AbstractDuring development, neural progenitor cells or neuroblasts generate a great intra- and inter-segmental diversity of neuronal and glial cell types in the nervous system. In thoracic segments of the embryonic central nervous system of Drosophila, the neuroblast NB6-4t undergoes an asymmetric first division to generate a neuronal and a glial sublineage, while abdominal NB6-4a divides once symmetrically to generate only 2 glial cells. We had earlier reported a critical function for the G1 cyclin, CyclinE (CycE) in regulating asymmetric cell division in NB6-4t. Here we show that (i) this function of CycE is independent of its role in cell cycle regulation and (ii) the two functions are mediated by distinct domains at the protein level. R...
During central nervous system (CNS) development, progenitors typically divide asymmetrically, renewi...
During central nervous system (CNS) development, progenitors typically divide asymmetrically, renewi...
‘Normal' development requires a finely tuned equilibrium between cell differentiation and cell proli...
During development, neural progenitor cells or neuroblasts generate a great intra-and inter-segmenta...
AbstractDuring development, neural progenitor cells or neuroblasts generate a great intra- and inter...
We have examined the process by which cell diversity is generated in neuroblast (NB) lineages in the...
The mechanisms controlling the generation of cell diversity in the central nervous system belong to ...
AbstractNeurons and glia are produced in stereotyped patterns after neuroblast cell division during ...
Cell proliferation, specification and terminal differentiation must be precisely coordinated during ...
Over the past decade, many of the key components of the genetic machinery that regulate the asymmetr...
AbstractWe have studied the division of postembryonic neuroblasts (Nbs) in the outer proliferation c...
The majority of cells that build the nervous system of animals are generated early in embryonic deve...
Matching of neurons and glia is necessary for central nervous system development. I aimed to elucida...
Neuronal precursor cells undergo self-renewing and non-self-renewing asymmetric divisions to generat...
AbstractAsymmetric cell division generates two daughter cells of differential gene expression and/or...
During central nervous system (CNS) development, progenitors typically divide asymmetrically, renewi...
During central nervous system (CNS) development, progenitors typically divide asymmetrically, renewi...
‘Normal' development requires a finely tuned equilibrium between cell differentiation and cell proli...
During development, neural progenitor cells or neuroblasts generate a great intra-and inter-segmenta...
AbstractDuring development, neural progenitor cells or neuroblasts generate a great intra- and inter...
We have examined the process by which cell diversity is generated in neuroblast (NB) lineages in the...
The mechanisms controlling the generation of cell diversity in the central nervous system belong to ...
AbstractNeurons and glia are produced in stereotyped patterns after neuroblast cell division during ...
Cell proliferation, specification and terminal differentiation must be precisely coordinated during ...
Over the past decade, many of the key components of the genetic machinery that regulate the asymmetr...
AbstractWe have studied the division of postembryonic neuroblasts (Nbs) in the outer proliferation c...
The majority of cells that build the nervous system of animals are generated early in embryonic deve...
Matching of neurons and glia is necessary for central nervous system development. I aimed to elucida...
Neuronal precursor cells undergo self-renewing and non-self-renewing asymmetric divisions to generat...
AbstractAsymmetric cell division generates two daughter cells of differential gene expression and/or...
During central nervous system (CNS) development, progenitors typically divide asymmetrically, renewi...
During central nervous system (CNS) development, progenitors typically divide asymmetrically, renewi...
‘Normal' development requires a finely tuned equilibrium between cell differentiation and cell proli...