Ulf Olsson
Professor
Slow dissolution kinetics of model peptide fibrils
Author
Summary, in English
Understanding the kinetics of peptide self-assembly is important because of the involvement of peptide amyloid fibrils in several neurodegenerative diseases. In this paper, we have studied the dissolution kinetics of self-assembled model peptide fibrils after a dilution quench. Due to the low concentrations involved, the experimental method of choice was isothermal titration calorimetry (ITC). We show that the dissolution is a strikingly slow and reaction-limited process, that can be timescale separated from other rapid processes associated with dilution in the ITC experiment. We argue that the rate-limiting step of dissolution involves the breaking up of inter-peptide β–sheet hydrogen bonds, replacing them with peptide–water hydrogen bonds. Complementary pH experiments revealed that the self-assembly involves partial deprotonation of the peptide molecules.
Department/s
- Physical Chemistry
Publishing year
2020
Language
English
Publication/Series
International Journal of Molecular Sciences
Volume
21
Issue
20
Document type
Article
Publisher
MDPI AG
Topic
- Physical Chemistry (including Surface- and Colloid Chemistry)
Keywords
- Dissolution kinetics
- Peptides
- Self-assembly
Status
Published
ISBN/ISSN/Other
- ISSN: 1661-6596