Role of prolyl hydroxylase domain proteins in the regulation of insulin secretion

M Huang, S Paglialunga, JMK Wong… - Physiological …, 2016 - Wiley Online Library
M Huang, S Paglialunga, JMK Wong, M Hoang, R Pillai, JW Joseph
Physiological Reports, 2016Wiley Online Library
Type 2 diabetes is associated with impaired nutrient‐regulated anaplerosis and insulin
secretion in pancreatic β‐cells. One key anaplerotic substrate that may be involved in
regulating insulin release is α‐ketoglutarate (αKG). Since prolyl hydroxylase domain
proteins (PHD s) can metabolize cytosolic αKG, we sought to explore the role of this enzyme
in the regulation of β‐cell function. The oxygen‐sensing PHD s regulate the stability of
hypoxia‐inducible factor 1α (HIF1α) as well as other proline‐containing proteins by …
Abstract
Type 2 diabetes is associated with impaired nutrient‐regulated anaplerosis and insulin secretion in pancreatic β‐cells. One key anaplerotic substrate that may be involved in regulating insulin release is α‐ketoglutarate (αKG). Since prolyl hydroxylase domain proteins (PHDs) can metabolize cytosolic αKG, we sought to explore the role of this enzyme in the regulation of β‐cell function. The oxygen‐sensing PHDs regulate the stability of hypoxia‐inducible factor 1α (HIF1α) as well as other proline‐containing proteins by catalyzing the hydroxylation of proline residues. This reaction is dependent on sufficient levels of oxygen, iron, and αKG. In the present study, we utilized both pharmacological and genetic approaches to assess the impact of inhibiting PHD activity on β‐cell function. We demonstrate that ethyl‐3,4‐dihydroxybenzoate (EDHB), a PHD inhibitor, significantly blunted glucose‐stimulated insulin secretion (GSIS) from 832/13 clonal cells, rat, and human islets. EDHB reduced glucose utilization, ATP/ADP ratio, and key TCA cycle intermediates such as pyruvate, citrate, fumarate, and malate. siRNA‐mediated knockdown of PHD1 and PHD3 inhibited GSIS, whereas siRNA‐mediated knockdown of PHD2 had no effect on GSIS. Taken together, the current results demonstrate an important role for PHDs as mediators of islet insulin secretion.
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