Mitochondrial Efflux of Citrate and Isocitrate Is Fully Dispensable for Glucose-Stimulated Insulin Secretion and Pancreatic Islet β-Cell Function

Author:

Bauchle Casey J.12,Rohli Kristen E.13,Boyer Cierra K.14,Pal Vidhant56,Rocheleau Jonathan V.56ORCID,Liu Siming12ORCID,Imai Yumi1278ORCID,Taylor Eric B.179,Stephens Samuel B.1237ORCID

Affiliation:

1. Fraternal Order of Eagles Diabetes Research Center, University of Iowa, Iowa City, IA

2. Division of Endocrinology and Metabolism, Department of Internal Medicine, University of Iowa, Iowa City, IA

3. Interdisciplinary Graduate Program in Genetics, University of Iowa, Iowa City, IA

4. Department of Pharmacology, University of Iowa, Iowa City, IA

5. Institute of Biomedical Engineering, Toronto, Ontario, Canada

6. Toronto General Hospital Research Institute, University Health Network, Toronto, Ontario, Canada

7. Pappajohn Biomedical Institute, University of Iowa, Iowa City, IA

8. Iowa City Veterans Affairs Medical Center, Iowa City, IA

9. Department of Molecular Physiology and Biophysics, University of Iowa, Iowa City, IA

Abstract

The defining feature of pancreatic islet β-cell function is the precise coordination of changes in blood glucose levels with insulin secretion to regulate systemic glucose homeostasis. While ATP has long been heralded as a critical metabolic coupling factor to trigger insulin release, glucose-derived metabolites have been suggested to further amplify fuel-stimulated insulin secretion. The mitochondrial export of citrate and isocitrate through the citrate-isocitrate carrier (CIC) has been suggested to initiate a key pathway that amplifies glucose-stimulated insulin secretion, though the physiological significance of β-cell CIC-to-glucose homeostasis has not been established. Here, we generated constitutive and adult CIC β-cell knockout (KO) mice and demonstrate that these animals have normal glucose tolerance, similar responses to diet-induced obesity, and identical insulin secretion responses to various fuel secretagogues. Glucose-stimulated NADPH production was impaired in β-cell CIC KO islets, whereas glutathione reduction was retained. Furthermore, suppression of the downstream enzyme cytosolic isocitrate dehydrogenase (Idh1) inhibited insulin secretion in wild-type islets but failed to impact β-cell function in β-cell CIC KO islets. Our data demonstrate that the mitochondrial CIC is not required for glucose-stimulated insulin secretion and that additional complexities exist for the role of Idh1 and NADPH in the regulation of β-cell function.

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

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