LabEx Revive
@labexrevive.bsky.social
43 followers
40 following
75 posts
French scientific consortium focus on #stemcellresearch and regenerative biology since 2011 @institutpasteur
🇫🇷 #ageing #development
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LabEx Revive
@labexrevive.bsky.social
· Mar 27
LabEx Revive
@labexrevive.bsky.social
· Mar 27
LabEx Revive
@labexrevive.bsky.social
· Mar 18
Reposted by LabEx Revive
Brendan Evano
@brendan-evano.bsky.social
· Mar 15
📢Here WE go!! #unistemday2025 @pasteur.fr - great talks of Dr Elisa Golez-Perdiguero & Dr Walter Habeler from I-Stem ! 🔬🧪🧫🧬 #unistemday @supbiotech.bsky.social
Reposted by LabEx Revive
LabEx Revive
@labexrevive.bsky.social
· Mar 7
Reposted by LabEx Revive
LabEx Revive
@labexrevive.bsky.social
· Mar 4
Reposted by LabEx Revive
LabEx Revive
@labexrevive.bsky.social
· Feb 20
Reposted by LabEx Revive
Reposted by LabEx Revive
Reposted by LabEx Revive
Reposted by LabEx Revive
LabEx Revive
@labexrevive.bsky.social
· Feb 10
LabEx Revive
@labexrevive.bsky.social
· Feb 10
Notch signaling blockade links transcriptome heterogeneity in quiescent neural stem cells with their reactivation routes and potential
In the vertebrate brain, neural stem cell (NSC) quiescence is necessary for stemness maintenance. Using single cell RNA sequencing (scRNAseq) in the zebrafish adult telencephalon, we identified different molecular clusters of quiescent NSCs, interpreted to sign different quiescence depths( [1][1] ). Here, we show that these clusters, when challenged in vivo with an inhibitor of Notch signaling -a major quiescence promoting pathway-, unfold different behaviors. Notably, deeply quiescent NSCs with astrocytic features display a unique activation phenotype that combines the maintenance of astrocytic markers with the rapid upregulation of activation and neuronal commitment genes, reminiscent to murine periventricular astrocytes activating upon lesion. In contrast, an NSC cluster predicted to be in the deepest quiescence state resists Notch blockade, and we demonstrate that the transcription factor Nr2f1b mediates this resistance to activation in vivo . These results together link the molecular heterogeneity of quiescent NSCs with bona fide biological properties and their molecular regulators. ### Competing Interest Statement The authors have declared no competing interest. [1]: #ref-1
www.biorxiv.org