Quiescence is important for sustaining neural stem cells (NSCs) in the adult brain over the lifespan. Lysosomes are digestive organelles that degrade membrane receptors after they undergo endolysosomal membrane trafficking. Enlarged lysosomes are present in quiescent NSCs (qNSCs) in the subventricular zone of the mouse brain, but it remains largely unknown how lysosomal function is involved in the quiescence. Here we show that qNSCs exhibit higher lysosomal activity and degrade activated EGF receptor by endolysosomal degradation more rapidly than proliferating NSCs. Chemical inhibition of lysosomal degradation in qNSCs prevents degradation of signaling receptors resulting in exit from quiescence. Furthermore, conditional knockout of TFEB, a...
Quiescence is essential for long-term maintenance of adult stem cells and tissue homeostasis. The ad...
Lysosomes are organelles central to degradation and recycling processes in animal cells. Whether lys...
The majority of neural stem cells (NSCs) in the adult brain are quiescent, and this fraction increas...
Quiescence is important for sustaining neural stem cells (NSCs) in the adult brain over the lifespan...
Adult neurogenesis supports cognitive and sensory functions in mammals and is significantly reduced ...
Summary: Deciphering the mechanisms that regulate the quiescence of adult neural stem cells (NSCs) i...
Abstract Neurogenesis in the adult mammalian brain relies on the lifelong persistence of quiescent n...
Neural stem cell (NSC) quiescence plays pivotal roles in avoiding exhaustion of NSCs and securing su...
Adult neurogenesis, arising from quiescent radial-glia-like neural stem cells (RGLs), occurs through...
Quiescent stem cells in adult tissues can be activated for homeostasis or repair. Neural stem cells ...
Neural stem cells (NSCs) are crucial for development, regeneration, and repair of the nervous system...
AbstractQuiescent neural stem cells (NSCs) are considered the reservoir for adult neurogenesis, gene...
Quiescence is essential for long-term maintenance of adult stem cells. Niche signals regulate the tr...
Quiescence is essential for long-term maintenance of adult stem cells. Niche signals regulate the tr...
Recent studies of autophagic and lysosomal pathways have significantly changed our understanding of ...
Quiescence is essential for long-term maintenance of adult stem cells and tissue homeostasis. The ad...
Lysosomes are organelles central to degradation and recycling processes in animal cells. Whether lys...
The majority of neural stem cells (NSCs) in the adult brain are quiescent, and this fraction increas...
Quiescence is important for sustaining neural stem cells (NSCs) in the adult brain over the lifespan...
Adult neurogenesis supports cognitive and sensory functions in mammals and is significantly reduced ...
Summary: Deciphering the mechanisms that regulate the quiescence of adult neural stem cells (NSCs) i...
Abstract Neurogenesis in the adult mammalian brain relies on the lifelong persistence of quiescent n...
Neural stem cell (NSC) quiescence plays pivotal roles in avoiding exhaustion of NSCs and securing su...
Adult neurogenesis, arising from quiescent radial-glia-like neural stem cells (RGLs), occurs through...
Quiescent stem cells in adult tissues can be activated for homeostasis or repair. Neural stem cells ...
Neural stem cells (NSCs) are crucial for development, regeneration, and repair of the nervous system...
AbstractQuiescent neural stem cells (NSCs) are considered the reservoir for adult neurogenesis, gene...
Quiescence is essential for long-term maintenance of adult stem cells. Niche signals regulate the tr...
Quiescence is essential for long-term maintenance of adult stem cells. Niche signals regulate the tr...
Recent studies of autophagic and lysosomal pathways have significantly changed our understanding of ...
Quiescence is essential for long-term maintenance of adult stem cells and tissue homeostasis. The ad...
Lysosomes are organelles central to degradation and recycling processes in animal cells. Whether lys...
The majority of neural stem cells (NSCs) in the adult brain are quiescent, and this fraction increas...