in vitro microtubule depolymerization activity. In particular, the neck is essential for microtubule end binding, and the C-terminal domain is essential for tight microtubule binding in the presence of excess tubulin heterodimer. Our physiological results illustrate that the N-terminal domain is essential for regulating microtubule dynamics, stimulating spindle bipolarity, and kinetochore targeting; whereas the C-terminal domain is necessary for robust microtubule depolymerization activity, limiting spindle bipolarity, and enhancing kinetochore targeting. Unexpectedly, robust MCAK microtubule (MT) depolymerization activity is not needed for sperm-induced spindle assembly. However, high activity is necessary for proper physiological MT dynamics as assayed by Ran-induced aster assembly. We propose that MCAK activity is spatially controlled by an interplay between the N- and C-terminal domains during spindle assembly.
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A standardized kinesin nomenclature
Carolyn J. Lawrence, R. Kelly Dawe, Karen Christie et al. · The Journal of Cell Biology · 2004 · 764 citations · Full text
Biology, Standardized Kinesin Nomenclature, Protein Function +15
Kin I Kinesins Are Microtubule-Destabilizing Enzymes
Arshad Desai, Suzie Verma, Timothy J. Mitchison et al. · Cell · 1999 · 703 citations · Full text