Proton pump inhibitors have become top-selling drugs worldwide. Serendipitously discovered as prodrugs that are activated by protonation in acidic environments, proton pump inhibitors inhibit stomach acid secretion by covalently modifying the gastric proton pump. Despite their widespread use, alternative activation mechanisms and potential target proteins in non-acidic environments remain poorly understood. Employing a chemoproteomic approach, we found that the proton pump inhibitor rabeprazole selectively forms covalent conjugates with zinc-binding proteins. Focusing on DENR, a protein with a C4 zinc cluster (that is, zinc coordinated by four cysteines), we show that rabeprazole is activated by the zinc ion and subsequently conjugated to zinc-coordinating cysteines. Our results suggest that drug binding, activation and conjugation take place rapidly within the zinc coordination sphere. Finally, we provide evidence that other proton pump inhibitors can be activated in the same way. We conclude that zinc acts as a Lewis acid, obviating the need for low pH, to promote the activation and conjugation of proton pump inhibitors in non-acidic environments.
Site-specific activation of the proton pump inhibitor rabeprazole by tetrathiolate zinc centres.
四硫醇锌中心对质子泵抑制剂雷贝拉唑的位点特异性激活
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作者:Marker Teresa, Steimbach Raphael R, Perez-Borrajero Cecilia, Luzarowski Marcin, Hartmann Eric, Schleich Sibylle, Pastor-Flores Daniel, Espinet Elisa, Trumpp Andreas, Teleman Aurelio A, Gräter Frauke, Simon Bernd, Miller Aubry K, Dick Tobias P
| 期刊: | Nature Chemistry | 影响因子: | 20.200 |
| 时间: | 2025 | 起止号: | 2025 Apr;17(4):507-517 |
| doi: | 10.1038/s41557-025-01745-8 | 研究方向: | 心血管 |
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