Distinct neurogenic progenitor cell populations balance cell type production in the embryonic mouse retina
Bushnell, H.; Cepko, C.
Show abstract
Mammalian vision depends on the reliable production of over 100 neural cell types from multipotent retinal progenitor cells. How so many cell types are generated in the correct proportions throughout the retina remains incompletely understood. Focusing on the early embryonic period in mice, we found that retinal neurogenesis is organized through discrete neurogenic progenitor cell (NPC) populations with distinct fate biases. NPCs expressing Galanin primarily produce retinal ganglion cells and amacrine cells, whereas Olig2-expressing NPCs produce cones and horizontal cells in the same temporal window. Clonal analysis revealed that these two fate-biased NPC populations arise predominantly from asymmetric, renewing progenitor cell divisions that produce one fate-biased NPC daughter cell. Differential Notch signaling regulates the production of these NPC populations, with Galanin+ and Olig2+ NPCs representing NotchHigh and NotchLow states, respectively. Manipulating Notch signaling was sufficient to toggle their production. The expression of Notch signaling components across NPCs is consistent with a lateral inhibition mechanism, in which fate-biased NPCs promote neighboring cells to adopt a complementary fate-biased NPC state. These findings suggest that the robust production of diverse retinal cell types is achieved through local feedback that balances discrete, fate-biased NPC populations.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Novel Roles of Sonic Hedgehog Signaling in Retinal Patterning and Neurogenesis During Mammalian Eye Development 96%
- C. elegans Runx/CBFβ suppresses POP-1(TCF) to convert asymmetric to proliferative division of stem cell-like seam cells 94%
- Fat1 regulates astrocyte maturation and angiogenesis in the retina 94%
Similar papers in this journal
- Lhx2 is a progenitor-intrinsic modulator of Sonic Hedgehog signaling during early retinal neurogenesis 94%
- Asymmetric neurogenic commitment of retinal progenitors is regulated via the Notch endocytic pathway 94%
- Conservation and Divergence of Related Neuronal Lineages in the Drosophila Central Brain 94%
Similar papers in this journal
- Pou3f1 orchestrates a gene regulatory network controlling contralateral retinogeniculate projections 94%
- Pten regulates endocytic trafficking of cell adhesion and signaling molecules to pattern the retina 94%
- Retinal waves shape starburst amacrine cell dendrite development through a direction-selective dendritic computation 94%
Similar papers in this journal
- Wnt signaling regulates passive cell competition in the retina by inducing differential cell adhesion 97%
- The WT1-like transcription factor Klumpfuss maintains lineage commitment in the intestine 94%
- Single cell transcriptomics reveals lineage trajectory of the retinal ganglion cells in wild-type and Atoh7-null retinas 93%
Similar papers in this journal
- Secondary neurulation-fated cells in the tail bud undergo self-renewal and tubulogenesis regulated by a Sox2 gradient 95%
- A transient decrease in mitochondrial activity is required to establish the ganglion cell fate in retina adapted for high acuity vision 94%
- The Role of Sevenless in Drosophila R7 Photoreceptor Specification 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.