Go to The Journal of Clinical Investigation
  • About
  • Editors
  • Consulting Editors
  • For authors
  • Journal stats
  • Publication ethics
  • Publication alerts by email
  • Transfers
  • Advertising
  • Job board
  • Contact
  • Physician-Scientist Development
  • Current issue
  • Past issues
  • By specialty
    • COVID-19
    • Cardiology
    • Immunology
    • Metabolism
    • Nephrology
    • Oncology
    • Pulmonology
    • All ...
  • Videos
  • Collections
    • In-Press Preview
    • Resource and Technical Advances
    • Clinical Research and Public Health
    • Research Letters
    • Editorials
    • Perspectives
    • Physician-Scientist Development
    • Reviews
    • Top read articles

  • Current issue
  • Past issues
  • Specialties
  • In-Press Preview
  • Resource and Technical Advances
  • Clinical Research and Public Health
  • Research Letters
  • Editorials
  • Perspectives
  • Physician-Scientist Development
  • Reviews
  • Top read articles
  • About
  • Editors
  • Consulting Editors
  • For authors
  • Journal stats
  • Publication ethics
  • Publication alerts by email
  • Transfers
  • Advertising
  • Job board
  • Contact
Induction of α cell–restricted Gc in dedifferentiating β cells contributes to stress-induced β cell dysfunction
Taiyi Kuo, Manashree Damle, Bryan J. González, Dieter Egli, Mitchell A. Lazar, Domenico Accili
Taiyi Kuo, Manashree Damle, Bryan J. González, Dieter Egli, Mitchell A. Lazar, Domenico Accili
View: Text | PDF
Research Article Endocrinology Metabolism

Induction of α cell–restricted Gc in dedifferentiating β cells contributes to stress-induced β cell dysfunction

  • Text
  • PDF
Abstract

Diabetic β cell failure is associated with β cell dedifferentiation. To identify effector genes of dedifferentiation, we integrated analyses of histone methylation as a surrogate of gene activation status and RNA expression in β cells sorted from mice with multiparity-induced diabetes. Interestingly, only a narrow subset of genes demonstrated concordant changes to histone methylation and RNA levels in dedifferentiating β cells. Notable among them was the α cell signature gene Gc, encoding a vitamin D–binding protein. Although diabetes was associated with Gc induction, Gc-deficient islets did not induce β cell dedifferentiation markers and maintained normal ex vivo insulin secretion in the face of metabolic challenge. Moreover, Gc-deficient mice exhibited a more robust insulin secretory response than normal controls during hyperglycemic clamp studies. The data are consistent with a functional role of Gc activation in β cell dysfunction and indicate that multiparity-induced diabetes is associated with altered β cell fate.

Authors

Taiyi Kuo, Manashree Damle, Bryan J. González, Dieter Egli, Mitchell A. Lazar, Domenico Accili

×

Figure 5

Gc ablation improves islet function in HFD-fed mice.

Options: View larger image (or click on image) Download as PowerPoint
Gc ablation improves islet function in HFD-fed mice.
(A) Gene expression...
(A) Gene expression of Aldh1a3 in the islets of HFD-fed WT and Gc-KO mice. (B–G) Immunostaining for insulin (Ins) and Aldh1a3 in (B–D) WT and (E–G) Gc-KO islets. Scale bars: 50 μm. (H) Glucose-suppressed glucagon secretion in islets of HFD-fed WT and Gc-KO mice. (I) Pancreatic glucagon content in HFD-fed WT and Gc-KO mice. (J) Glucose-stimulated insulin secretion in islets of chow- or HFD-fed WT and Gc-KO mice. (K) Insulin secretion stimulated by glucose and arginine in islets of chow- or HFD-fed WT and Gc-KO mice. (L) Gene expression analysis of key genes in different islet cell types of HFD-fed WT and Gc-KO mice. n ≥ 9 mice per genotype, error bars represent ± SEM, and *P < 0.05 by Student’s t test.

Copyright © 2026 American Society for Clinical Investigation
ISSN 2379-3708

Sign up for email alerts