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.

Portrait of Sara Snogerup Linse

Sara Linse

Professor

Portrait of Sara Snogerup Linse

A method of predicting the in vitro fibril formation propensity of Aβ40 mutants based on their inclusion body levels in E. coli

Author

  • Kalyani Sanagavarapu
  • Elisabeth Nüske
  • Irem Nasir
  • Georg Meisl
  • Jasper N. Immink
  • Pietro Sormanni
  • Michele Vendruscolo
  • Tuomas P.J. Knowles
  • Anders Malmendal
  • Celia Cabaleiro-Lago
  • Sara Linse

Summary, in English

Overexpression of recombinant proteins in bacteria may lead to their aggregation and deposition in inclusion bodies. Since the conformational properties of proteins in inclusion bodies exhibit many of the characteristics typical of amyloid fibrils. Based on these findings, we hypothesize that the rate at which proteins form amyloid fibrils may be predicted from their propensity to form inclusion bodies. To establish a method based on this concept, we first measured by SDS-PAGE and confocal microscopy the level of inclusion bodies in E. coli cells overexpressing the 40-residue amyloid-beta peptide, Aβ40, wild-type and 24 charge mutants. We then compared these results with a number of existing computational aggregation propensity predictors as well as the rates of aggregation measured in vitro for selected mutants. Our results show a strong correlation between the level of inclusion body formation and aggregation propensity, thus demonstrating the power of this approach and its value in identifying factors modulating aggregation kinetics.

Department/s

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

Publishing year

2019-03-06

Language

English

Publication/Series

Scientific Reports

Volume

9

Issue

1

Document type

Journal article

Publisher

Nature Publishing Group

Topic

  • Cell and Molecular Biology

Status

Published

ISBN/ISSN/Other

  • ISSN: 2045-2322