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The processing intermediate of human amylin, pro-amylin(1–48), has in vivo and in vitro bioactivity

  • Giulia Mazzini
  • , Christelle Le Foll
  • , Christina N. Boyle
  • , Michael L. Garelja
  • , Alexander Zhyvoloup
  • , Matthew E.T. Miller
  • , Debbie L. Hay
  • , Daniel P. Raleigh
  • , Thomas A. Lutz
  • University of Zurich
  • University of Otago
  • University College London
  • Stony Brook University

Research output: Contribution to journalArticlepeer-review

9 Scopus citations

Abstract

Amylin is released by pancreatic beta-cells in response to a meal and its major soluble mature form (37 amino acid-peptide) produces its biological effects by activating amylin receptors. Amylin is derived from larger propeptides that are processed within the synthesizing beta-cell. There are suggestions that a partially processed form, pro-amylin(1-48) is also secreted. We tested the hypothesis that pro-amylin(1-48) has biological activity and that human pro-amylin(1-48) may also form toxic pre-amyloid species. Amyloid formation, the ability to cross-seed and in vitro toxicity were similar between human pro-amylin(1-48) and amylin. Human pro-amylin(1-48) was active at amylin-responsive receptors, though its potency was reduced at rat, but not human amylin receptors. Pro-amylin(1-48) was able to promote anorexia by activating neurons of the area postrema, amylin's primary site of action, indicating that amylin can tolerate significant additions at the N-terminus without losing bioactivity. Our studies help to shed light on the possible roles of pro-amylin(1-48) which may be relevant for the development of future amylin-based drugs.

Original languageEnglish
Article number107201
JournalBiophysical Chemistry
Volume308
DOIs
StatePublished - May 2024

Keywords

  • Aggregation
  • Amylin
  • Amyloid
  • Islet amyloid polypeptide
  • Peptide processing
  • Receptor

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