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- Repression of latent NF-κB enhancers by PDX1 regulates β cell functional heterogeneity.
Repression of latent NF-κB enhancers by PDX1 regulates β cell functional heterogeneity.
Citation | “Repression Of Latent Nf-Κb Enhancers By Pdx1 Regulates Β Cell Functional Heterogeneity.”. Cell Metabolism, pp. 90-102.e7. . |
Center | University of Chicago Vanderbilt University |
Multicenter |
Multicenter
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Featured |
Featured
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Author | Benjamin J Weidemann, Biliana Marcheva, Mikoto Kobayashi, Chiaki Omura, Marsha Newman V, Yumiko Kobayashi, Nathan J Waldeck, Mark Perelis, Louise Lantier, Owen P McGuinness, Kathryn Moynihan Ramsey, Roland W Stein, Joseph Bass |
Keywords | IL-1β, NF-κB, Pdx1, chromatin, circadian, diabetes, inflammation, insulin, p65, β cells |
Abstract |
Interactions between lineage-determining and activity-dependent transcription factors determine single-cell identity and function within multicellular tissues through incompletely known mechanisms. By assembling a single-cell atlas of chromatin state within human islets, we identified β cell subtypes governed by either high or low activity of the lineage-determining factor pancreatic duodenal homeobox-1 (PDX1). β cells with reduced PDX1 activity displayed increased chromatin accessibility at latent nuclear factor κB (NF-κB) enhancers. Pdx1 hypomorphic mice exhibited de-repression of NF-κB and impaired glucose tolerance at night. Three-dimensional analyses in tandem with chromatin immunoprecipitation (ChIP) sequencing revealed that PDX1 silences NF-κB at circadian and inflammatory enhancers through long-range chromatin contacts involving SIN3A. Conversely, Bmal1 ablation in β cells disrupted genome-wide PDX1 and NF-κB DNA binding. Finally, antagonizing the interleukin (IL)-1β receptor, an NF-κB target, improved insulin secretion in Pdx1 hypomorphic islets. Our studies reveal functional subtypes of single β cells defined by a gradient in PDX1 activity and identify NF-κB as a target for insulinotropic therapy. |
Year of Publication |
2024
|
Journal |
Cell metabolism
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Volume |
36
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Issue |
1
|
Number of Pages |
90-102.e7
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Date Published |
01/2024
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ISSN Number |
1932-7420
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DOI |
10.1016/j.cmet.2023.11.018
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Alternate Journal |
Cell Metab
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PMID |
38171340
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PMCID |
PMC10793877
|
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