Dual Glycolate Oxidase/Lactate Dehydrogenase A Inhibitors for Primary Hyperoxaluria

被引:19
作者
Ding, Jinyue [2 ]
Gumpena, Rajesh [1 ]
Boily, Marc-Olivier [2 ]
Caron, Alexandre [2 ]
Chong, Oliver [2 ]
Cox, Jennifer H. [2 ]
Dumais, Valerie [2 ]
Gaudreault, Samuel [2 ]
Graff, Aaron H. [1 ]
King, Andrew [2 ]
Knight, John [3 ]
Oballa, Renata [1 ]
Surendradoss, Jayakumar [1 ]
Tang, Tim [1 ]
Wu, Joyce [1 ]
Lowther, W. Todd [1 ]
Powell, David A. [1 ]
机构
[1] Wake Forest Sch Med, Ctr Struct Biol, Dept Biochem, Winston Salem, NC 27157 USA
[2] Chinook Therapeut, Seattle, WA 98102 USA
[3] Univ Alabama Birmingham, Dept Urol, Birmingham, AL 35294 USA
关键词
Glycolate oxidase; Lactate dehydrogenase A; Dual inhibitors; Structure-based drug design; Primary hyperoxaluria; LACTATE-DEHYDROGENASE; ACID OXIDASE; ACTIVE-SITE; MOUSE MODEL; DESIGN; SPECIFICITY; DISCOVERY;
D O I
10.1021/acsmedchemlett.1c00196
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
Both glycolate oxidase (GO) and lactate dehydrogenase A (LDHA) influence the endogenous synthesis of oxalate and are clinically validated targets for treatment of primary hyperoxaluria (PH). We investigated whether dual inhibition of GO and LDHA may provide advantage over single agents in treating PH. Utilizing a structurebased drug design (SBDD) approach, we developed a series of novel, potent, dual GO/LDHA inhibitors. X-ray crystal structures of compound 15 bound to individual GO and LDHA proteins validated our SBDD strategy. Dual inhibitor 7 demonstrated an IC50 of 88 nM for oxalate reduction in an Agxt-knockdown mouse hepatocyte assay. Limited by poor liver exposure, this series of dual inhibitors failed to demonstrate significant PD modulation in an in vivo mouse model. This work highlights the challenges in optimizing in vivo liver exposures for diacid containing compounds and limited benefit seen with dual GO/LDHA inhibitors over single agents alone in an in vitro setting.
引用
收藏
页码:1116 / 1123
页数:8
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