SummaryDirect lineage reprogramming induces dramatic shifts in cellular identity, employing poorly understood mechanisms. Recently, we demonstrated that expression of Neurog2 or Ascl1 in postnatal mouse astrocytes generates glutamatergic or GABAergic neurons. Here, we take advantage of this model to study dynamics of neuronal cell fate acquisition at the transcriptional level. We found that Neurog2 and Ascl1 rapidly elicited distinct neurogenic programs with only a small subset of shared target genes. Within this subset, only NeuroD4 could by itself induce neuronal reprogramming in both mouse and human astrocytes, while co-expression with Insm1 was required for glutamatergic maturation. Cultured astrocytes gradually became refractory to rep...
International audienceAsymmetric neuronal expansion is thought to drive evolutionary transitions bet...
Ectopic expression of defined transcription factors can force direct cell-fate conversion from one l...
Recent studies demonstrate that astroglia from non-neurogenic brain regions can be reprogrammed into...
© 2015 Elsevier Inc. Direct lineage reprogramming induces dramatic shifts in cellular identity, empl...
Direct lineage reprogramming induces dramatic shifts in cellular identity, employing poorly understo...
SummaryDirect lineage reprogramming induces dramatic shifts in cellular identity, employing poorly u...
Understanding the mechanisms underlying neuronal fate determination will provide important insights ...
Astrocytes are a viable source for generating new neurons via direct conversion. However, little is ...
AbstractGenerating neural stem cells and neurons from reprogrammed human astrocytes is a potential s...
Generating neural stem cells and neurons from reprogrammed human astrocytes is a potential strategy ...
Astrocytes are a viable source for generating new neurons via direct conversion. However, little is ...
12 páginas, 7 figurasDevelopmental programs that generate the astonishing neuronal diversity of the ...
Astrocytes play a significant role in coordinating neural development and provide critical support f...
SummaryRecent studies demonstrate that astroglia from non-neurogenic brain regions can be reprogramm...
Summary: The adult CNS has poor ability to replace degenerated neurons following injury or disease. ...
International audienceAsymmetric neuronal expansion is thought to drive evolutionary transitions bet...
Ectopic expression of defined transcription factors can force direct cell-fate conversion from one l...
Recent studies demonstrate that astroglia from non-neurogenic brain regions can be reprogrammed into...
© 2015 Elsevier Inc. Direct lineage reprogramming induces dramatic shifts in cellular identity, empl...
Direct lineage reprogramming induces dramatic shifts in cellular identity, employing poorly understo...
SummaryDirect lineage reprogramming induces dramatic shifts in cellular identity, employing poorly u...
Understanding the mechanisms underlying neuronal fate determination will provide important insights ...
Astrocytes are a viable source for generating new neurons via direct conversion. However, little is ...
AbstractGenerating neural stem cells and neurons from reprogrammed human astrocytes is a potential s...
Generating neural stem cells and neurons from reprogrammed human astrocytes is a potential strategy ...
Astrocytes are a viable source for generating new neurons via direct conversion. However, little is ...
12 páginas, 7 figurasDevelopmental programs that generate the astonishing neuronal diversity of the ...
Astrocytes play a significant role in coordinating neural development and provide critical support f...
SummaryRecent studies demonstrate that astroglia from non-neurogenic brain regions can be reprogramm...
Summary: The adult CNS has poor ability to replace degenerated neurons following injury or disease. ...
International audienceAsymmetric neuronal expansion is thought to drive evolutionary transitions bet...
Ectopic expression of defined transcription factors can force direct cell-fate conversion from one l...
Recent studies demonstrate that astroglia from non-neurogenic brain regions can be reprogrammed into...