Proceedings of the National Academy of Sciences · 2009 · 393 citations · 41 references
In the rare medical condition termed injection amyloidosis, extracellular fibrils of insulin are observed. We found that the segment of the insulin B-chain with sequence LVEALYL is the smallest segment that both nucleates and inhibits the fibrillation of full-length insulin in a molar ratio-dependent manner, suggesting that this segment is central to the cross-beta spine of the insulin fibril. In isolation from the rest of the protein, LVEALYL forms microcrystalline aggregates with fibrillar morphology, the structure of which we determined to 1 A resolution. The LVEALYL segments are stacked into pairs of tightly interdigitated beta-sheets, each pair displaying the dry steric zipper interface typical of amyloid-like fibrils. This structure leads to a model for fibrils of human insulin consistent with electron microscopic, x-ray fiber diffraction, and biochemical studies.
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T. Alwyn Jones, Jin-yu Zou, Sandra W. Cowan et al. · Acta Crystallographica Section A Foundations of Crystallography · 1991 · 12.6K citations
Map Interpretation, Structural Bioinformatics, Biomolecular Structure Prediction +16
Atomic structures of amyloid cross-β spines reveal varied steric zippers
M.R. Sawaya, Shilpa Sambashivan, Rebecca A. Nelson et al. · Nature · 2007 · 2.2K citations
Protein Folding, Amyloid Cross-β Spines, Natural Sciences +6
Arrest of -Amyloid Fibril Formation by a Pentapeptide Ligand
Lars O. Tjernberg, Jan Näslund, Fredrik Lindqvist et al. · Journal of Biological Chemistry · 1996 · 935 citations · Full text