Jagged-mediated lateral induction patterns Notch3 signaling within adult neural stem cell populations
ORTICA, S.; MARTINEZ-HERRERA, M.; DEGROUX, L.; ROCHETTE, B.; DRAY, N.; BALLY-CUIF, L.
Show abstract
In the adult brain, Notch3 signaling promotes neural stem cell (NSC) quiescence and stemness. It remains unknown how Notch3 signaling levels are controlled and relate to these NSC decisions. Here we directly measure the nuclear translocation of the Notch3 intracellular fragment (N3ICD) and quantify Notch3 signaling in NSCs of the zebrafish adult telencephalon in situ. We report that Notch3 signaling levels match NSC quiescence and stemness levels. In physical space, Notch3 signaling is patterned and high signaling levels surround N3ICDlow cells, which also express the deltaA (dla) ligand. Another ligand, jagged1b (jag1b), expressed in all NSCs, positively interacts with Notch3 and sustains expression of the stemness factor Sox2. Finally, lowering jag1b preserves the structured distribution of Notch3 signaling levels in space but attenuates their variance. We propose that Notch3 signaling integrates Dla-mediated lateral inhibition and Jag1b-mediated lateral induction to control quiescence and stemness and their spatiotemporal dynamics in adult NSCs.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Cellular and transcriptional trajectories of neural fate specification in sea anemone uncover two modes of adult neurogenesis 97%
- St18 specifies globus pallidus projection neuron identity in MGE lineage 97%
- Neuronal identity is maintained in the adult brain through KAT3-dependent enhancer acetylation 96%
Similar papers in this journal
- Variation of human neural stem cells generating organizer states in vitro before committing to cortical excitatory or inhibitory neuronal fates 96%
- Single-cell profiling and SCOPE-seq reveal the lineage dynamics of adult neurogenesis and NOTUM as a key V-SVZ regulator 95%
- CTNND2 regulation by the SRGAP2 protein family links human evolution to synaptic neoteny 95%
Similar papers in this journal
- Differentiation signals from glia are fine-tuned to set neuronal numbers during development 96%
- Directed differentiation of functional corticospinal-like neurons from endogenous SOX6+/NG2+ cortical progenitors 96%
- Dynamic modes of Notch transcription hubs conferring memory and stochastic activation revealed by live imaging the co-activator Mastermind 96%
Similar papers in this journal
- Integrated single-cell transcriptomic and epigenetic analyses of cell-state transition and lineage commitment in the embryonic mouse cerebellum 96%
- A telencephalon cell type atlas for goldfish reveals diversity in the evolution of spatial structure and cell types 96%
- Tissue-wide Genetic and Cellular Landscape Shapes the Execution of Sequential PRC2 Functions in Neural Stem Cell Lineage Progression 96%
Similar papers in this journal
- Mosaic heterochrony in neural progenitors sustains accelerated brain growth and neurogenesis in the juvenile killifish N. furzeri 95%
- Identifying determinants of synaptic specificity by integrating connectomes and transcriptomes 95%
- Asymmetric nuclear division of neural stem cells contributes to the formation of sibling nuclei with different identities 95%
"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.