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Reduced peroxisomal function increases insulin secretion, promotes insulin oxidation, and impairs β cell maturity
J. Jason Collier, Caroline R. Cothern, Maggie P. Ducote, Thomas M. Martin, Melissa A. Linden, Robert C. Noland, David H. Burk, Samuel D. Dupuy, Michael D. Karlstad, Krisztian Stadler, Sarah S. Hirschbeck, Thanh D. Do, Anastasia Coldren, Marcela Brissova, Teayoun Kim, Kirk M. Habegger, Sujoy Ghosh, Zane A. Vickery, Qudus Sarumi, Shawn R. Campagna, Susan J. Burke
J. Jason Collier, Caroline R. Cothern, Maggie P. Ducote, Thomas M. Martin, Melissa A. Linden, Robert C. Noland, David H. Burk, Samuel D. Dupuy, Michael D. Karlstad, Krisztian Stadler, Sarah S. Hirschbeck, Thanh D. Do, Anastasia Coldren, Marcela Brissova, Teayoun Kim, Kirk M. Habegger, Sujoy Ghosh, Zane A. Vickery, Qudus Sarumi, Shawn R. Campagna, Susan J. Burke
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Research Article Endocrinology Metabolism

Reduced peroxisomal function increases insulin secretion, promotes insulin oxidation, and impairs β cell maturity

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Abstract

Given the central role of peroxisomes in lipid metabolism and redox homeostasis, we hypothesized that peroxisomal activity is critical for sustaining β cell function and identity. Pex5 deletion models were employed to investigate the loss of peroxisomal function on glucose-stimulated insulin secretion (GSIS), oxidative stress, and β cell maturity markers. Peroxisome deficiency in male mice resulted in elevated GSIS. Glucose intolerance developed despite increased insulin secretion. Ion mobility mass spectrometry revealed oxidation of insulin proteins and a truncated insulin 2–derived peptide in islets from mice with a tissue-specific deficiency in peroxisomes. Peroxisome loss of function increased multiple markers of oxidative stress, including altered metabolite profiles, lipid peroxidation, and protein carbonylation. These findings revealed that increased secretion of oxidized insulin protein is insufficient to regulate whole-body glucose homeostasis. Peroxisome deficiency also reduced markers of β cell maturity. Based on these outcomes, we identified the peroxisome organelle as a key regulatory component of glucose homeostasis by protecting insulin from oxidative modification and degradation and by supporting maintenance of mature β cells.

Authors

J. Jason Collier, Caroline R. Cothern, Maggie P. Ducote, Thomas M. Martin, Melissa A. Linden, Robert C. Noland, David H. Burk, Samuel D. Dupuy, Michael D. Karlstad, Krisztian Stadler, Sarah S. Hirschbeck, Thanh D. Do, Anastasia Coldren, Marcela Brissova, Teayoun Kim, Kirk M. Habegger, Sujoy Ghosh, Zane A. Vickery, Qudus Sarumi, Shawn R. Campagna, Susan J. Burke

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Figure 1

Pancreas- and β cell–specific deletion of Pex5 impairs peroxisomal matrix protein import and function.

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Pancreas- and β cell–specific deletion of Pex5 impairs peroxisomal matri...
(A) Pex5 mRNA abundance by RT-PCR from Pex5CON and Pex5Pdx1–/– mice; n = 7–14. (B) Pex5 abundance by immunoblot in pancreatic lysates and (C) isolated islets; n = 3–4. (D) Pancreatic tissue from Pex5CON (top panels) and Pex5Pdx1–/– (bottom panels) mice costained for PMP70 (cyan), insulin (green), and Hoechst (gray); n = 3 with representative image shown. Scale bars:100 μm (columns 1–3) and 20 μm (last column is a higher-resolution image of tissue denoted by yellow box in 3rd column). (E) Pancreatic tissue costained for Acox1 (green), PMP70 (red), insulin (blue), and Hoechst (gray); n = 3 with representative image shown, scale bar: 20 μm (columns 1–3) and 10 μm (last column is a higher-resolution image of tissue denoted by yellow box). (F) Volcano plot for ether lipids in pancreatic tissue from 30-week-old mice represented as Pex5Pdx1–/–/Pex5CON; n = 9–11. (G) Serum triglyceride content in 15-week-old mice; n = 8–10. (H) ITT in 10–16-week-old mice; n = 8. (I) Pex5 mRNA abundance by RT-PCR from Pex5CON and Pex5Ins1–/– mice; n = 6–8. (J) Pex5 abundance by immunoblot in isolated islets; n = 3. (K) Pancreatic tissue costained for Acox1 (green), PMP70 (red), insulin (blue), and Hoechst (gray); n = 3 with representative image shown, scale bar: 20 μm. (L) Serum triglyceride content in 15-week-old mice; n = 10–14. (M) ITT in 16–20-week-old mice; n = 20. (A–M) Male mice; ns, not significant; **P < 0.01; ****P < 0.0001. P values shown on graph represent AUC calculations. One-way ANOVA with multiple comparisons (A and I) or 2-tailed Student’s t test (G and L).

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