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Updated: Sep 17, 2025

Covalent Immobilization of Proteins for the Single Molecule Force Spectroscopy
Published on: August 20, 2018
Hydrogen Bond-Induced Binding between Organofluorine and Protein via Fluorine Atoms: A Database Survey and Quantum
Zijian Han1,2, Jintian Li1,2, Qingyi Liao3
1State Key Laboratory of Drug Research, Drug Discovery and Design Center, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai 201203, China.
Abstract:
Fluorination is common in drug design and may significantly enhance bioactivity, although the underlying mechanism is not elucidated. We noticed a coexisting interaction pattern, viz., F···H and F···O/N/S interactions between organofluorines and protein binding pockets via fluorine atoms. Through database analysis and quantum chemistry calculations, we revealed a hydrogen bond-induced fluorine bond (HBiFB), involving a pseudopocket formed by hydrogen bond donors and halogen bond acceptors. HBiFBs show interaction energies of -1.5 to -4.0 kcal/mol and consistently enhance ligand-protein interactions by ∼1 kcal/mol. Moreover, HBiFB possesses a positively charged σ-hole, bond critical points, intermolecular electron transfer, and intramolecular electron redistribution. These findings highlight HBiFB as a potentially generalizable noncovalent force in fluorinated drug optimization.
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