Microtubule-based nuclear movement occurs independently of centrosome positioning in migrating neurons
- 9 October 2007
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 104 (41) , 16182-16187
- https://doi.org/10.1073/pnas.0708047104
Abstract
During neuronal migration in the developing brain, it is thought that the centrosome precedes the nucleus and provides a cue for nuclear migration along the microtubules. In time-lapse imaging studies of radially migrating granule cells in mouse cerebellar slices, we observed that the movements of the nucleus and centrosome appeared to occur independently of each other. The nucleus often migrated ahead of the centrosome during its saltatory movement, negating the supposed role of the centrosome in pulling the nucleus. The nucleus was associated with dynamic microtubules enveloping the entire nucleus and stable microtubules extending from the leading process to the anterior part of the nucleus. Neither of these perinuclear microtubules converged at the centrosome. Disruption or excess formation of stable microtubules attenuated nuclear migration, indicating that the configuration of stable microtubules is crucial for nuclear migration. The inhibition of LIS1 function, a regulator of a microtubule motor dynein, specifically blocks nuclear migration without affecting the coupling of the centrosome and microtubules in the leading process, suggesting that movements of the nucleus and centrosome are differentially regulated by dynein motor function. Thus, the nucleus moves along the microtubules independently of the position of the centrosome in migrating neurons.Keywords
This publication has 38 references indexed in Scilit:
- Analysis of non-radial interneuron migration dynamics and its disruption inLis1+/− miceJournal of Comparative Neurology, 2006
- Cell and molecular mechanisms involved in the migration of cortical interneuronsEuropean Journal of Neuroscience, 2006
- Nucleokinesis in Tangentially Migrating Neurons Comprises Two Alternating Phases: Forward Migration of the Golgi/Centrosome Associated with Centrosome Splitting and Myosin Contraction at the RearJournal of Neuroscience, 2005
- Nucleokinesis in Neuronal MigrationNeuron, 2005
- Par6α signaling controls glial-guided neuronal migrationNature Neuroscience, 2004
- Lis1 and doublecortin function with dynein to mediate coupling of the nucleus to the centrosome in neuronal migrationThe Journal of cell biology, 2004
- Dual phases of migration of cerebellar granule cells guided by axonal and dendritic leading processesMolecular and Cellular Neuroscience, 2004
- Efficient selection for high-expression transfectants with a novel eukaryotic vectorGene, 1991
- Individual microtubules in the axon consist of domains that differ in both composition and stability.The Journal of cell biology, 1990
- Posttranslational modifications of alpha tubulin: detyrosination and acetylation differentiate populations of interphase microtubules in cultured cells.The Journal of cell biology, 1988