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A Fundamental Source of Misclassification in Single-Concentration Binding Screens
Tong Ye Wang1,2, Toby Chan1,2, Svetlana M Krylova1,2
1Department of Chemistry, York University, Toronto M3J 1P3, Canada.
Single-concentration binding screens in drug discovery can fail due to signal nonadditivity, leading to inaccurate hit calling. This fundamental vulnerability amplifies small concentration errors, causing false negatives and penalizing high-affinity binders.
Area of Science:
- Biochemistry
- Chemical Biology
- Drug Discovery
Background:
- High-throughput screening (HTS) is crucial for identifying drug candidates and chemical probes.
- Primary HTS assays typically use a single compound concentration to identify potential hits.
- Hits advance to secondary assays for detailed characterization, including equilibrium dissociation constant (Kd) determination.
Purpose of the Study:
- To identify a fundamental vulnerability in single-concentration binding screens.
- To analyze how signal nonadditivity amplifies errors in hit calling.
- To develop strategies to mitigate misclassification risks in HTS.
Main Methods:
- First-principles analysis of compound-target binding signals.
- End-to-end simulations with known Kd values and signal transformations.
- Mapping of operating regimes where signal amplification is most severe.
Main Results:
- Signal nonadditivity, arising from nonlinear signal generation or processing, can significantly amplify small errors in compound and target concentrations.
- This amplification leads to inaccurate single-point readouts, causing false negatives (missed binders) and potentially penalizing true high-affinity binders.
- Simulations identified specific regimes where this distortion is most pronounced.
Conclusions:
- Single-concentration screens possess a fundamental vulnerability related to signal additivity.
- A practical workflow is proposed to address this: define Kd range, use ligand-excess design, control concentrations, test readout additivity/monotonicity, and assess misclassification risk.
- Implementing these strategies can improve the reliability of hit identification in drug discovery screening.
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