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Neurog3-Independent Methylation Is the Earliest Detectable Mark Distinguishing Pancreatic Progenitor Identity.

Citation
Liu, J., et al. “Neurog3-Independent Methylation Is The Earliest Detectable Mark Distinguishing Pancreatic Progenitor Identity.”. Developmental Cell, pp. 49-63.e7.
Center Vanderbilt University
Author Jing Liu, Amrita Banerjee, Charles A Herring, Jonathan Attalla, Ruiying Hu, Yanwen Xu, Qiujia Shao, Alan J Simmons, Prasanna K Dadi, Sui Wang, David A Jacobson, Bindong Liu, Emily Hodges, Ken S Lau, Guoqiang Gu
Keywords Arx, DMR, DNA methylation, DNMT, HMR, Myt1, azacytidine, combinatorial lineage tracing, diabetes, Epigenetics, glucagon, insulin, lineage priming, p-Creode, pseudotime, single-cell RNA-seq, specification, stochastic gene expression, trajectory, transcriptional noise, α cell, β cell
Abstract

In the developing pancreas, transient Neurog3-expressing progenitors give rise to four major islet cell types: α, β, δ, and γ; when and how the Neurog3 cells choose cell fate is unknown. Using single-cell RNA-seq, trajectory analysis, and combinatorial lineage tracing, we showed here that the Neurog3 cells co-expressing Myt1 (i.e., Myt1Neurog3) were biased toward β cell fate, while those not simultaneously expressing Myt1 (Myt1Neurog3) favored α fate. Myt1 manipulation only marginally affected α versus β cell specification, suggesting Myt1 as a marker but not determinant for islet-cell-type specification. The Myt1Neurog3 cells displayed higher Dnmt1 expression and enhancer methylation at Arx, an α-fate-promoting gene. Inhibiting Dnmts in pancreatic progenitors promoted α cell specification, while Dnmt1 overexpression or Arx enhancer hypermethylation favored β cell production. Moreover, the pancreatic progenitors contained distinct Arx enhancer methylation states without transcriptionally definable sub-populations, a phenotype independent of Neurog3 activity. These data suggest that Neurog3-independent methylation on fate-determining gene enhancers specifies distinct endocrine-cell programs.

Year of Publication
2019
Journal
Developmental cell
Volume
48
Issue
1
Number of Pages
49-63.e7
Date Published
12/2019
ISSN Number
1878-1551
DOI
10.1016/j.devcel.2018.11.048
Alternate Journal
Dev. Cell
PMID
30620902
PMCID
PMC6327977
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