A structural model of toxic amyloid oligomers involved in type 2 diabetes.

Shivani, Shivani T; LeMasters, Brynn E; Ravula, Thirupathi; Esterly, Harrison J; Maroli, Nikhil; Rich, Kacie L; Fields, Caitlyn R; Dicke, Sidney S et al. · Proc Natl Acad Sci U S A · 2026

basic_science · Level V

Where this comes from

Abstract

Amyloid oligomers of the human islet amyloid polypeptide (hIAPP) are a likely cytotoxic species driving β-cell death in type 2 diabetes, but their transient nature has precluded atomic-level structural characterization. We obtained a high-resolution structure of a physiologically relevant hIAPP oligomer. Using 2D IR spectroscopy, we identified three substitutions that slowed aggregation sufficiently for comprehensive 2D/3D NMR analysis while retaining the key wild-type structural features and cytotoxicity. The structural model reveals a dimeric assembly with N-terminal helices and a kink that facilitates an intermolecular β-sheet. The β-sheet spans the famous FGAILS portion of the sequence, helping to explain species-specific diabetes susceptibility and the origin of early-onset familial mutations. The integrated 2D IR/NMR strategy provides a unique approach to obtaining high-resolution structures of amyloid oligomers.

Medical subject headings