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Updated: Mar 18, 2026

Covalent Fragment Screening Using the Quantitative Irreversible Tethering Assay
Published on: February 28, 2025
Quantum Chemical-Based Protocol for the Rational Design of Covalent Inhibitors
Tanja Schirmeister1, Jochen Kesselring1, Sascha Jung1
1Institut für Pharmazie und Biochemie, Johannes Gutenberg Universität Mainz , Staudinger Weg 5, 55128 Mainz, Germany.
Abstract:
We propose a structure-based protocol for the development of customized covalent inhibitors. Starting from a known inhibitor, in the first and second steps appropriate substituents of the warhead are selected on the basis of quantum mechanical (QM) computations and hybrid approaches combining QM with molecular mechanics (QM/MM). In the third step the recognition unit is optimized using docking approaches for the noncovalent complex. These predictions are finally verified by QM/MM or molecular dynamic simulations. The applicability of our approach is successfully demonstrated by the design of reversible covalent vinylsulfone-based inhibitors for rhodesain. The examples show that our approach is sufficiently accurate to identify compounds with the desired properties but also to exclude nonpromising ones.
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