The adult mouse subependymal zone provides a niche for mammalian neural stem cells (NSCs). However, the molecular signature, self-renewal potential, and fate behavior of NSCs remain poorly defined. Here we propose a model in which the fate of active NSCs is coupled to the total number of neighboring NSCs in a shared niche. Using knock-in reporter alleles and single-cell RNA sequencing, we show that the Wnt target Tnfrsf19/Troy identifies both active and quiescent NSCs. Quantitative analysis of genetic lineage tracing of individual NSCs under homeostasis or in response to injury reveals rapid expansion of stem-cell number before some return to quiescence. This behavior is best explained by stochastic fate decisions, where stem-cell number wi...
International audienceAdult stem cell populations must coordinate their own maintenance with the gen...
Understanding the molecular mechanisms underlying activation of quiescent neural stem cells (NSCs) i...
Summary: Adult murine neural stem cells (NSCs) generate neurons in drastically declining numbers wit...
The adult mouse subependymal zone provides a niche for mammalian neural stem cells (NSCs). However, ...
Summary: Deciphering the mechanisms that regulate the quiescence of adult neural stem cells (NSCs) i...
Neural stem cells (NSCs) reside in a unique microenvironment called the neurogenic niche and generat...
Neural stem cells (NSCs) are crucial for development, regeneration, and repair of the nervous system...
Adult murine neural stem cells (NSCs) generate neurons in drastically declining numbers with age. Ho...
Neural stem cells (NSCs) contribute to plasticity and repair of the adult brain. Niches harboring NS...
SummaryHeterogeneous pools of adult neural stem cells (NSCs) contribute to brain maintenance and reg...
<div><p>Neural stem cells (NSCs) reside in a unique microenvironment called the neurogenic niche and...
There is increasing evidence demonstrating that adult neural stem cells (NSCs) are a cell of origin ...
Neural stem cells (NSCs) reside in a unique microenvironment called the neurogenic niche and generat...
Adult hippocampal neural stem cells (NSCs) retain the capacity to self-renew and differentiate down ...
Neurogenesis persists in selected regions of the adult mouse brain; among them, the ventricular-subv...
International audienceAdult stem cell populations must coordinate their own maintenance with the gen...
Understanding the molecular mechanisms underlying activation of quiescent neural stem cells (NSCs) i...
Summary: Adult murine neural stem cells (NSCs) generate neurons in drastically declining numbers wit...
The adult mouse subependymal zone provides a niche for mammalian neural stem cells (NSCs). However, ...
Summary: Deciphering the mechanisms that regulate the quiescence of adult neural stem cells (NSCs) i...
Neural stem cells (NSCs) reside in a unique microenvironment called the neurogenic niche and generat...
Neural stem cells (NSCs) are crucial for development, regeneration, and repair of the nervous system...
Adult murine neural stem cells (NSCs) generate neurons in drastically declining numbers with age. Ho...
Neural stem cells (NSCs) contribute to plasticity and repair of the adult brain. Niches harboring NS...
SummaryHeterogeneous pools of adult neural stem cells (NSCs) contribute to brain maintenance and reg...
<div><p>Neural stem cells (NSCs) reside in a unique microenvironment called the neurogenic niche and...
There is increasing evidence demonstrating that adult neural stem cells (NSCs) are a cell of origin ...
Neural stem cells (NSCs) reside in a unique microenvironment called the neurogenic niche and generat...
Adult hippocampal neural stem cells (NSCs) retain the capacity to self-renew and differentiate down ...
Neurogenesis persists in selected regions of the adult mouse brain; among them, the ventricular-subv...
International audienceAdult stem cell populations must coordinate their own maintenance with the gen...
Understanding the molecular mechanisms underlying activation of quiescent neural stem cells (NSCs) i...
Summary: Adult murine neural stem cells (NSCs) generate neurons in drastically declining numbers wit...