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July 25, 2017PLoS ONE91 citationsOpen Access

Reduction of endoplasmic reticulum- mitochondria interactions in beta cells from patients with type 2 diabetes

CTCharles ThivoletDiabetes AustraliaGVGuillaume VialUniversité Claude Bernard Lyon 1RCR. CasselUniversité Claude Bernard Lyon 1

Key Points

  • This research aims to understand how interactions between the endoplasmic reticulum and mitochondria affect insulin biosynthesis in beta cells of type 2 diabetes patients.
  • Pancreas samples were obtained from 12 type 2 diabetes donors and 9 non-diabetic controls via nPOD.
  • Utilized immunofluorescence, in situ hybridization, and in situ proximity ligation assays for analysis of protein interactions.
  • Compared findings in human samples to an in vitro model of beta-cell dysfunction.
  • Increased expression of IP3R2 in diabetic beta cells was observed (p<0.05).
  • Significantly lower numbers of IP3R2-VDAC-1 complexes in diabetic islets compared to controls (p<0.01).
  • Palmitate treatment in Min6-B1 cells decreased ER-mitochondrial interactions and impaired insulin secretion.

Abstract

Type 2 diabetes develops when beta cells are not able to fulfill insulin needs. The role of the endoplasmic reticulum-mitochondria junction in coordinating the functions of these two organelles throughout the natural history of type 2 diabetes is determinant and may explain the alterations of insulin biosynthesis. Our goal was to study endoplasmic reticulum and mitochondrial interactions in human beta cells from organ donors with type 2 diabetes. Pancreas samples were obtained via the network for pancreatic organ donors with diabetes (nPOD) based on disease status with 12 subjects with type 2 diabetes and 9 non-diabetic controls. We examined pancreatic specimens by immunofluorescence, in situ hybridization and in situ proximity ligation assay and compared the results to an in vitro model of beta-cell dysfunction. Expression of proteins that enable tethering and exchanges between endoplasmic reticulum (ER) and mitochondria and quantification of interconnection through mitochondria associated membranes (MAM) was investigated. In beta cells from type 2 diabetic cases as compared to controls, there was a significant increase in reticular expression of inositol triphosphate receptor-2 (IP3R2) both at the protein and mRNA levels, no difference in mitochondrial transit peptide receptor TOM20 and mitofusin-2 expressions, and a decrease in the expression of voltage-dependent anion channel-1 (VDAC-1). The number of IP3R2-VDAC-1 complexes identified by in situ proximity ligation assay was significantly lower in diabetic islets and in beta cells of diabetics as compared to controls. Treatment of Min6-B1 cells with palmitate altered glucose-stimulated insulin secretion, increased ER stress and significantly reduced ER-mitochondrial interactions. We can conclude that specific changes in reticular and mitochondrial beta cell proteins characterize human type 2 diabetes with reduction in organelle interactions. This finding opens new targets of intervention.

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Cite This Study

Thivolet et al. (2017) studied this question.

synapsesocial.com/papers/6a2230109e220ae9ef495d78https://doi.org/10.1371/journal.pone.0182027
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