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 Microfluidic Platform for Real-Time Detection and Quantification of Protein-Ligand Interactions

Author

  • Therese W. Herling
  • David J. O'Connell
  • Mikael C. Bauer
  • Jonas Persson
  • Ulrich Weininger
  • Tuomas P J Knowles
  • Sara Linse

Summary, in English

The key steps in cellular signaling and regulatory pathways rely on reversible noncovalent protein-ligand binding, yet the equilibrium parameters for such events remain challenging to characterize and quantify in solution. Here, we demonstrate a microfluidic platform for the detection of protein-ligand interactions with an assay time on the second timescale and without the requirement for immobilization or the presence of a highly viscous matrix. Using this approach, we obtain absolute values for the electrophoretic mobilities characterizing solvated proteins and demonstrate quantitative comparison of results obtained under different solution conditions. We apply this strategy to characterize the interaction between calmodulin and creatine kinase, which we identify as a novel calmodulin target. Moreover, we explore the differential calcium ion dependence of calmodulin ligand-binding affinities, a system at the focal point of calcium-mediated cellular signaling pathways. We further explore the effect of calmodulin on creatine kinase activity and show that it is increased by the interaction between the two proteins. These findings demonstrate the potential of quantitative microfluidic techniques to characterize binding equilibria between biomolecules under native solution conditions.

Department/s

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

Publishing year

2016-05-10

Language

English

Pages

1957-1966

Publication/Series

Biophysical Journal

Volume

110

Issue

9

Document type

Journal article

Publisher

Cell Press

Topic

  • Biophysics

Status

Published

ISBN/ISSN/Other

  • ISSN: 0006-3495