Sfrp5 increases glucose-stimulated insulin secretion in the rat pancreatic beta cell line INS-1E

Maren Carstensen-Kirberg1,2, Karin Röhrig1,2, Corinna Niersmann1,2

  • 1Institute for Clinical Diabetology, German Diabetes Center, Leibniz Center for Diabetes Research at Heinrich Heine University Düsseldorf, Düsseldorf, Germany.

Plos One
|March 29, 2019
PubMed

Insights

Secreted frizzled-related protein-5 (Sfrp5) reduces beta cell proliferation markers but enhances glucose-stimulated insulin secretion. This effect in INS-1E cells is linked to decreased JNK activity within the non-canonical Wnt pathway.

Area of Science:

  • Endocrinology
  • Cell Biology
  • Molecular Signaling

Background:

  • Previous research suggests secreted frizzled-related protein-5 (Sfrp5) influences beta cell function, but direct effects on insulin secretion and mechanisms remain unclear.
  • Understanding Sfrp5's role is crucial for metabolic disease research.

Purpose of the Study:

  • To investigate the direct impact of Sfrp5 on beta cell viability, proliferation, and insulin secretion.
  • To elucidate the underlying mechanisms involving canonical and non-canonical Wnt signaling pathways.

Main Methods:

  • Rat INS-1E cells were treated with recombinant Sfrp5 (0.1, 1, or 5 μg/ml) for 24 hours.
  • Insulin secretion (basal and glucose-stimulated) was measured. Cell proliferation markers, Wnt pathway components, and JNK activity were assessed via Western blotting and real-time PCR.

Main Results:

  • Sfrp5 (5 μg/ml) decreased cyclin-B1 mRNA levels, indicating reduced proliferation.
  • Sfrp5 (1 and 5 μg/ml) dose-dependently increased glucose-stimulated insulin secretion but did not affect basal secretion.
  • Sfrp5 reduced the phosphorylation of JNK (p46 and p54), key components of the non-canonical Wnt pathway.

Conclusions:

  • Sfrp5 exhibits a dual effect: inhibiting beta cell proliferation markers while enhancing glucose-stimulated insulin secretion.
  • The observed increase in insulin secretion appears mediated by reduced JNK activity, suggesting a role for non-canonical Wnt signaling.

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