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Título
Pax6 Is essential for the maintenance and multi-lineage differentiation of neural stem cells, and for neuronal incorporation into the adult olfactory bulb
Autor(es)
Palabras clave
Pax6
Neural Stem Cells
Olfactory Bulb
Fecha de publicación
2014
Editor
Mary Ann Liebert SAGE Publications
Citación
Curto, G. G., Nieto-Estévez, V., Hurtado-Chong, A., Valero, J., Gómez, C., Alonso, J. R., Weruaga, E., & Vicario-Abejón, C. (2014). Pax6 Is essential for the maintenance and multi-lineage differentiation of neural stem cells, and for neuronal incorporation into the adult olfactory bulb. Stem Cells and Development, 23(23), 2813-2830. https://doi.org/10.1089/SCD.2014.0058
Resumen
[EN]The paired type homeobox 6 (Pax6) transcription factor (TF) regulates multiple aspects of neural stem cell
(NSC) and neuron development in the embryonic central nervous system. However, less is known about the role
of Pax6 in the maintenance and differentiation of adult NSCs and in adult neurogenesis. Using the + /SeyDey
mouse, we have analyzed how Pax6 heterozygosis influences the self-renewal and proliferation of adult ol factory bulb stem cells (aOBSCs). In addition, we assessed its influence on neural differentiation, neuronal
incorporation, and cell death in the adult OB, both in vivo and in vitro. Our results indicate that the Pax6
mutation alters Nestin + -cell proliferation in vivo, as well as self-renewal, proliferation, and survival of aOBSCs
in vitro although a subpopulation of + /SeyDey progenitors is able to expand partially similar to wild-type
progenitors. This mutation also impairs aOBSC differentiation into neurons and oligodendrocytes, whereas it
increases cell death while preserving astrocyte survival and differentiation. Furthermore, Pax6 heterozygosis
causes a reduction in the variety of neurochemical interneuron subtypes generated from aOBSCs in vitro and in
the incorporation of newly generated neurons into the OB in vivo. Our findings support an important role of
Pax6 in the maintenance of aOBSCs by regulating cell death, self-renewal, and cell fate, as well as in neuronal
incorporation into the adult OB. They also suggest that deregulation of the cell cycle machinery and TF
expression in aOBSCs which are deficient in Pax6 may be at the origin of the phenotypes observed in this adult
NSC population.
URI
ISSN
1547-3287
DOI
10.1089/scd.2014.0058
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