Neural stem cells (NSCs) in the adult hippocampus divide infrequently, and the molecules that modulate their quiescence are largely unknown. Here, we show that bone morphogenetic protein (BMP) signaling is active in hippocampal NSCs, downstream of BMPR-IA. BMPs reversibly diminish proliferation of cultured NSCs while maintaining their undifferentiated state. In vivo, acute blockade of BMP signaling in the hippocampus by intracerebral infusion of Noggin first recruits quiescent NSCs into the cycle and increases neurogenesis; subsequently, it leads to decreased stem cell division and depletion of precursors and newborn neurons. Consistently, selective ablation of Bmpr1a in hippocampal NSCs, or inactivation of BMP canonical signaling in conditional Smad4 knockout mice, transiently enhances proliferation but later leads to a reduced number of precursors, thereby limiting neuronal birth. BMPs are therefore required to balance NSC quiescence/proliferation and to prevent loss of the stem cell activity that supports continuous neurogenesis in the mature hippocampus.

Signaling through BMPR-IA regulates quiescence and long-term activity of neural stem cells in the adult hippocampus.

CONSIGLIO, Antonella;
2010-01-01

Abstract

Neural stem cells (NSCs) in the adult hippocampus divide infrequently, and the molecules that modulate their quiescence are largely unknown. Here, we show that bone morphogenetic protein (BMP) signaling is active in hippocampal NSCs, downstream of BMPR-IA. BMPs reversibly diminish proliferation of cultured NSCs while maintaining their undifferentiated state. In vivo, acute blockade of BMP signaling in the hippocampus by intracerebral infusion of Noggin first recruits quiescent NSCs into the cycle and increases neurogenesis; subsequently, it leads to decreased stem cell division and depletion of precursors and newborn neurons. Consistently, selective ablation of Bmpr1a in hippocampal NSCs, or inactivation of BMP canonical signaling in conditional Smad4 knockout mice, transiently enhances proliferation but later leads to a reduced number of precursors, thereby limiting neuronal birth. BMPs are therefore required to balance NSC quiescence/proliferation and to prevent loss of the stem cell activity that supports continuous neurogenesis in the mature hippocampus.
2010
2010
Altre Istituz. pubb. estere
LS7_6 Gene therapy, stem cell therapy, regenerative medicine
LS3_5 Cell differentiation, physiology and dynamics
LS5_6 Developmental neurobiology
Sì, ma tipo non specificato
Inglese
Internazionale
ELETTRONICO
2
7
78
89
12
Neural Stem Cells
14
info:eu-repo/semantics/article
262
Mira, H; Andreu, Z; Suh, H; Lie, Dc; Jessberger, S; Consiglio, Antonella; San Emeterio, J; Hortigüela, R; Marqués Torrejón, Ma; Nakashima, K; Colak, D...espandi
1 Contributo su Rivista::1.1 Articolo in rivista
reserved
File in questo prodotto:
File Dimensione Formato  
Cell Stem Cell-2010.pdf

gestori archivio

Tipologia: Full Text
Licenza: DRM non definito
Dimensione 2.44 MB
Formato Adobe PDF
2.44 MB Adobe PDF   Visualizza/Apri   Richiedi una copia

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11379/166380
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 409
  • ???jsp.display-item.citation.isi??? 383
social impact