During corticogenesis, ventricular zone progenitors sequentially generate distinct subtypes of neurons, accounting for the diversity of neocortical cells and the circuits they form. While activity-dependent processes are critical for the differentiation and circuit assembly of postmitotic neurons, how bioelectrical processes affect nonexcitable cells, such as progenitors, remains largely unknown. Here, we reveal that, in the developing mouse neocortex, ventricular zone progenitors become more hyperpolarized as they generate successive subtypes of neurons. Experimental in vivo hyperpolarization shifted the transcriptional programs and division modes of these progenitors to a later developmental status, with precocious generation of intermedi...
Neural stem and progenitor cells have a central role in the development and evolution of the mammali...
Cerebral cortex projection neurons (PNs) are generated from intermediate progenitors (IPs), which ar...
The switch of neural stem and progenitor cells from proliferation to differentiation during developm...
During corticogenesis, ventricular zone progenitors sequentially generate distinct subtypes of neuro...
The diverse subtypes of excitatory neurons that populate the neocortex are born from apical progenit...
Apical progenitor cells residing in the ventricular zone generate all the diverse neuronal subtypes ...
The mammalian neocortex is characterized by a variety of neuronal cell types and precise arrangement...
During corticogenesis, distinct subtypes of neurons are sequentially born from ventricular zone prog...
The concerted action of ion channels and pumps establishing a resting membrane potential has been mo...
The mammalian neocortex is the seat of higher cognitive functions, such as thinking and language in ...
Neural stem and progenitor cells have a central role in the development and evolution of the mammali...
In mammals, many diseases of the central nervous system (CNS) are associated with substantial neuron...
SummaryIntermediate progenitors (IPs) amplify the production of pyramidal neurons, but their role in...
Neocortical neurons are born from progenitors situated in the ventricular zone (VZ) and migrate to t...
The neurons of the mammalian brain are generated by progenitors dividing either at the apical surfac...
Neural stem and progenitor cells have a central role in the development and evolution of the mammali...
Cerebral cortex projection neurons (PNs) are generated from intermediate progenitors (IPs), which ar...
The switch of neural stem and progenitor cells from proliferation to differentiation during developm...
During corticogenesis, ventricular zone progenitors sequentially generate distinct subtypes of neuro...
The diverse subtypes of excitatory neurons that populate the neocortex are born from apical progenit...
Apical progenitor cells residing in the ventricular zone generate all the diverse neuronal subtypes ...
The mammalian neocortex is characterized by a variety of neuronal cell types and precise arrangement...
During corticogenesis, distinct subtypes of neurons are sequentially born from ventricular zone prog...
The concerted action of ion channels and pumps establishing a resting membrane potential has been mo...
The mammalian neocortex is the seat of higher cognitive functions, such as thinking and language in ...
Neural stem and progenitor cells have a central role in the development and evolution of the mammali...
In mammals, many diseases of the central nervous system (CNS) are associated with substantial neuron...
SummaryIntermediate progenitors (IPs) amplify the production of pyramidal neurons, but their role in...
Neocortical neurons are born from progenitors situated in the ventricular zone (VZ) and migrate to t...
The neurons of the mammalian brain are generated by progenitors dividing either at the apical surfac...
Neural stem and progenitor cells have a central role in the development and evolution of the mammali...
Cerebral cortex projection neurons (PNs) are generated from intermediate progenitors (IPs), which ar...
The switch of neural stem and progenitor cells from proliferation to differentiation during developm...