During brain development, neural progenitor cells proliferate and differentiate into neural precursors. These neural precursors migrate along the radial glial processes and localize at their final destination in the cortex. Numerous reports have revealed that 14-3-3 proteins are involved in many neuronal activities, although their functions in neurogenesis remain unclear. Here, using 14-3-3ε/ζ double knock-out mice, we found that 14-3-3 proteins are important for proliferation and differentiation of neural progenitor cells in the cortex, resulting in neuronal migration defects and seizures. 14-3-3 deficiency resulted in the increase of δ-catenin and the decrease of β-catenin and αN-catenin. 14-3-3 proteins regulated neuronal differentiation...
Intermediate progenitor cells constitute a second proliferative cell type in the developing mammalia...
14-3-3 proteins are ubiquitous molecular chaperones that are abundantly expressed in the brain where...
<p>A) SNX14 protein levels were quantified by Western blotting from different mouse tissues. β-ACTIN...
During brain development, neural progenitor cells proliferate and differentiate into neural precurso...
The 14-3-3 proteins are a family of highly conserved, multifunctional proteins that are highly expre...
The development of the human brain is a vastly complex process resulting in an elaborate network of ...
The generation of glutamatergic neurons by stem and progenitor cells is a complex process involving ...
Regulation of microtubule dynamics is required to properly control various steps of neu...
The generation of glutamatergic neurons by stem and progenitor cells is a complex process involving ...
Complex neuropsychiatric disorders are believed to arise from multiple synergistic deficiencies with...
BACKGROUND: The cell adhesion molecule L1 is crucial for mammalian nervous system development. L1 ac...
The 14-3-3 protein family comprises critical regulatory molecules involved in signaling during cell ...
AbstractTransgenic mice expressing stabilized β-catenin in neural progenitors develop enlarged brain...
AbstractAccumulated evidence suggests that aberrant regulation of δ-catenin leads to pathological co...
14-3-3 proteins are ubiquitous molecular chaperones with important roles in brain development and ne...
Intermediate progenitor cells constitute a second proliferative cell type in the developing mammalia...
14-3-3 proteins are ubiquitous molecular chaperones that are abundantly expressed in the brain where...
<p>A) SNX14 protein levels were quantified by Western blotting from different mouse tissues. β-ACTIN...
During brain development, neural progenitor cells proliferate and differentiate into neural precurso...
The 14-3-3 proteins are a family of highly conserved, multifunctional proteins that are highly expre...
The development of the human brain is a vastly complex process resulting in an elaborate network of ...
The generation of glutamatergic neurons by stem and progenitor cells is a complex process involving ...
Regulation of microtubule dynamics is required to properly control various steps of neu...
The generation of glutamatergic neurons by stem and progenitor cells is a complex process involving ...
Complex neuropsychiatric disorders are believed to arise from multiple synergistic deficiencies with...
BACKGROUND: The cell adhesion molecule L1 is crucial for mammalian nervous system development. L1 ac...
The 14-3-3 protein family comprises critical regulatory molecules involved in signaling during cell ...
AbstractTransgenic mice expressing stabilized β-catenin in neural progenitors develop enlarged brain...
AbstractAccumulated evidence suggests that aberrant regulation of δ-catenin leads to pathological co...
14-3-3 proteins are ubiquitous molecular chaperones with important roles in brain development and ne...
Intermediate progenitor cells constitute a second proliferative cell type in the developing mammalia...
14-3-3 proteins are ubiquitous molecular chaperones that are abundantly expressed in the brain where...
<p>A) SNX14 protein levels were quantified by Western blotting from different mouse tissues. β-ACTIN...