The browser you are using is not supported by this website. All versions of Internet Explorer are no longer supported, either by us or Microsoft (read more here: https://www.microsoft.com/en-us/microsoft-365/windows/end-of-ie-support).

Please use a modern browser to fully experience our website, such as the newest versions of Edge, Chrome, Firefox or Safari etc.

Ulf Olsson. Portrait.

Ulf Olsson

Professor

Ulf Olsson. Portrait.

The Role of α-Synuclein-DNAJB6b Coaggregation in Amyloid Suppression

Author

  • Tinna Pálmadóttir
  • Josef Getachew
  • Dev Thacker
  • Johan Wallerstein
  • Ulf Olsson
  • Cecilia Emanuelsson
  • Sara Linse

Summary, in English

Chaperones may retard the aggregation of other proteins and increase their solubility. An important goal is a thermodynamic understanding of such an action. Here, the chaperone DNAJB6b (JB6) is found to suppress amyloid formation of the protein α-synuclein (α-syn) leading to a reduced rate of fibril formation and an increase in apparent solubility of α-syn. These findings were reached at mildly acidic pH and with light seeding under conditions where the effect on secondary nucleation is visible. Cryo-transmission electron microscopy (cryo-TEM) imaging reveals that coaggregates of α-syn and JB6 are formed with significantly altered ultrastructure compared to both pure protein fibrils and pure chaperone aggregates. This is further supported by the formation of ThT-negative aggregates and by the depletion of JB6 from solution in the presence of α-syn. The identification of such coaggregates provides a plausible thermodynamic explanation for an increase in α-syn solubility in the presence of JB6; the reduced chemical potential of the chaperone upon formation of coaggregates can compensate for an increased chemical potential of α-syn, and the system as a whole can lower its free energy to sustain an increased free α-syn concentration.

Department/s

  • Biochemistry and Structural Biology
  • NanoLund: Centre for Nanoscience
  • LTH Profile Area: Nanoscience and Semiconductor Technology
  • MultiPark: Multidisciplinary research on neurodegenerative diseases
  • Biophysical Chemistry
  • Physical Chemistry
  • LU Profile Area: Proactive Ageing

Publishing year

2025

Language

English

Pages

1883-1897

Publication/Series

ACS Chemical Neuroscience

Volume

16

Issue

10

Document type

Article

Publisher

The American Chemical Society (ACS)

Topic

  • Biophysics

Keywords

  • aggregation equilibrium
  • aggregation rate
  • chaperone action
  • coaggregation
  • self-assembly
  • solubility enhancement

Status

Published

ISBN/ISSN/Other

  • ISSN: 1948-7193