SummaryIn the nervous system, neural stem cells (NSCs) are necessary for the generation of new neurons and for cognitive function. Here we show that FoxO3, a member of a transcription factor family known to extend lifespan in invertebrates, regulates the NSC pool. We find that adult FoxO3−/− mice have fewer NSCs in vivo than wild-type counterparts. NSCs isolated from adult FoxO3−/− mice have decreased self-renewal and an impaired ability to generate different neural lineages. Identification of the FoxO3-dependent gene expression profile in NSCs suggests that FoxO3 regulates the NSC pool by inducing a program of genes that preserves quiescence, prevents premature differentiation, and controls oxygen metabolism. The ability of FoxO3 to preven...
Maintaining stem cell quiescence is intimately connected to preserving long-term self-renewal potent...
The FoxO family of transcription factors is known to slow aging downstream from the insulin/IGF (ins...
International audienceStudies in simple model organisms have yielded crucial insights into the genet...
SummaryIn the nervous system, neural stem cells (NSCs) are necessary for the generation of new neuro...
SummaryThe PI3K-AKT-FoxO pathway is integral to lifespan regulation in lower organisms and essential...
The PI3K-AKT-FoxO pathway is integral to lifespan regulation in lower organisms and essential for th...
FOXO transcription factors are central regulators of longevity from worms to humans. FOXO3, the FOXO...
Maintenance of a healthy proteome is essential for cellular homeostasis and loss of proteostasis is ...
SummaryFOXO transcription factors are central regulators of longevity from worms to humans. FOXO3, t...
We and others have shown that embryonic and neonatal fibroblasts can be directly converted into indu...
The forkhead O (FoxO) family of transcription factors participates in diverse physiologic processes,...
Summary Neurodegeneration resulting in cognitive and motor impairment is an inevitable consequence o...
International audienceNeurodegenerative diseases (ND) have been linked to the critical process in ag...
Neurodegenerative diseases (ND) have been linked to the critical process in aging-cellular senescenc...
The transcription factor FOXO is a known regulator of tissue homeostasis and animal lifespan. It was...
Maintaining stem cell quiescence is intimately connected to preserving long-term self-renewal potent...
The FoxO family of transcription factors is known to slow aging downstream from the insulin/IGF (ins...
International audienceStudies in simple model organisms have yielded crucial insights into the genet...
SummaryIn the nervous system, neural stem cells (NSCs) are necessary for the generation of new neuro...
SummaryThe PI3K-AKT-FoxO pathway is integral to lifespan regulation in lower organisms and essential...
The PI3K-AKT-FoxO pathway is integral to lifespan regulation in lower organisms and essential for th...
FOXO transcription factors are central regulators of longevity from worms to humans. FOXO3, the FOXO...
Maintenance of a healthy proteome is essential for cellular homeostasis and loss of proteostasis is ...
SummaryFOXO transcription factors are central regulators of longevity from worms to humans. FOXO3, t...
We and others have shown that embryonic and neonatal fibroblasts can be directly converted into indu...
The forkhead O (FoxO) family of transcription factors participates in diverse physiologic processes,...
Summary Neurodegeneration resulting in cognitive and motor impairment is an inevitable consequence o...
International audienceNeurodegenerative diseases (ND) have been linked to the critical process in ag...
Neurodegenerative diseases (ND) have been linked to the critical process in aging-cellular senescenc...
The transcription factor FOXO is a known regulator of tissue homeostasis and animal lifespan. It was...
Maintaining stem cell quiescence is intimately connected to preserving long-term self-renewal potent...
The FoxO family of transcription factors is known to slow aging downstream from the insulin/IGF (ins...
International audienceStudies in simple model organisms have yielded crucial insights into the genet...