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Updated: Aug 28, 2025

Single-cell Profiling of Developing and Mature Retinal Neurons
Published on: April 19, 2012
Cellular and Molecular Determinants of Retinal Cell Fate
Eleni Petridou1,2, Leanne Godinho1
1Institute of Neuronal Cell Biology, Technical University of Munich, Munich, Germany; email: eleni.petridou@tum.de, leanne.godinho@tum.de.
Abstract:
The vertebrate retina is regarded as a simple part of the central nervous system (CNS) and thus amenable to investigations of the determinants of cell fate. Its five neuronal cell classes and one glial cell class all derive from a common pool of progenitors. Here we review how each cell class is generated. Retinal progenitors progress through different competence states, in each of which they generate only a small repertoire of cell classes. The intrinsic state of the progenitor is determined by the complement of transcription factors it expresses. Thus, although progenitors are multipotent, there is a bias in the types of fates they generate during any particular time window. Overlying these competence states are stochastic mechanisms that influence fate decisions. These mechanisms are determined by a weighted set of probabilities based on the abundance of a cell class in the retina. Deterministic mechanisms also operate, especially late in development, when preprogrammed progenitors solely generate specific fates.
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