Delta-Notch Signaling: The Long and The Short of a Neuron's Influence on Progenitor Fates

J Dev Biol. 2020 Mar 26;8(2):8. doi: 10.3390/jdb8020008.

Abstract

Maintenance of the neural progenitor pool during embryonic development is essential to promote growth of the central nervous system (CNS). The CNS is initially formed by tightly compacted proliferative neuroepithelial cells that later acquire radial glial characteristics and continue to divide at the ventricular (apical) and pial (basal) surface of the neuroepithelium to generate neurons. While neural progenitors such as neuroepithelial cells and apical radial glia form strong connections with their neighbours at the apical and basal surfaces of the neuroepithelium, neurons usually form the mantle layer at the basal surface. This review will discuss the existing evidence that supports a role for neurons, from early stages of differentiation, in promoting progenitor cell fates in the vertebrates CNS, maintaining tissue homeostasis and regulating spatiotemporal patterning of neuronal differentiation through Delta-Notch signalling.

Keywords: asymmetric division; delta; long and short range lateral inhibition; neurogenesis; neuron; neuronal apical detachment; notch.

Publication types

  • Review