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July 1, 2023Scientific Reports18 citationsOpen Access

Fluorescence lifetime FRET assay for live-cell high-throughput screening of the cardiac SERCA pump yields multiple classes of small-molecule allosteric modulators

OROsha RoopnarineSYSamantha L. YuenATAndrew R. Thompson

Key Result

High-throughput screening of 50,000 compounds identified multiple classes of small-molecule allosteric modulators of the cardiac SERCA pump, including five promising activators that improve SERCA efficiency.

Structured PICO

P
Population
In vitro high-throughput screening of 50,000 compounds using live HEK293 cells expressing a FRET biosensor and pig cardiac sarcoplasmic reticulum vesicles.
I
Intervention
Small-molecule allosteric modulators from a 50,000-compound library (DIVERSet-CL)
C
Comparator
DMSO control
O
Outcome
Change in fluorescence lifetime (ΔFLT) and functional effects on Ca2+-ATPase activity and Ca2+-uptakesurrogate

High-throughput screening using a FRET-based biosensor identified novel small-molecule activators of the cardiac SERCA2a pump, providing potential lead compounds for heart failure therapy.

Limitations

  • Assays were performed on different types of samples (live cells vs. purified proteins) with different calcium concentrations.
  • The specific binding sites on SERCA2a for these compounds remain unknown.
  • Further evaluation in intact muscles and animal models is required to confirm physiological efficacy.

Abstract

Abstract We have used FRET-based biosensors in live cells, in a robust high-throughput screening (HTS) platform, to identify small-molecules that alter the structure and activity of the cardiac sarco/endoplasmic reticulum calcium ATPase (SERCA2a). Our primary aim is to discover drug-like small-molecule activators that improve SERCA’s function for the treatment of heart failure. We have previously demonstrated the use of an intramolecular FRET biosensor, based on human SERCA2a, by screening two different small validation libraries using novel microplate readers that detect the fluorescence lifetime or emission spectrum with high speed, precision, and resolution. Here we report results from FRET-HTS of 50,000 compounds using the same biosensor, with hit compounds functionally evaluated using assays for Ca 2+ -ATPase activity and Ca 2+ -transport. We focused on 18 hit compounds, from which we identified eight structurally unique scaffolds and four scaffold classes as SERCA modulators, approximately half of which are activators and half are inhibitors. Five of these compounds were identified as promising SERCA activators, one of which activates Ca 2+ -transport even more than Ca 2+ -ATPase activity thus improving SERCA efficiency. While both activators and inhibitors have therapeutic potential, the activators establish the basis for future testing in heart disease models and lead development, toward pharmaceutical therapy for heart failure.

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Cite This Study

Roopnarine et al. (2023) studied Heart failure (target condition). Small-molecule allosteric modulators (DIVERSet library) vs. DMSO control was evaluated on Change in fluorescence lifetime (ΔFLT) and SERCA function (Ca2+-ATPase activity and Ca2+-uptake). High-throughput screening of 50,000 compounds identified multiple classes of small-molecule allosteric modulators of the cardiac SERCA pump, including five promising activators that improve SERCA efficiency.

synapsesocial.com/papers/6a884c2efc0635f4eccf0e60https://doi.org/10.1038/s41598-023-37704-x
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1FRET assay for live-cell high-throughput screening of the cardiac SERCA pump yields multiple classes of small-molecule allosteric modulators2023
  2. 2FRET assay for live-cell high-throughput screening of the cardiac SERCA pump yields multiple classes of small-molecule allosteric modulators2023
  3. 3High-Throughput FRET Assay Yields Allosteric SERCA Activators2012 · 100 citations
  4. 4Live-Cell Cardiac-Specific High-Throughput Screening Platform for Drug-Like Molecules That Enhance Ca2+ Transport2020 · 28 citations
  5. 5Targeting protein-protein interactions for therapeutic discovery via FRET-based high-throughput screening in living cells2018 · 56 citations