During the transition from S phase to mitosis, vertebrate neuroepithelial cells displace their nuclei and subsequently migrate from the basal membrane to the apical surface of the neuroepithelium, a phenomenon termed interkinetic nuclear movement (INM). Here we provide evidence that cycling neuroepithelial cells pass through a neurogenic state in which they are situated apically, as defined by the capacity to express Notch1, Delta1, and Neurogenin2 (Ngn2). Based on this scenario, we have developed a mathematical model to analyze the influence of INM on neurogenesis. In the absence of INM, the model predicted an increase in the rate of neurogenesis due to the reduction in the influence of inhibitory signals on cells in the neurogenic state. ...
Interkinetic nuclear migration (INM), the movement of neuroepithelial and radial glial cell nuclei a...
SummaryAnimal development requires tight integration between the processes of proliferative growth a...
Radial glial progenitor cells exhibit bidirectional cell cycle-dependent nuclear oscillations. The p...
SummaryThe different cell types in the central nervous system develop from a common pool of progenit...
AbstractNeural progenitor cells in the pseudostratified neuroepithelium in vertebrates undergo inter...
The nuclei of progenitor cells in developing neural epithelia change their position during the cell ...
Nuclei in the proliferative pseudostratified epithelia of vastly different organisms exhibit a chara...
Nuclei in the proliferative pseudostratified epithelia of vastly different organisms exhibit a chara...
Nuclei in the proliferative pseudostratified epithelia of vastly different organisms exhibit a chara...
Interkinetic nuclear migration (INM), the movement of neuroepithelial and radial glial cell nuclei a...
Abstract The nuclei of neuroepithelial cells move along the apicobasal axis in synchronization with ...
ABSTRACT Neuronal production in metazoans is tightly controlled by Delta/Notch-dependent signals reg...
ABSTRACT Neuronal production in metazoans is tightly controlled by Delta/Notch-dependent signals reg...
SummaryProgenitor cell nuclei in the rapidly expanding epithelium of the embryonic vertebrate centra...
Interkinetic nuclear migration (INM), the movement of neuroepithelial and radial glial cell nuclei a...
Interkinetic nuclear migration (INM), the movement of neuroepithelial and radial glial cell nuclei a...
SummaryAnimal development requires tight integration between the processes of proliferative growth a...
Radial glial progenitor cells exhibit bidirectional cell cycle-dependent nuclear oscillations. The p...
SummaryThe different cell types in the central nervous system develop from a common pool of progenit...
AbstractNeural progenitor cells in the pseudostratified neuroepithelium in vertebrates undergo inter...
The nuclei of progenitor cells in developing neural epithelia change their position during the cell ...
Nuclei in the proliferative pseudostratified epithelia of vastly different organisms exhibit a chara...
Nuclei in the proliferative pseudostratified epithelia of vastly different organisms exhibit a chara...
Nuclei in the proliferative pseudostratified epithelia of vastly different organisms exhibit a chara...
Interkinetic nuclear migration (INM), the movement of neuroepithelial and radial glial cell nuclei a...
Abstract The nuclei of neuroepithelial cells move along the apicobasal axis in synchronization with ...
ABSTRACT Neuronal production in metazoans is tightly controlled by Delta/Notch-dependent signals reg...
ABSTRACT Neuronal production in metazoans is tightly controlled by Delta/Notch-dependent signals reg...
SummaryProgenitor cell nuclei in the rapidly expanding epithelium of the embryonic vertebrate centra...
Interkinetic nuclear migration (INM), the movement of neuroepithelial and radial glial cell nuclei a...
Interkinetic nuclear migration (INM), the movement of neuroepithelial and radial glial cell nuclei a...
SummaryAnimal development requires tight integration between the processes of proliferative growth a...
Radial glial progenitor cells exhibit bidirectional cell cycle-dependent nuclear oscillations. The p...