Structure-Based Design of PROTACS for the Degradation of Soluble Epoxide Hydrolase.

基于结构的PROTACS设计用于降解可溶性环氧化物水解酶

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作者:Schönfeld Julia, Brunst Steffen, Ciomirtan Ludmila, Willmer Lena, Chromik Michel A, Kumar Adarsh, Froemel Timo, Liebisch Nick, Hackspacher Arne, Ehrler Johanna H M, Wintermeier Lukas, Hesse Christina, Fiedler Jan, Heering Jan, Freitag Hinrich, Zardo Patrick, Fieguth Hans-Gerd, Brüggerhoff Astrid, Jakob Josefine, Häupl Björn, Weizel Lilia, Kaiser Astrid, Schubert-Zsilavecz Manfred, Oellerich Thomas, Fleming Ingrid, Schebb Nils H, Fürst Robert, Kannt Aimo, Knapp Stefan, Proschak Ewgenij, Hiesinger Kerstin
The bifunctional soluble epoxide hydrolase (sEH) represents a promising target for inflammation-related diseases. Although potent inhibitors targeting each domain are available, sEH-PROTACs offer the unique ability to simultaneously block both enzymatic functions, mimicking the sEH knockout phenotype, which has been associated with reducing inflammation, including neuroinflammation, and delaying the progression of Alzheimer's disease. Herein, we report the structure-based development of a potent sEH-PROTAC as a useful pharmacological tool. In order to facilitate a rapid testing of the PROTACs, a cell-based sEH degradation assay was developed utilizing HiBiT technology. We designed and synthesized 24 PROTACs. Furthermore, cocrystallization of sEH with two selected PROTACs allowed us to explore the binding mode and rationalize the most optimal linker length. After comprehensive biological and physicochemical characterization of this series, the most optimal PROTAC 23 was identified in primary human and murine cells, highlighting the potential of using 23 in disease-relevant cell and tissue models.

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