Medicinal Chemistry Research Group, Research Centre for Natural Sciences, Magyar tudósok krt 2, 1117, Budapest, Hungary.
MS Metabolomics Research Group, Research Centre for Natural Sciences, Magyar tudósok krt 2, 1117, Budapest, Hungary.
Chembiochem. 2021 Feb 15;22(4):743-753. doi: 10.1002/cbic.202000700. Epub 2020 Nov 9.
Targeted covalent inhibition and the use of irreversible chemical probes are important strategies in chemical biology and drug discovery. To date, the availability and reactivity of cysteine residues amenable for covalent targeting have been evaluated by proteomic and computational tools. Herein, we present a toolbox of fragments containing a 3,5-bis(trifluoromethyl)phenyl core that was equipped with chemically diverse electrophilic warheads showing a range of reactivities. We characterized the library members for their reactivity, aqueous stability and specificity for nucleophilic amino acids. By screening this library against a set of enzymes amenable for covalent inhibition, we showed that this approach experimentally characterized the accessibility and reactivity of targeted cysteines. Interesting covalent fragment hits were obtained for all investigated cysteine-containing enzymes.
靶向共价抑制和使用不可逆化学探针是化学生物学和药物发现中的重要策略。迄今为止,可用于共价靶向的半胱氨酸残基的可用性和反应性已通过蛋白质组学和计算工具进行了评估。在此,我们提出了一个包含 3,5-双(三氟甲基)苯基核心的片段工具箱,该工具箱配备了具有不同反应性的化学多样的亲电弹头。我们对文库成员的反应性、水稳定性和对亲核氨基酸的特异性进行了表征。通过用一组可进行共价抑制的酶筛选该文库,我们表明该方法可通过实验确定靶向半胱氨酸的可及性和反应性。对所有研究的含半胱氨酸的酶都获得了有趣的共价片段命中。