Multiple mechanisms regulate NuMA dynamics at spindle poles
Open Access
- 15 December 2004
- journal article
- Published by The Company of Biologists in Journal of Cell Science
- Vol. 117 (26) , 6391-6400
- https://doi.org/10.1242/jcs.01568
Abstract
The large coiled-coil protein NuMA plays an essential role in organizing microtubule minus ends at spindle poles in vertebrate cells. Here, we use both in vivo and in vitro methods to examine NuMA dynamics at mitotic spindle poles. Using fluorescence recovery after photobleaching, we show that an exogenously expressed green-fluorescent-protein/NuMA fusion undergoes continuous exchange between soluble and spindle-associated pools in living cells. These dynamics require cellular energy and display an average half-time for fluorescence recovery of ∼3 minutes. To explore how NuMA dynamics at spindle poles is regulated, we exploited the association of NuMA with microtubule asters formed in mammalian mitotic extracts. Using a monoclonal antibody specific for human NuMA, we followed the fate of human NuMA associated with microtubule asters upon dilution with a hamster mitotic extract. Consistent with in vivo data, this assay shows that NuMA can be displaced from the core of pre-assembled asters into the soluble pool. The half-time of NuMA displacement from asters under these conditions is ∼5 minutes. Using this assay, we show that protein kinase activity and the NuMA-binding protein LGN regulate the dynamic exchange of NuMA on microtubule asters. Thus, the dynamic properties of NuMA are regulated by multiple mechanisms including protein phosphorylation and binding to the LGN protein, and the rate of exchange between soluble and microtubule-associated pools suggests that NuMA associates with an insoluble matrix at spindle poles.Keywords
This publication has 39 references indexed in Scilit:
- Dynamic association of a tumor amplified kinase, Aurora‐A, with the centrosome and mitotic spindleCell Motility, 2003
- LGN Blocks the Ability of NuMA to Bind and Stabilize MicrotubulesCurrent Biology, 2002
- Spindle Assembly in Animal CellsAnnual Review of Biochemistry, 2000
- Formation of Spindle Poles by Dynein/Dynactin-Dependent Transport of NumaThe Journal of cell biology, 2000
- Induction of a Regular Nuclear Lattice by Overexpression of NuMAExperimental Cell Research, 1998
- A Complex of NuMA and Cytoplasmic Dynein Is Essential for Mitotic Spindle AssemblyCell, 1996
- Opposing motor activities are required for the organization of the mammalian mitotic spindle pole.The Journal of cell biology, 1996
- MitosisScience, 1989
- Redistribution of the nuclear mitotic apparatus protein (NuMA) during mitosis and nuclear assemblyExperimental Cell Research, 1986
- Human-specific nuclear protein that associates with the polar region of the mitotic apparatus: Distribution in a human/hamster hybrid cellCell, 1980