The molecular mechanisms controlling the development of distinct subtypes of neocortical projection neurons, and CNS neuronal diversity more broadly, are only now emerging. We report that the transcription factor SOX5 controls the sequential generation of distinct corticofugal neuron subtypes by preventing premature emergence of normally later-born corticofugal neurons. SOX5 loss-of-function causes striking overlap of the identities of the three principal sequentially born corticofugal neuron subtypes: subplate neurons, corticothalamic neurons, and subcerebral projection neurons. In Sox5(-/-) cortex, subplate neurons aberrantly develop molecular hallmarks and connectivity of subcerebral projection neurons; corticothalamic neurons are imprec...
SummaryThe specification of neuronal subtypes in the cerebral cortex proceeds in a temporal manner; ...
The molecular mechanisms regulating fate divergence of closely related, but distinct, layer 6 cortic...
The cerebral cortex is composed of billions of morphologically and functionally distinct neurons. Th...
SummaryThe molecular mechanisms controlling the development of distinct subtypes of neocortical proj...
The neuronal diversity of the CNS emerges largely from controlled spatial and temporal segregation o...
The precise generation of distinct subtypes of neocortical projection neurons and their proper migra...
Interconnectivity between neocortical areas is critical for sensory integration and sensorimotor tra...
The complex and sophisticated neocortical circuits that mediate higher-order brain functions are ass...
Projection neuron subtype identities in the cerebral cortex are established by expressing pan-cortic...
Projection neuron subtype identities in the cerebral cortex are established through the expression o...
Corticothalamic projection neurons (CThPN) are a diverse set of neurons, critical for function of th...
Projection neurons underly cortical computation and are necessary for proper cortical function. Unde...
Summary: Organ formation and maintenance depends on slowly self-renewing stem cells that supply an i...
Little is known about the molecular mechanisms and intrinsic factors that are responsible for the em...
<div><p>Little is known about the molecular mechanisms and intrinsic factors that are responsible fo...
SummaryThe specification of neuronal subtypes in the cerebral cortex proceeds in a temporal manner; ...
The molecular mechanisms regulating fate divergence of closely related, but distinct, layer 6 cortic...
The cerebral cortex is composed of billions of morphologically and functionally distinct neurons. Th...
SummaryThe molecular mechanisms controlling the development of distinct subtypes of neocortical proj...
The neuronal diversity of the CNS emerges largely from controlled spatial and temporal segregation o...
The precise generation of distinct subtypes of neocortical projection neurons and their proper migra...
Interconnectivity between neocortical areas is critical for sensory integration and sensorimotor tra...
The complex and sophisticated neocortical circuits that mediate higher-order brain functions are ass...
Projection neuron subtype identities in the cerebral cortex are established by expressing pan-cortic...
Projection neuron subtype identities in the cerebral cortex are established through the expression o...
Corticothalamic projection neurons (CThPN) are a diverse set of neurons, critical for function of th...
Projection neurons underly cortical computation and are necessary for proper cortical function. Unde...
Summary: Organ formation and maintenance depends on slowly self-renewing stem cells that supply an i...
Little is known about the molecular mechanisms and intrinsic factors that are responsible for the em...
<div><p>Little is known about the molecular mechanisms and intrinsic factors that are responsible fo...
SummaryThe specification of neuronal subtypes in the cerebral cortex proceeds in a temporal manner; ...
The molecular mechanisms regulating fate divergence of closely related, but distinct, layer 6 cortic...
The cerebral cortex is composed of billions of morphologically and functionally distinct neurons. Th...