| Literature DB >> 12651891 |
Alexandre Pattyn1, Anna Vallstedt, José M Dias, Omar Abdel Samad, Robb Krumlauf, Filippo M Rijli, Jean-Francois Brunet, Johan Ericson.
Abstract
Neural progenitor cells often produce distinct types of neurons in a specific order, but the determinants that control the sequential generation of distinct neuronal subclasses in the vertebrate CNS remain poorly defined. We examined the sequential generation of visceral motor neurons and serotonergic neurons from a common pool of neural progenitors located in the ventral hindbrain. We found that the temporal specification of these neurons varies along the anterior-posterior axis of the hindbrain, and that the timing of their generation critically depends on the integrated activities of Nkx- and Hox-class homeodomain proteins. A primary function of these proteins is to coordinate the spatial and temporal activation of the homeodomain protein Phox2b, which in turn acts as a binary switch in the selection of motor neuron or serotonergic neuronal fate. These findings assign new roles for Nkx, Hox, and Phox2 proteins in the control of temporal neuronal fate determination, and link spatial and temporal patterning of CNS neuronal fates.Entities:
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Year: 2003 PMID: 12651891 PMCID: PMC196019 DOI: 10.1101/gad.255803
Source DB: PubMed Journal: Genes Dev ISSN: 0890-9369 Impact factor: 11.361