Wang_2023_ACS.Chem.Biol__

Reference

Title : PROTAC-Mediated Selective Degradation of Cytosolic Soluble Epoxide Hydrolase Enhances ER Stress Reduction - Wang_2023_ACS.Chem.Biol__
Author(s) : Wang Y , Morisseau C , Takamura A , Wan D , Li D , Sidoli S , Yang J , Wolan DW , Hammock BD , Kitamura S
Ref : ACS Chemical Biology , : , 2023
Abstract :

Soluble epoxide hydrolase (sEH) is a bifunctional enzyme responsible for lipid metabolism and is a promising drug target. Here, we report the first-in-class PROTAC small-molecule degraders of sEH. Our optimized PROTAC selectively targets the degradation of cytosolic but not peroxisomal sEH, resulting in exquisite spatiotemporal control. Remarkably, our sEH PROTAC molecule has higher potency in cellular assays compared to the parent sEH inhibitor as measured by the significantly reduced ER stress. Interestingly, our mechanistic data indicate that our PROTAC directs the degradation of cytosolic sEH via the lysosome, not through the proteasome. The molecules presented here are useful chemical probes to study the biology of sEH with the potential for therapeutic development. Broadly, our results represent a proof of concept for the superior cellular potency of sEH degradation over sEH enzymatic inhibition, as well as subcellular compartment-selective modulation of a protein by PROTACs.

PubMedSearch : Wang_2023_ACS.Chem.Biol__
PubMedID: 36947831
Gene_locus related to this paper: human-EPHX2

Related information

Inhibitor ALT-PG2
Gene_locus human-EPHX2

Citations formats

Wang Y, Morisseau C, Takamura A, Wan D, Li D, Sidoli S, Yang J, Wolan DW, Hammock BD, Kitamura S (2023)
PROTAC-Mediated Selective Degradation of Cytosolic Soluble Epoxide Hydrolase Enhances ER Stress Reduction
ACS Chemical Biology :

Wang Y, Morisseau C, Takamura A, Wan D, Li D, Sidoli S, Yang J, Wolan DW, Hammock BD, Kitamura S (2023)
ACS Chemical Biology :