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Portrait of Sara Snogerup Linse

Sara Linse

Professor

Portrait of Sara Snogerup Linse

α-Synuclein-induced deformation of small unilamellar vesicles

Author

  • Katarzyna Makasewicz
  • Stefan Wennmalm
  • Sara Linse
  • Emma Sparr

Summary, in English

Abstract α-Synuclein is a small neuronal protein that reversibly associates with lipid membranes. The membrane interactions are believed to be central to the healthy function of this protein involved in synaptic plasticity and neurotransmitter release. α-Synuclein has been speculated to induce vesicle fusion as well as fission, processes which are analogous to each other but proceed in different directions and involve different driving forces. In the current work, we analyse α-synuclein-induced small unilamellar vesicle deformation from a thermodynamics point of view. We show that the structures interpreted in the literature as fusion intermediates are in fact a stable deformed state and neither fusion nor vesicle clustering occurs. We speculate on the driving force for the observed deformation and put forward a hypothesis that α-synuclein self-assembly on the lipid membrane precedes and induces membrane remodelling.

Department/s

  • Physical Chemistry
  • MultiPark: Multidisciplinary research focused on Parkinson´s disease
  • NanoLund: Center for Nanoscience
  • Biochemistry and Structural Biology

Publishing year

2022

Language

English

Publication/Series

QRB Discovery

Volume

3

Document type

Journal article

Publisher

Cambridge University Press

Topic

  • Physical Chemistry

Keywords

  • fission
  • lipid membrane
  • membrane remodelling
  • α-Synuclein

Status

Published

ISBN/ISSN/Other

  • ISSN: 2633-2892