Cortical development depends upon tightly controlled cell fate and cell survival decisions that generate a functional neuronal population, but the coordination of these two processes is poorly understood. Here we show that conditional removal of a key apical complex protein, Pals1, causes premature withdrawal from the cell cycle, inducing excessive generation of early-born postmitotic neurons followed by surprisingly massive and rapid cell death, leading to the abrogation of virtually the entire cortical structure. Pals1 loss shows exquisite dosage sensitivity, so that heterozygote mutants show an intermediate phenotype on cell fate and cell death. Loss of Pals1 blocks essential cell survival signals, including the mammalian target of rapam...
KCC2, encoded in humans by the SLC12A5 gene, is a multifunctional neuron-specific protein initially ...
The mammalian neocortex supports conscious functions through development of carefully coordinated co...
Developmental neuron death plays a pivotal role in refining organization and wiring during neocortex...
Cortical development depends upon tightly controlled cell fate and cell survival decisions that gene...
SummaryCortical development depends upon tightly controlled cell fate and cell survival decisions th...
Through their biased localization and function within the cell, polarity complex proteins are necess...
Complex neuronal circuitries such as those found in the mammalian cerebral cortex have evolved as ba...
Cortical development depends on the active integration of cell autonomous and extrinsic cues, but th...
AbstractPocket proteins (pRb, p107 and p130) are well studied in their role of regulating cell cycle...
Mutations in the alpha-thalassemia mental retardation X-linked (ATRX) gene cause a spectrum of abnor...
AbstractThe formation of a functionally integrated nervous system is dependent on a highly organized...
Embryonic neocortical development depends on balanced production of progenitors and neurons. Genetic...
The mammalian target of rapamycin (mTOR) regulates cell growth in response to various intracellular ...
The concept that target tissues determine the survival of neurons has inspired much of the thinking ...
The concept that target tissues determine the survival of neurons has inspired much of the thinking ...
KCC2, encoded in humans by the SLC12A5 gene, is a multifunctional neuron-specific protein initially ...
The mammalian neocortex supports conscious functions through development of carefully coordinated co...
Developmental neuron death plays a pivotal role in refining organization and wiring during neocortex...
Cortical development depends upon tightly controlled cell fate and cell survival decisions that gene...
SummaryCortical development depends upon tightly controlled cell fate and cell survival decisions th...
Through their biased localization and function within the cell, polarity complex proteins are necess...
Complex neuronal circuitries such as those found in the mammalian cerebral cortex have evolved as ba...
Cortical development depends on the active integration of cell autonomous and extrinsic cues, but th...
AbstractPocket proteins (pRb, p107 and p130) are well studied in their role of regulating cell cycle...
Mutations in the alpha-thalassemia mental retardation X-linked (ATRX) gene cause a spectrum of abnor...
AbstractThe formation of a functionally integrated nervous system is dependent on a highly organized...
Embryonic neocortical development depends on balanced production of progenitors and neurons. Genetic...
The mammalian target of rapamycin (mTOR) regulates cell growth in response to various intracellular ...
The concept that target tissues determine the survival of neurons has inspired much of the thinking ...
The concept that target tissues determine the survival of neurons has inspired much of the thinking ...
KCC2, encoded in humans by the SLC12A5 gene, is a multifunctional neuron-specific protein initially ...
The mammalian neocortex supports conscious functions through development of carefully coordinated co...
Developmental neuron death plays a pivotal role in refining organization and wiring during neocortex...