FRET-Based Calcium Imaging

Author:

Honarnejad Kamran1234,Kirsch Achim K.5,Daschner Alexander12,Szybinska Aleksandra6,Kuznicki Jacek6,Herms Jochen127

Affiliation:

1. Department of Translational Brain Research, DZNE–German Center for Neurodegenerative Diseases, Munich, Germany

2. Center for Neuropathology and Prion Research, Ludwig Maximilian University, Munich, Germany

3. Graduate School of Systemic Neurosciences, Ludwig Maximilian University, Munich, Germany

4. Current address: Institute of Pharmacology and Toxicology, University of Bonn, Germany

5. PerkinElmer Cellular Technologies Germany GmbH, Hamburg, Germany

6. Laboratory of Neurodegeneration, International Institute of Molecular and Cell Biology, Warsaw, Poland

7. Munich Cluster for Systems Neurology (SyNergy), Munich, Germany

Abstract

Perturbed intracellular store calcium homeostasis is suggested to play a major role in the pathophysiology of Alzheimer disease (AD). A number of mechanisms have been suggested to underlie the impairment of endoplasmic reticulum calcium homeostasis associated with familial AD-linked presenilin 1 mutations (FAD-PS1). Without aiming at specifically targeting any of those pathophysiological mechanisms in particular, we rather performed a high-throughput phenotypic screen to identify compounds that can reverse the exaggerated agonist-evoked endoplasmic reticulum calcium release phenotype in HEK293 cells expressing FAD-PS1. For that purpose, we developed a fully automated high-throughput calcium imaging assay using a fluorescence resonance energy transfer–based calcium indicator at single-cell resolution. This novel robust assay offers a number of advantages compared with the conventional calcium measurement screening technologies. The assay was employed in a large-scale screen with a library of diverse compounds comprising 20,000 low-molecular-weight molecules, which resulted in the identification of 52 primary hits and 4 lead structures. In a secondary assay, several hits were found to alter the amyloid β (Aβ) production. In view of the recent failure of AD drug candidates identified by target-based approaches, such a phenotypic drug discovery paradigm may present an attractive alternative for the identification of novel AD therapeutics.

Publisher

Elsevier BV

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