The proneural transcription factor Achaete-scute complex-like 1 (Ascl1) is a major regulator of neural fate decisions, implicated both in neurogenesis and oligodendrogliogenesis. Focusing on its neurogenic activity, Ascl1 has been widely used to reprogram non-neuronal cells into induced neurons. In vitro, Ascl1 induces efficient reprogramming of proliferative astroglia from the early postnatal cerebral cortex into interneuron-like cells. Here, we examined whether Ascl1 can similarly induce neuronal reprogramming of glia undergoing proliferation in the postnatal mouse cerebral cortex in vivo. Toward this goal, we targeted cortical glia during the peak of proliferative expansion (i.e., postnatal day 5) by injecting a retrovirus encoding for A...
The proneural transcription factor Ascl1 coordinates gene expression in both proliferating and diffe...
SummaryDirect conversion of nonneural cells to functional neurons holds great promise for neurologic...
SummaryDirect lineage reprogramming induces dramatic shifts in cellular identity, employing poorly u...
The proneural transcription factor Achaete-scute complex-like 1 (Ascl1) is a major regulator of neur...
The proneural transcription factor Achaete-scute complex-like 1 (Ascl1) is a major regulator of neur...
Proneural genes such as Ascl1 are known to promote cell cycle exit and neuronal differentiation when...
Radial Glia (RG) cells constitute the major population of neural progenitors of the mouse developing...
The proneural factor Achaete-scute complex-like 1 (Ascl1/Mash1) acts as a pioneering transcription f...
International audienceOligodendrocytes are the myelin-forming cells of the CNS. They differentiate f...
Abstract Background Although the vast majority of cel...
Proneural transcription factors (TFs) such as Ascl1 function as master regulators of neurogenesis in...
SummaryThe proneural transcription factor Ascl1 coordinates gene expression in both proliferating an...
International audienceThe proneural transcription factor Ascl1 coordinates gene expression in both p...
© 2015 Elsevier Inc. Direct lineage reprogramming induces dramatic shifts in cellular identity, empl...
Astrocytes are a viable source for generating new neurons via direct conversion. However, little is ...
The proneural transcription factor Ascl1 coordinates gene expression in both proliferating and diffe...
SummaryDirect conversion of nonneural cells to functional neurons holds great promise for neurologic...
SummaryDirect lineage reprogramming induces dramatic shifts in cellular identity, employing poorly u...
The proneural transcription factor Achaete-scute complex-like 1 (Ascl1) is a major regulator of neur...
The proneural transcription factor Achaete-scute complex-like 1 (Ascl1) is a major regulator of neur...
Proneural genes such as Ascl1 are known to promote cell cycle exit and neuronal differentiation when...
Radial Glia (RG) cells constitute the major population of neural progenitors of the mouse developing...
The proneural factor Achaete-scute complex-like 1 (Ascl1/Mash1) acts as a pioneering transcription f...
International audienceOligodendrocytes are the myelin-forming cells of the CNS. They differentiate f...
Abstract Background Although the vast majority of cel...
Proneural transcription factors (TFs) such as Ascl1 function as master regulators of neurogenesis in...
SummaryThe proneural transcription factor Ascl1 coordinates gene expression in both proliferating an...
International audienceThe proneural transcription factor Ascl1 coordinates gene expression in both p...
© 2015 Elsevier Inc. Direct lineage reprogramming induces dramatic shifts in cellular identity, empl...
Astrocytes are a viable source for generating new neurons via direct conversion. However, little is ...
The proneural transcription factor Ascl1 coordinates gene expression in both proliferating and diffe...
SummaryDirect conversion of nonneural cells to functional neurons holds great promise for neurologic...
SummaryDirect lineage reprogramming induces dramatic shifts in cellular identity, employing poorly u...