posted on 2023-08-24, 11:36authored byNazia Parveen, Jean Kimi Wang, Supriyo Bhattacharya, Janielle Cuala, Mohan Singh Rajkumar, Alexandra ButlerAlexandra Butler, Xiwei Wu, Hung-Ping Shih, Senta K Georgia, Sangeeta Dhawan
The molecular and functional heterogeneity of pancreatic β-cells is well recognized, but the underlying mechanisms remain unclear. Pancreatic islets harbor a subset of β-cells that co-express tyrosine hydroxylase (TH), an enzyme involved in synthesis of catecholamines that repress insulin secretion. Restriction of the TH+ β-cells within islets is essential for appropriate function in mice, such that a higher proportion of these cells corresponds to reduced insulin secretion. Here, we use these cells as a model to dissect the developmental control of β-cell heterogeneity. We define the specific molecular and metabolic characteristics of TH+ β-cells and show differences in their developmental restriction in mice and humans. We show that TH expression in β-cells is restricted by DNA methylation during β-cell differentiation. Ablation of de novo DNA methyltransferase Dnmt3a in the embryonic progenitors results ina dramatic increase in the proportion of TH+ β-cells, whereas β-cell–specific ablation of Dnmt3a does not. We demonstrate that maintenance of Th promoter methylation is essential for its continued restriction in postnatal β-cells. Loss of Th promoter methylation in response to chronic overnutrition increases the number of TH+ β-cells, corresponding to impaired β-cell function. These results reveal a regulatory role of DNA methylation in determining β-cell heterogeneity.
Funding
National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK; grants R01DK120523 to and R01DK119590)
Human Islet Research Network (a New Investigator Award via NIDDK grant UC4DK104162)
Homer & Gloria Harvey Family Foundation
Paul Lester Foundation
Saban Research Institute
City of Hope (start-up support)
Wanek Family Foundation to Cure Type 1 Diabetes
Lions Club Initiative
History
Comments
This manuscript was accepted for publication in Diabetes on 2003. The final version of the paper will be available on the DNA methylation-dependent restriction of tyrosine hydroxylase contributes to pancreatic β-cell heterogeneity website at https://doi.org/10.2337/db22-0506
Published Citation
Parveen N. et al. DNA methylation-dependent restriction of tyrosine hydroxylase contributes to pancreatic β-Cell heterogeneity. Diabetes. 2023;72(5):575-589.