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Stem cell regionalization during olfactory bulb neurogenesis depends on regulatory interactions between and .

Citation
Coré, N., et al. “Stem Cell Regionalization During Olfactory Bulb Neurogenesis Depends On Regulatory Interactions Between And .”. Elife.
Center UCSD-UCLA
Author Nathalie Coré, Andrea Erni, Hanne M Hoffmann, Pamela L Mellon, Andrew J Saurin, Christophe Beclin, Harold Cremer
Keywords Developmental Biology, miRNA, mouse, Neural stem cells, neuroscience, olfactory bulb interneurons, postnatal neurogenesis, regulatory interactions, TRANSCRIPTION FACTORS
Abstract

Different subtypes of interneurons, destined for the olfactory bulb, are continuously generated by neural stem cells located in the ventricular and subventricular zones along the lateral forebrain ventricles of mice. Neuronal identity in the olfactory bulb depends on the existence of defined microdomains of pre-determined neural stem cells along the ventricle walls. The molecular mechanisms underlying positional identity of these neural stem cells are poorly understood. Here, we show that the transcription factor Vax1 controls the production of two specific neuronal subtypes. First, it is directly necessary to generate Calbindin expressing interneurons from ventro-lateral progenitors. Second, it represses the generation of dopaminergic neurons by dorsolateral progenitors through inhibition of Pax6 expression. We present data indicating that this repression occurs, at least in part, via activation of microRNA miR-7.

Year of Publication
2020
Journal
eLife
Volume
9
Date Published
12/2020
ISSN Number
2050-084X
DOI
10.7554/eLife.58215
Alternate Journal
Elife
PMID
32762844
PMCID
PMC7440913
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