The Journal of physiology

Exendin-4 reverses inflammation-related loss of cell communication in mouse and human insulin-producing islets through specific signaling pathways

Updated

Abstract

Exendin-4 protects against cytokine-induced decreases in Cx36 coupling in both mouse and human pancreatic islets.

  • Insulin secretion from β-cells is influenced by glucose metabolism and calcium influx, which are regulated by gap junctions formed by connexin36 (Cx36).
  • Cytokines are associated with decreased Cx36 coupling, potentially contributing to β-cell dysfunction in diabetes.
  • Exendin-4, a compound that increases cAMP, is shown to preserve Cx36 levels on the plasma membrane of mouse islets.
  • In mouse islets, protein kinase A (PKA) and Epac2 may regulate Cx36 coupling through different mechanisms, with Epac2 having a greater impact on coupling.
  • Human islets exhibit a greater influence of PKA on Cx36 coupling compared to mouse islets.
  • Enhanced Cx36 coupling from exendin-4 may mitigate β-cell dysfunction related to insulin secretion during diabetes progression.

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