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High-resolution Respirometry to Measure Mitochondrial Function of Intact Beta Cells in the Presence of Natural Compounds
Published on: January 23, 2018
BMAL1 modulates ROS generation and insulin secretion in pancreatic β-cells: An effect possibly mediated via NOX2
Daniel Simoes de Jesus1, Paula Bargi-Souza2, Vinicius Cruzat3
1Department of Physiology and Biophysics, Institute of Biomedical Science, University of São Paulo, São Paulo (USP), SP, Brazil; Centre for Clinical Pharmacology, William Harvey Research Institute, Queen Mary University of London, London, UK.
Abstract:
The pancreatic β cells circadian clock plays a relevant role in glucose metabolism. NADPH oxidase (NOX) family is responsible for producing reactive oxygen species (ROS), such as superoxide anion and hydrogen peroxide, using NADPH as an electron donor. In pancreatic β-cells, NOX-derived ROS inhibits basal and glucose-stimulated insulin secretion. Thus, we hypothesized that the absence of BMAL1, a core circadian clock component, could trigger an increase of NOX2-derived ROS in pancreatic β cells, inhibiting insulin secretion under basal and stimulated glucose conditions. To test such hypothesis, Bmal1 knockdown (KD) was performed in cultured clonal β-cell line (INS-1E) and knocked out in isolated pancreatic islets, using a tissue-specific β-cells Bmal1 knockout (KO) mice. The insulin secretion was assessed in the presence of NOX inhibitors. The Bmal1 KD within INS-1E cells elicited a rise of intracellular ROS content under both glucose stimuli (2.8 mM and 16.7 mM), associated with an increase in Nox2 expression. Additionally, alterations of glutathione levels, CuZnSOD and catalase activities, reduction of ATP/ADP ratio, glyceraldehyde-3-phosphate dehydrogenase (GAPDH), and aconitase activities, followed by glucokinase and Slc2a2 (Glut2) expression were also observed in INS-1E β-cells, reflecting in a diminished insulin secretion pattern. The isolated islets from β-cell Bmal1-/- mice have shown a similar cellular response, where an increased NOX2-derived ROS content and a reduced basal- and glucose-stimulated insulin secretion were observed. Therefore, together with NOX inhibition (Apocynin), polyethene-glycol linked to superoxide dismutase (PEG-SOD), phorbol myristate acetate (PMA), and diethyldithiocarbamate (DDC) data, our findings suggest a possible BMAL1-mediated NOX2-derived ROS generation in pancreatic β cells, leading to the modulation of both basal- and glucose-stimulated insulin secretion.
Insights
The circadian clock
Area of Science:
- Endocrinology
- Chronobiology
- Metabolism
Background:
- The circadian clock in pancreatic beta cells regulates glucose metabolism.
- NADPH oxidase (NOX) enzymes produce reactive oxygen species (ROS) that inhibit insulin secretion.
- BMAL1 is a core circadian clock component crucial for cellular function.
Purpose of the Study:
- To investigate if BMAL1 absence increases NOX2-derived ROS in pancreatic beta cells.
- To determine the impact of BMAL1 deficiency on insulin secretion under varying glucose conditions.
Main Methods:
- BMAL1 knockdown (KD) in INS-1E cells and Bmal1 knockout (KO) in pancreatic beta-specific islets from mice.
- Assessment of insulin secretion with and without NOX inhibitors.
- Measurement of intracellular ROS, gene expression, enzyme activities, and ATP/ADP ratios.
Main Results:
- BMAL1 KD/KO increased intracellular ROS and NOX2 expression in beta cells.
- Insulin secretion was diminished under basal and glucose-stimulated conditions.
- Observed alterations in glutathione levels, antioxidant enzyme activities, ATP/ADP ratio, and key metabolic gene expression.
Conclusions:
- BMAL1 deficiency leads to increased NOX2-derived ROS in pancreatic beta cells.
- This ROS generation impairs both basal and glucose-stimulated insulin secretion.
- Suggests a BMAL1-mediated pathway regulating insulin secretion via NOX2-derived ROS.
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