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Journal article

Thermodynamics of amyloid fibril formation from non-equilibrium experiments of growth and dissociation

From

Department of Biotechnology and Biomedicine, Technical University of Denmark1

Section for Protein Chemistry and Enzyme Technology, Department of Biotechnology and Biomedicine, Technical University of Denmark2

Technical University of Denmark3

University of Kent4

Amyloid fibrils are ordered, non-covalent polymers of proteins that are linked to a range of diseases, as well as biological functions. Amyloid fibrils are often considered thermodynamically so stable that they appear to be irreversible, explaining why very few quantitative thermodynamic studies have been performed on amyloid fibrils, compared to the very large body of kinetic studies.

Here we explore the thermodynamics of amyloid fibril formation by the protein PI3K-SH3, which forms amyloid fibrils under acidic conditions. We use quartz crystal microbalance (QCM) and develop novel temperature perturbation experiments based on differential scanning fluorimetry (DSF) to measure the temperature dependence of the fibril growth and dissociation rates, allowing us to quantitatively describe the thermodynamic stability of PI3K-SH3 amyloid fibrils between 10 and 75°C.

Language: English
Year: 2021
Pages: 106549
ISSN: 18734200 and 03014622
Types: Journal article
DOI: 10.1016/j.bpc.2021.106549
ORCIDs: Norrild, Rasmus Krogh and Buell, Alexander K.

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