Genes with epigenetic alterations in human pancreatic islets impact mitochondrial function, insulin secretion, and type 2 diabetes.
Tina RönnJones K OforiAlexander PerfilyevAlexander HamiltonKarolina PircsFabian EichelmannSonia Garcia-CalzonAlexandros KaragiannopoulosHans StenlundAnna WendtPetr VolkovMatthias B SchulzeHindrik MulderLena EliassonSabrina RuhrmannKarl BacosCharlotte LingPublished in: Nature communications (2023)
Epigenetic dysregulation may influence disease progression. Here we explore whether epigenetic alterations in human pancreatic islets impact insulin secretion and type 2 diabetes (T2D). In islets, 5,584 DNA methylation sites exhibit alterations in T2D cases versus controls and are associated with HbA1c in individuals not diagnosed with T2D. T2D-associated methylation changes are found in enhancers and regions bound by β-cell-specific transcription factors and associated with reduced expression of e.g. CABLES1, FOXP1, GABRA2, GLR1A, RHOT1, and TBC1D4. We find RHOT1 (MIRO1) to be a key regulator of insulin secretion in human islets. Rhot1-deficiency in β-cells leads to reduced insulin secretion, ATP/ADP ratio, mitochondrial mass, Ca 2+ , and respiration. Regulators of mitochondrial dynamics and metabolites, including L-proline, glycine, GABA, and carnitines, are altered in Rhot1-deficient β-cells. Islets from diabetic GK rats present Rhot1-deficiency. Finally, RHOT1methylation in blood is associated with future T2D. Together, individuals with T2D exhibit epigenetic alterations linked to mitochondrial dysfunction in pancreatic islets.
Keyphrases
- dna methylation
- type diabetes
- genome wide
- endothelial cells
- gene expression
- induced apoptosis
- transcription factor
- oxidative stress
- induced pluripotent stem cells
- pluripotent stem cells
- cardiovascular disease
- poor prognosis
- cell cycle arrest
- metabolic syndrome
- stem cells
- regulatory t cells
- signaling pathway
- adipose tissue
- cell therapy
- dna binding
- dendritic cells
- cell death
- mesenchymal stem cells
- glycemic control
- long non coding rna
- protein kinase