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The inverted free energy landscape of an intrinsically disordered peptide by simulations and experiments

Granata, Daniele
•
Laio, Alessandro
•
Baftizadeh, F.
altro
Vendruscolo, M.
2015
  • journal article

Periodico
SCIENTIFIC REPORTS
Abstract
The free energy landscape theory has been very successful in rationalizing the folding behaviour of globular proteins, as this representation provides intuitive information on the number of states involved in the folding process, their populations and pathways of interconversion. We extend here this formalism to the case of the Aβ40 peptide, a 40-residue intrinsically disordered protein fragment associated with Alzheimer's disease. By using an advanced sampling technique that enables free energy calculations to reach convergence also in the case of highly disordered states of proteins, we provide a precise structural characterization of the free energy landscape of this peptide. We find that such landscape has inverted features with respect to those typical of folded proteins. While the global free energy minimum consists of highly disordered structures, higher free energy regions correspond to a large variety of transiently structured conformations with secondary structure elements arranged in several different manners, and are not separated from each other by sizeable free energy barriers. From this peculiar structure of the free energy landscape we predict that this peptide should become more structured and not only more compact, with increasing temperatures, and we show that this is the case through a series of biophysical measurements.
DOI
10.1038/srep15449
WOS
WOS:000363394700001
Archivio
http://hdl.handle.net/20.500.11767/12547
info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-84945292167
Diritti
open access
Soggetti
  • amyloid-beta-protein

  • molecular-dynamics si...

  • atomic-level characte...

  • temperature-induced c...

  • x-ray-scattering

  • alzheimers-disease

  • unfolded protein

  • unstructured protein

  • cold denaturation

  • dipolar couplings

Scopus© citazioni
75
Data di acquisizione
Jun 7, 2022
Vedi dettagli
Web of Science© citazioni
94
Data di acquisizione
Mar 28, 2024
Visualizzazioni
2
Data di acquisizione
Apr 19, 2024
Vedi dettagli
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