Nkx6.1 controls migration and axon pathfinding of cranial branchio-motoneurons
Open Access
- 1 December 2003
- journal article
- Published by The Company of Biologists in Development
- Vol. 130 (23) , 5815-5826
- https://doi.org/10.1242/dev.00815
Abstract
As many studies have focused on the mechanisms of motoneuron specification, little is known about the factors that control the subsequent development of postmitotic motoneurons. Previously, we showed that the transcription factor Nkx6.1 is required for the early specification of somatic motoneuron progenitors in the spinal cord. Our present analysis of hindbrain motoneuron development in Nkx6.1-deficient mouse embryos reveals that the early specification of branchio-motoneurons is independent of Nkx6.1 function, but that it is required for their subsequent development. In Nkx6.1 mutant mice, we observed defects in the migration, as well as in the axon projections of branchio-motoneurons. A detailed analysis of the migratory defect in facial branchio-motoneurons reveals ectopic expression of the cell surface receptors Ret and Unc5h3 in premigratory neurons, but no changes in the rhombomeric environment. Taken together, our findings demonstrate a requirement for Nkx6.1 in the development of postmitotic motoneurons, and suggest a cell-autonomous function in the control of branchio-motoneuron migration.Keywords
This publication has 57 references indexed in Scilit:
- Phox2 genes — from patterning to connectivityCurrent Opinion in Genetics & Development, 2002
- Coordinate Regulation of Motor Neuron Subtype Identity and Pan-Neuronal Properties by the bHLH Repressor Olig2Neuron, 2001
- Neuronal specification in the spinal cord: inductive signals and transcriptional codesNature Reviews Genetics, 2000
- Ventral neural patterning by Nkx homeobox genes: Nkx6.1 controls somatic motor neuron and ventral interneuron fatesGenes & Development, 2000
- Extension of Long Leading Processes and Neuronal Migration in the Mammalian Brain Directed by the Chemoattractant Netrin-1Neuron, 1999
- Vertebrate homologues of C. elegans UNC-5 are candidate netrin receptorsNature, 1997
- The mouse rostral cerebellar malformation gene encodes an UNC-5-like proteinNature, 1997
- Motor Axon Subpopulations Respond Differentially to the Chemorepellents Netrin-1 and Semaphorin DNeuron, 1997
- mRNA Profiling of Rat Islet Tumors Reveals Nkx 6.1 as a β-Cell-specific Homeodomain Transcription FactorJournal of Biological Chemistry, 1996
- Segment-specific expression of a homoeobox-containing gene in the mouse hindbrainNature, 1989