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Discovery of Novel Small-Molecule Calcium Sensitizers for Cardiac Troponin C: A Combined Virtual and Experimental
William H Coldren1, Svetlana B Tikunova2, Jonathan P Davis2
1Department of Chemistry and Biochemistry, Ohio State University, Columbus, Ohio 43210, United States.
Abstract:
Heart failure is a leading cause of death throughout the world and is triggered by a disruption of the cardiac contractile machinery. This machinery is regulated in a calcium-dependent manner by the protein complex troponin. Calcium binds to the N-terminal domain of cardiac troponin C (cNTnC) setting into motion the cascade of events leading to muscle contraction. Because of the severity and prevalence of heart failure, there is a strong need to develop small-molecule therapeutics designed to increase the calcium sensitivity of cardiac troponin in order to treat this devastating condition. Molecules that are able to stabilize an open configuration of cNTnC and additionally facilitate the binding of the cardiac troponin I (cTnI) switch peptide have the potential to enable increased calcium sensitization and strengthened cardiac function. Here, we employed a high throughput virtual screening methodology built upon the ability of computational docking to reproduce known experimental results and to accurately recognize cNTnC conformations conducive to small molecule binding using a receiver operator characteristic curve analysis. This approach combined with concurrent stopped-flow kinetic experimental verification led to the identification of a number of sensitizers, which slowed the calcium off-rate. An initial hit, compound 4, was identified with medium affinity (84 ± 30 μM). Through refinement, a calcium sensitizing agent, compound 5, with an apparent affinity of 1.45 ± 0.09 μM was discovered. This molecule is one of the highest affinity calcium sensitizers known to date.
Insights
Researchers developed novel small molecules to treat heart failure by increasing cardiac troponin calcium sensitivity. Compound 5, a potent calcium sensitizer, demonstrated high affinity, offering a promising therapeutic avenue.
Area of Science:
- Biochemistry
- Cardiovascular Medicine
- Pharmacology
Background:
- Heart failure is a global health crisis driven by cardiac contractile dysfunction.
- Cardiac function relies on calcium-dependent regulation by the troponin complex.
- Targeting troponin's calcium sensitivity offers a therapeutic strategy for heart failure.
Purpose of the Study:
- To identify small molecules that enhance cardiac troponin calcium sensitivity.
- To develop therapeutics for heart failure by improving cardiac contractility.
Main Methods:
- High-throughput virtual screening using computational docking.
- Receiver operator characteristic curve analysis for validating docking accuracy.
- Stopped-flow kinetic experiments for experimental verification.
Main Results:
- Identified novel small molecules that slow calcium off-rate from cardiac troponin C (cNTnC).
- An initial hit compound (4) showed medium affinity (84 ± 30 μM).
- Refined compound (5) achieved high affinity (1.45 ± 0.09 μM), acting as a potent calcium sensitizer.
Conclusions:
- Successful identification of high-affinity calcium sensitizers for cardiac troponin.
- Compound 5 represents a promising therapeutic candidate for heart failure treatment.
- The screening methodology effectively identified molecules for enhancing cardiac function.
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