Human NKX2.2 influences islet endocrine cell fate choices through regulation of WNT pathway genes
Schaaf, C.; Docherty, F. M.; Rodgriguez, M. X.; McGrath, P. S.; Hill, C. J.; Wells, K. L.; Sussel, L.
Show abstract
Transcriptional regulation is a key central mechanism of cell fate determination in developing tissues. The homeobox transcription factor NKX2.2 is an essential regulator of mouse and human pancreatic endocrine development, however its precise molecular role in a human system has not been previously investigated. In this study we generated NKX2.2 null (NKX2.2KO) human embryonic stem cell (hESC) lines using CRISPR/Cas9 technologies and differentiated them towards a pancreatic {beta} cell fate using a stem cell-derived {beta} cell differentiation protocol. Functional and transcriptomic analyses of the hESC-derived pancreatic endocrine cells lacking NKX2.2 revealed similarities and differences compared to the molecular functions of NKX2.2 in mice. In the absence of NKX2.2, the {beta} cell differentiations result in reduced numbers of insulin-producing cells, and the differentiations become skewed towards polyhormonal fates, including cells co-expressing insulin, ghrelin and somatostatin. Deletion of NKX2.2 also eliminates the off-target formation of enterochromaffin cells. Single cell transcriptome analysis of the early endocrine cell population revealed a marked disruption of metabolic pathways that was confirmed by comparative metabolite tracing, providing novel insights into the regulation of early endocrine lineage decisions. Furthermore, NKX2.2 directly regulates several genes in the WNT signaling pathway, suggesting this is a key molecular mechanism through which NKX2.2 regulates these islet cell fate decisions in the human system.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Physically interacting beta-delta pairs in the regenerating pancreas revealed by single cell sequencing 95%
- Interruption of glucagon signaling augments islet non-alpha cell proliferation in SLC7A2- and mTOR-dependent manners 95%
- Permanent Neonatal diabetes-causing Insulin mutations have dominant negative effects on beta cell identity 94%
Similar papers in this journal
Similar papers in this journal
- Synaptotagmin 13 orchestrates pancreatic endocrine cell egression and islet morphogenesis 96%
- eQTL mapping in fetal-like pancreatic progenitor cells reveals early developmental insights into diabetes risk 96%
- The type 1 diabetes gene TYK2 regulates β-cell development and its responses to interferon-α 96%
Similar papers in this journal
- Bovine Formative Embryonic Stem Cell Plasticity in Embryonic and Extraembryonic Differentiation 94%
- A Serum- and Feeder-Free System to Generate CD4 and Regulatory T Cells from Human iPSCs 93%
- The miR-290 and miR-302 clusters are essential for reprogramming of fibroblasts to induced pluripotent stem cells 93%
Similar papers in this journal
- Hypoxia and loss of GCM1 expression prevents differentiation and contact inhibition in human trophoblast stem cells 95%
- Single cell transcriptomics reveals correct developmental dynamics and high-quality midbrain cell types by improved hESC differentiation. 93%
- Efficient transgenesis and homology-directed gene targeting in monolayers of primary human small intestinal and colonic epithelial stem cells 93%
"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.