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Ulf Olsson. Portrait.

Ulf Olsson

Professor

Ulf Olsson. Portrait.

Slow dissolution kinetics of model peptide fibrils

Author

  • Mona Koder Hamid
  • Axel Rüter
  • Stefan Kuczera
  • Ulf Olsson

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