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Updated: Sep 3, 2026

NMR-Based Fragment Screening in a Minimum Sample but Maximum Automation Mode
Published on: June 4, 2021
High-Resolution Relaxometry for Fragment Screening
Giulia Licciardi1,2,3, Linda Cerofolini1,2, Ulric Le Paige3
1Department of Chemistry "Ugo Schiff" And Magnetic Resonance Center (CERM), University of Florence, Sesto Fiorentino50019, Italy.
Abstract:
Characterizing weak molecular interactions remains a major challenge in drug discovery. Here, we demonstrate the power of high-resolution relaxometry (HRR), using a fast sample shuttle system, as a highly sensitive ligand-based screening method. By measuring longitudinal relaxation rates over a wide magnetic field range (2-600 MHz), we obtained site-specific Nuclear Magnetic Resonance Dispersion (NMRD) profiles for three ligands interacting with the catalytic domain of Human Matrix Metalloproteinase-12 (MMP-12). HRR unambiguously detects weak binding (KD ≈ 10-6-10-4) at protein concentrations as low as 2 μM. The analysis of the NMRD profiles provides direct, quantitative assessment of the complex dynamics, yielding a rotational correlation time in excellent agreement with the protein hydrodynamic properties. This enables discrimination between genuine protein-ligand binding and alternative processes like ligand aggregation, often observed in pan-assay interference compounds (PAINS). HRR therefore provides a robust, low-sample-consumption, physicochemical approach for fragment screening and characterization of protein-ligand complex dynamics.

