NMR Studies on Protein–Ligand Interactions

Protein–ligand interactions are fundamental to physiological processes and drug discovery. Based on the types of information on protein–ligand interactions provided by nuclear magnetic resonance (NMR) experiments, these NMR experiments can be categorized into three distinct classes: (i) molecular-level qualitative binding detection, (ii) residue-level mapping of binding interfaces, and (iii) atomic-level structure determination and conformational dynamics of protein–ligand complexes. This hierarchy enables a workflow that accelerates the progression from initial binding identification to structural and dynamic characterization. In this review, we discuss how these experiments characterize molecular recognition. Notably, the term “ligand” in this article refers exclusively to small molecules.

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Publication Details

Journal
International Journal of Molecular Sciences
Published
2026-08-24
DOI
https://doi.org/10.3390/ijms27177561
Primary Topic
Protein Structure and Dynamics
Type
article
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article

NMR Studies on Protein–Ligand Interactions

Haiqin Yao, Ning Xu
International Journal of Molecular Sciences
Protein Structure and Dynamics
article

NMR Studies on Protein–Ligand Interactions

Haiqin Yao, Ning Xu
article en

Abstract

Protein–ligand interactions are fundamental to physiological processes and drug discovery. Based on the types of information on protein–ligand interactions provided by nuclear magnetic resonance (NMR) experiments, these NMR experiments can be categorized into three distinct classes: (i) molecular-level qualitative binding detection, (ii) residue-level mapping of binding interfaces, and (iii) atomic-level structure determination and conformational dynamics of protein–ligand complexes. This hierarchy enables a workflow that accelerates the progression from initial binding identification to structural and dynamic characterization. In this review, we discuss how these experiments characterize molecular recognition. Notably, the term “ligand” in this article refers exclusively to small molecules.

International Journal of Molecular SciencesVol. 27(17)
Tsinghua University (CN)
Openalex Percentile: Top 17%
Protein Structure and Dynamics
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