Chromatin regulator Kdm6b is required for the establishment and maintenance of neural stem cells in mouse hippocampus
Gil, E.; Hong, S. J.; Wu, D.; Park, D. H.; Delgado, R. N.; Malatesta, M.; Ahanger, S. H.; Lin, K.; Villeda, S.; Lim, D.
Show abstract
Neural stem cells (NSCs) in the mouse hippocampal dentate gyrus (DG) - a structure important to learning and memory - generate new neurons postnatally and throughout adult life. However, the regulators that enable this lifelong neurogenesis remain incompletely understood. Here we show that the chromatin regulator KDM6B is required for both the establishment and maintenance of NSCs in the mouse DG. Conditional deletion of Kdm6b in embryonic DG precursors results in an adult hippocampus that is essentially devoid of NSCs, and hippocampal-dependent behaviors are defective. Kdm6b-deletion causes precocious neuronal differentiation, and the NSC population fails to become established in the postnatal DG. Using single cell RNA sequencing (scRNA-seq), we observed that Kdm6b-deletion disrupts the transcriptomic signature of NSC maintenance. Furthermore, deleting Kdm6b in adult DG NSCs induces early neuronal differentiation, and the NSC population is not properly maintained. These data illustrate the critical role that Kdm6b plays in adult DG neurogenesis, which may help understand how mutations in this chromatin regulator result in cognitive disorders in human patients.
Matching journals
The top 1 journal accounts for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- The exon junction complex component EIF4A3 is essential for mouse and human cortical progenitor mitosis and neurogenesis 96%
- Transcriptional regulation of MGE progenitor proliferation by PRDM16 controls cortical GABAergic interneuron production 96%
- CAMSAP3 is required for mTORC1-dependent ependymal cell growth and lateral ventricle shaping in mouse brains 96%
Similar papers in this journal
- The transcription factor ZEB1 regulates stem cell self-renewal and astroglial fate in the adult hippocampus 96%
- Generation of excitatory and inhibitory neurons from common progenitors via Notch signaling in the cerebellum 96%
- Single-cell profiling and SCOPE-seq reveal the lineage dynamics of adult neurogenesis and NOTUM as a key V-SVZ regulator 95%
Similar papers in this journal
- The gamma-Protocadherins regulate the survival of GABAergic interneurons during developmentally-regulated cell death. 96%
- Neuregulin1 nuclear signaling influences adult neurogenesis and regulates a schizophrenia susceptibility gene network within the mouse dentate gyrus. 96%
- The neocortical progenitor specification program is established throughcombined modulation of SHH and FGF signaling 96%
Similar papers in this journal
- KDM2B regulates hippocampal morphogenesis by transcriptionally silencing Wnt signaling in neural progenitors 97%
- Siah2 integrates mitogenic and extracellular matrix signalslinking neuronal progenitor ciliogenesis with germinal zoneoccupancy. 95%
- DLG2 knockout reveals neurogenic transcriptional programs underlying neuropsychiatric disorders and cognition 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.