4.4 Article

Analysis of insulin amyloid fibrils by Raman spectroscopy

Journal

BIOPHYSICAL CHEMISTRY
Volume 128, Issue 2-3, Pages 150-155

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.bpc.2007.03.012

Keywords

Raman; atomic force microscopy; AFM; DCDR; protein; fibril

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The formation of amyloid fibrils from insulin is investigated using drop-coating-deposition-Raman (DCDR) difference spectroscopy and atomic force microscopy (AFM). Fibrils formed using various co-solvents and heating cycles are found to induce the appearance of Raman difference peaks in the amide 1 (similar to 1675 cm(-1)), amide III (similar to 1220 cm(-1)), and peptide backbone (similar to 1010 cm(-1)), consistent with an increase in beta-sheet content. Comparisons of results obtained from fibrils in either H2O or D2O suggest that the NH/ND stretch bands (at similar to 3300 cm(-1)/similar to 2400 cm(-1)) are also enhanced in intensity upon fibril formation. If there is any water trapped in the core of the fibrils its OH/OD Raman intensity is too small to be detected in the presence of the stronger NH/ND bands which appear in the same region. AFM is used to confirm the formation of fibrils of about 5 nm diameter (and various lengths). (c) 2007 Elsevier B.V. All rights reserved.

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