Proper proliferation and differentiation of neural progenitors (NPs) in the developing cerebral cortex are critical for normal brain formation and function. Emerging evidence has shown the importance of microRNAs (miRNAs) in regulating cortical development and the etiology of neurological disorders. Here we show that miR-26 is co-expressed with its host gene Ctdsp in the mouse embryonic cortex. We demonstrate that similar to its host gene Ctdsp2, miR-26 positively regulates proliferation of NPs through controlling the cell-cycle progression, by using miR-26 overexpression and sponge approaches. On the contrary, miR-26 target gene Emx2 limits expansion of cortical NPs, and promotes transcription of miR-26 host gene Ctdsp. Our study suggests ...
MicroRNAs (miRNAs) are non-coding RNAs that promote post-transcriptional silencing of genes involved...
Expansion of the neural progenitor pool in the developing cerebral cortex is crucial for controlling...
MicroRNAs (miRNAs) are rapidly emerging as a new layer of regulation of mammalian brain development....
<p>Proper proliferation and differentiation of neural progenitors (NPs) in the developing cerebral c...
Neurogenesis during the development of the mammalian cerebral cortex involves a switch of neural ste...
Proper growth of the mammalian cerebral cortex is crucial for normal brain functions and is controll...
SummaryDuring development of the embryonic neocortex, tightly regulated expansion of neural stem cel...
Background: Glutamatergic neurons of the murine cerebral cortex are generated within periventricular...
SummaryProper growth of the mammalian cerebral cortex is crucial for normal brain functions and is c...
SummaryOver the course of cortical neurogenesis, the transition of progenitors from proliferation to...
SummaryThe molecular mechanisms regulating neural progenitor (NP) proliferation are fundamental in e...
During development of the embryonic neocortex, tightly regulated expansion of neural stem cells (NSC...
MicroRNAs (miRNAs) are a class of non-coding RNA molecules increasingly recognized to play varied ro...
AbstractHow neural progenitor cell (NPC) behaviors are temporally controlled in early developing emb...
International audienceOver the course of cortical neurogenesis, the transition of progenitors from p...
MicroRNAs (miRNAs) are non-coding RNAs that promote post-transcriptional silencing of genes involved...
Expansion of the neural progenitor pool in the developing cerebral cortex is crucial for controlling...
MicroRNAs (miRNAs) are rapidly emerging as a new layer of regulation of mammalian brain development....
<p>Proper proliferation and differentiation of neural progenitors (NPs) in the developing cerebral c...
Neurogenesis during the development of the mammalian cerebral cortex involves a switch of neural ste...
Proper growth of the mammalian cerebral cortex is crucial for normal brain functions and is controll...
SummaryDuring development of the embryonic neocortex, tightly regulated expansion of neural stem cel...
Background: Glutamatergic neurons of the murine cerebral cortex are generated within periventricular...
SummaryProper growth of the mammalian cerebral cortex is crucial for normal brain functions and is c...
SummaryOver the course of cortical neurogenesis, the transition of progenitors from proliferation to...
SummaryThe molecular mechanisms regulating neural progenitor (NP) proliferation are fundamental in e...
During development of the embryonic neocortex, tightly regulated expansion of neural stem cells (NSC...
MicroRNAs (miRNAs) are a class of non-coding RNA molecules increasingly recognized to play varied ro...
AbstractHow neural progenitor cell (NPC) behaviors are temporally controlled in early developing emb...
International audienceOver the course of cortical neurogenesis, the transition of progenitors from p...
MicroRNAs (miRNAs) are non-coding RNAs that promote post-transcriptional silencing of genes involved...
Expansion of the neural progenitor pool in the developing cerebral cortex is crucial for controlling...
MicroRNAs (miRNAs) are rapidly emerging as a new layer of regulation of mammalian brain development....