4.7 Article

H3K4 Trimethylation Is Required for Postnatal Pancreatic Endocrine Cell Functional Maturation

Journal

DIABETES
Volume 70, Issue 11, Pages 2568-2579

Publisher

AMER DIABETES ASSOC
DOI: 10.2337/db20-1214

Keywords

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Funding

  1. British Columbia Children's Hospital Research Institute
  2. Natural Sciences and Engineering Research Council of Canada [RGPIN-2016-04292]
  3. Canadian Institute of Nutrition, Metabolism and Diabetes [RN310864-375894]

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H3K4 trimethylation plays a crucial role in the differentiation and functional maturation of pancreatic islet endocrine cells, with its loss potentially leading to impaired islet function and affected blood glucose regulation.
During pancreas development, endocrine progenitors differentiate into the islet cell subtypes, which undergo further functional maturation in postnatal islet development. In islet beta -cells, genes involved in glucose-stimulated insulin secretion are activated, and glucose exposure increases the insulin response as beta -cells mature. We investigated the role of H3K4 trimethylation in endocrine cell differentiation and functional maturation by disrupting TrxG complex histone methyltransferase activity in mouse endocrine progenitors. In the embryo, genetic inactivation of TrxG component Dpy30 in NEUROG3(+) cells did not affect the number of endocrine progenitors or endocrine cell differentiation. H3K4 trimethylation was progressively lost in postnatal islets, and the mice displayed elevated nonfasting and fasting glycemia as well as impaired glucose tolerance by postnatal day 24. Although postnatal endocrine cell proportions were equivalent to controls, islet RNA sequencing revealed a downregulation of genes involved in glucose-stimulated insulin secretion and an upregulation of immature beta -cell genes. Comparison of histone modification enrichment profiles in NEUROG3(+) endocrine progenitors and mature islets suggested that genes downregulated by loss of H3K4 trimethylation more frequently acquire active histone modifications during maturation. Taken together, these findings suggest that H3K4 trimethylation is required for the activation of genes involved in the functional maturation of pancreatic islet endocrine cells.

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