PRC2 complex subunit JARID2 regulates embryonic pituitary stem cell differentiation to the POMC lineage
Lin, Z.;Brinkmeier, M.;Weis, K.;Bossard, H.;Raetzman, L.
Show abstract
The pituitary is essential for growth, fertility, and stress response. Pituitary development is defined by transcription factor cascades, but how chromatin landscapes influence it remains elusive. JARID2 is a subunit of polycomb repressive complex 2 repressing transcription by depositing trimethylation on histone 3 lysine 27 (H3K27me3). Here, we established that H3K27me3 levels increase with differentiation in anterior pituitary from embryonic day (E) 10.5 to E14.5 despite ubiquitous Jarid2 mRNA expression. Germline loss of Jarid2 causes pituitary stem cell (PSC) hyperplasia and corticotrope hypoplasia without changing H3K27me3 bulk levels at E14.5. Pituitary-specific loss of Jarid2 with Prop1T2AiCre (Jarid2Pitko/Pitko) exhibits POMC lineage hypoplasia and PSC hyperplasia at E16.5. Pou1f1 or Nr5a1 lineages are not affected by Jarid2 mutation. To determine gene expression and chromatin accessibility changes in Jarid2Pitko/Pitko, we performed single nucleus (sn) multi-omics on E14.5 pituitaries. SnRNAseq revealed potential targets of Jarid2, including Meis2. SnATACseq revealed chromatin reprograming towards PSC retention rather than differentiation. Pax7 is reduced in both modalities in PSC. Together, we show that Jarid2 promotes stemness exit and POMC lineage differentiation, uncovering novel epigenetic regulation of pituitary development. SUMMARY STATEMENTExpanding the repertoire of the regulation of pituitary development, chromatin modifier also help stem cells in this essential gland to differentiate and choose hormone-secreting fate.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Decoding the activated stem cell phenotype of the vividly maturing neonatal pituitary 97%
- Pituitary stem cells produce paracrine WNT signals to control the expansion of their descendant progenitor cells 96%
- Dynamics of transcriptional programs and chromatin accessibility in mouse spermatogonial cells from early postnatal to adult life 95%
Similar papers in this journal
- Single-cell analysis of early chick hypothalamic development reveals that hypothalamic cells are induced from prethalamic-like progenitors. 95%
- Single-cell transcriptomic profiling redefines the origin and specification of early adrenogonadal progenitors 94%
- Generation of excitatory and inhibitory neurons from common progenitors via Notch signaling in the cerebellum 94%
Similar papers in this journal
- General and cell-type-specific aspects of the motor neuron maturation transcriptional program 93%
- Characterising open chromatin identifies novel cis-regulatory elements important for paraxial mesoderm formation and axis extension 93%
- NR2F2 regulation of interstitial to fetal Leydig cell differentiation in the testis: insights into differences of sex development 93%
Similar papers in this journal
- Sox9 and Nfi transcription factors regulate the timing of neurogenesis and ependymal maturation in dopamine progenitors 95%
- In vivo transition in chromatin accessibility during differentiation of deep-layer excitatory neurons in the neocortex 94%
- Dynamics of activating and repressive histone modifications in Drosophila neural stem cell lineages and brain tumors 94%
Similar papers in this journal
- Temporal single-cell transcriptomic analysis of the sox1a:eGFP transgenic line identified the lateral floor plate progenitor cells as the origin of intraspinal serotonergic neurons 93%
- Nwd1 regulates neuronal differentiation and migration through purinosome formation in the developing cerebral cortex 93%
- Intestinal microbiota modulates adrenomedullary response through Nod1 sensing in chromaffin cells 92%
"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.