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PMID: 17409237 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't

The doublecortin-expressing population in the developing and adult brain contains multipotential precursors in addition to neuronal-lineage cells.

Walker TL, Yasuda T, Adams DJ, Bartlett PF

Abstract

Doublecortin (DCX) has recently been promulgated as a selective marker of cells committed to the neuronal lineage in both the developing and the adult brain. To explore the potential of DCX-positive (DCX+) cells more stringently, these cells were isolated by flow cytometry from the brains of transgenic mice expressing green fluorescent protein under the control of the DCX promoter in embryonic, early postnatal, and adult animals. It was found that virtually all of the cells (99.9%) expressing high levels of DCX (DCX(high)) in the embryonic brain coexpressed the neuronal marker betaIII-tubulin and that this population contained no stem-like cells as demonstrated by lack of neurosphere formation in vitro. However, the DCX+ population from the early postnatal brain and the adult subventricular zone and hippocampus, which expressed low levels of DCX (DCX(low)), was enriched for neurosphere-forming cells, with only a small subpopulation of these cells coexpressing the neuronal markers betaIII-tubulin or microtubule-associated protein 2. Similarly, the DCX(low) population from embryonic day 14 (E14) brain contained neurosphere-forming cells. Only the postnatal cerebellum and adult olfactory bulb contained some DCX(high) cells, which were shown to be similar to the E14 DCX(high) cells in that they had no stem cell activity. Electrophysiological studies confirmed the heterogeneous nature of DCX+ cells, with some cells displaying characteristics of immature or mature neurons, whereas others showed no neuronal characteristics whatsoever. These results indicate that DCX(high) cells, regardless of location, are restricted to the neuronal lineage or are bone fide neurons, whereas some DCX(low) cells retain their multipotentiality.

MeSH Terms
Animals Animals, Newborn Brain/embryology,enzymology,growth & development Cell Lineage/physiology Cells, Cultured Doublecortin Protein Doublecortin-Like Kinases Embryonic Stem Cells/cytology,enzymology Gene Expression Regulation, Developmental/physiology Mice Mice, Transgenic Multipotent Stem Cells/cytology,enzymology Neurons/cytology,enzymology Protein Serine-Threonine Kinases/biosynthesis,genetics
Chemicals
Dcx protein, mouse Doublecortin Protein Doublecortin-Like Kinases Dclk1 protein, mouse Protein Serine-Threonine Kinases
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Walker Tara L
Queensland Brain Institute, The University of Queensland, Brisbane, Queensland 4072, Australia.
Yasuda Takahiro
Adams David J
Bartlett Perry F
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Article Info
Journal
The Journal of neuroscience : the official journal of the Society for Neuroscience
Abbr.
J Neurosci
ISSN
1529-2401
Published
2007-04-04
Pages
3734-42
Language
English
Region
United States
NLM ID
8102140
PMCID
PMC6672401
Subset
IM
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