To achieve adequate organ development and size, cell proliferation and differentiation have to be tightly regulated and coordinated. The transcription factor Pax6 regulates patterning, neurogenesis and proliferation in forebrain development. The molecular basis of this regulation is not well understood. As the bipartite DNA-binding paired domain of Pax6 regulates forebrain development, we examined mice with point mutations in its individual DNA-binding subdomains PAI (Pax6Leca4, N50K) and RED (Pax6Leca2, R128C). This revealed distinct roles in regulating proliferation in the developing cerebral cortex, with the PAI and RED subdomain mutations reducing and increasing, respectively, the number of mitoses. Conversely, neurogenesis was affected...
Transcription factor Pax6 plays an important role in fate de-termination of neural progenitor cells ...
Transcription factor Pax6 plays an important role in fate de-termination of neural progenitor cells ...
The transcription factor PAX6 has been implicated in forebrain patterning, cerebral cortical arealiz...
To achieve adequate organ development and size, cell proliferation and differentiation have to be ti...
Generation of the brain depends on proper regulation of progenitor proliferation and differentiation...
The development of the central nervous system relies on the tight regulation of the neural progenito...
The transcription factor Pax6 plays a key role during development of various organs, including the b...
Appropriate neurogenesis and patterning of the forebrain requires the transcription factor Pax6, yet...
Different paired-box transcription factors control various aspects of cell fate during organ develop...
Appropriate neurogenesis and patterning of the forebrain requires the transcription factor Pax6, yet...
Neural stem cell self-renewal, neurogenesis, and cell fate determination are processes that control ...
During development of the CNS, stem and progenitor cell proliferation, cell fate designation, and pa...
The Pax6 encodes a highly conserved transcriptional regulator that contains two DNA binding domains...
Pax6 is a sequence-specific DNA binding transcription factor that positively and negatively regulate...
The predominant precursor cell type during cortical neurogenesis are radial glia cells, which receiv...
Transcription factor Pax6 plays an important role in fate de-termination of neural progenitor cells ...
Transcription factor Pax6 plays an important role in fate de-termination of neural progenitor cells ...
The transcription factor PAX6 has been implicated in forebrain patterning, cerebral cortical arealiz...
To achieve adequate organ development and size, cell proliferation and differentiation have to be ti...
Generation of the brain depends on proper regulation of progenitor proliferation and differentiation...
The development of the central nervous system relies on the tight regulation of the neural progenito...
The transcription factor Pax6 plays a key role during development of various organs, including the b...
Appropriate neurogenesis and patterning of the forebrain requires the transcription factor Pax6, yet...
Different paired-box transcription factors control various aspects of cell fate during organ develop...
Appropriate neurogenesis and patterning of the forebrain requires the transcription factor Pax6, yet...
Neural stem cell self-renewal, neurogenesis, and cell fate determination are processes that control ...
During development of the CNS, stem and progenitor cell proliferation, cell fate designation, and pa...
The Pax6 encodes a highly conserved transcriptional regulator that contains two DNA binding domains...
Pax6 is a sequence-specific DNA binding transcription factor that positively and negatively regulate...
The predominant precursor cell type during cortical neurogenesis are radial glia cells, which receiv...
Transcription factor Pax6 plays an important role in fate de-termination of neural progenitor cells ...
Transcription factor Pax6 plays an important role in fate de-termination of neural progenitor cells ...
The transcription factor PAX6 has been implicated in forebrain patterning, cerebral cortical arealiz...