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FTIR reveals structural differences between native β‐sheet proteins and amyloid fibrils

Protein Science · 2004 · Vol. 13(12) · pp. 3314–3321
Giorgia ZandomeneghiMark R.H. KrebsMargaret G. McCammonMarcus Fändrich

Abstract

The presence of beta-sheets in the core of amyloid fibrils raised questions as to whether or not beta-sheet-containing proteins, such as transthyretin, are predisposed to form such fibrils. However, we show here that the molecular structure of amyloid fibrils differs more generally from the beta-sheets in native proteins. This difference is evident from the amide I region of the infrared spectrum and relates to the distribution of the phi/psi dihedral angles within the Ramachandran plot, the average number of strands per sheet, and possibly, the beta-sheet twist. These data imply that amyloid fibril formation from native beta-sheet proteins can involve a substantial structural reorganization.

Alzheimer's disease research and treatmentsProtein Structure and DynamicsMolecular spectroscopy and chiralityBeta sheetFibrilDihedral angleRamachandran plotTransthyretinChemistryAmyloid (mycology)Protein structureBiophysicsCrystallography

MeSH terms

AmyloidHumansPrealbuminProtein Structure, SecondarySpectroscopy, Fourier Transform Infrared

Funding

  • Bundesministerium für Bildung und Forschung
  • Engineering and Physical Sciences Research Council
Citations
701
FWCI
6.86
field-weighted impact
References
62
Percentile
97%
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Cited by
Protein Misfolding, Functional Amyloid, and Human Disease
Annual Review of Biochemistry · 2006 · 6,373 citations
References
RASMOL: biomolecular graphics for all
Trends in Biochemical Sciences · 1995 · 2,596 citations
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