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PMID: 10657700 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Developmental changes in progenitor cell responsiveness to bone morphogenetic proteins differentially modulate progressive CNS lineage fate.

Developmental neuroscience ·Vol. 22 ·No. 1-2 ·2000-00-00 ·Pages 74-85

Mehler MF, Mabie PC, Zhu G, Gokhan S, Kessler JA

Abstract

Although multipotent progenitor cells capable of generating neurons, astrocytes and oligodendrocytes are present within the germinal zones of the brain throughout embryonic, postnatal and adult life, the different neural cell types are generated within discrete temporospatial developmental windows. This might suggest that multipotent progenitor cells encounter different signals during each developmental stage, thus accounting for separate waves of lineage commitment and cellular differentiation. This study demonstrates, however, that progenitor cell responses to the same class of signals, the bone morphogenetic proteins (BMPs), change during ontogeny, and that these same signals may thus initiate progenitor cell elaboration of several different lineages. BMPs promote cell death and inhibit the proliferation of early (embryonic day 13, E13) ventricular zone progenitor cells. At later embryonic (E16) stages of cerebral cortical development, BMPs exhibit a concentration-dependent dissociation of cellular actions, with either enhancement of neuronal and astroglial elaboration (at 1-10 ng/ml) or potentiation of cell death (at 100 ng/ml). Finally, during the period of perinatal cortical gliogenesis, BMPs enhance astroglial lineage elaboration. By contrast, oligodendroglial lineage elaboration is inhibited by the BMPs at all stages. Further, application of the BMP antagonist noggin to cultured progenitors promotes the generation of oligodendrocytes, indicating that endogenous BMP signaling can actively suppress oligodendrogliogenesis. These observations suggest that developmental changes in neural progenitor cell responsiveness to the BMPs may represent a novel mechanism for orchestrating context-specific cellular events such as lineage elaboration and cellular viability.

MeSH Terms
Animals Astrocytes/cytology Bone Morphogenetic Protein 2 Bone Morphogenetic Proteins/pharmacology Cell Differentiation/drug effects Cell Line Cell Survival/drug effects Cells, Cultured Cerebral Cortex/cytology,embryology Cerebral Ventricles/cytology,embryology Embryonic and Fetal Development/physiology Humans Oligodendroglia/cytology Rats Rats, Sprague-Dawley Stem Cells/cytology,drug effects Transforming Growth Factor beta
Chemicals
BMP2 protein, human Bmp2 protein, rat Bone Morphogenetic Protein 2 Bone Morphogenetic Proteins Transforming Growth Factor beta
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Mehler M F
Department of Neurology, the Rose F. Kennedy Center for Research in Mental Retardation and Developmental Disabilities, Albert Einstein College of Medicine, Bronx, N.Y., USA. mehler@aecom.yu.edu
Mabie P C
Zhu G
Gokhan S
Kessler J A
Article Info
Journal
Developmental neuroscience
Abbr.
Dev Neurosci
ISSN
0378-5866
Published
2000-00-00
Pages
74-85
Language
English
Region
Switzerland
NLM ID
7809375
Subset
IM
Grants
NIMH NIH HHS · R01 MH066290 · United States
NINDS NIH HHS · NS20013 · United States
NINDS NIH HHS · NS35320 · United States
NINDS NIH HHS · NS38902 · United States
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