X-ray Structure-Guided Discovery of a Potent, Orally Bioavailable, Dual Human Indoleamine/Tryptophan 2,3-Dioxygenase (hIDO/hTDO) Inhibitor That Shows Activity in a Mouse Model of Parkinson's Disease

射线结构引导下发现一种强效、口服生物可利用的双重人类吲哚胺/色氨酸 2,3-双加氧酶 (hIDO/hTDO) 抑制剂,该抑制剂在帕金森病小鼠模型中表现出活性

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作者:Xiang-Li Ning, Yu-Zhi Li, Cui Huo, Ji Deng, Cheng Gao, Kai-Rong Zhu, Miao Wang, Yu-Xiang Wu, Jun-Lin Yu, Ya-Li Ren, Zong-Yuan Luo, Gen Li, Yang Chen, Si-Yao Wang, Cheng Peng, Ling-Ling Yang, Zhou-Yu Wang, Yong Wu, Shan Qian, Guo-Bo Li

Abstract

Human indoleamine 2,3-dioxygenase 1 (hIDO1) and tryptophan 2,3-dioxygenase (hTDO) have been closely linked to the pathogenesis of Parkinson's disease (PD); nevertheless, development of dual hIDO1 and hTDO inhibitors to evaluate their potential efficacy against PD is still lacking. Here, we report biochemical, biophysical, and computational analyses revealing that 1H-indazole-4-amines inhibit both hIDO1 and hTDO by a mechanism involving direct coordination with the heme ferrous and ferric states. Crystal structure-guided optimization led to 23, which manifested IC50 values of 0.64 and 0.04 μM to hIDO1 and hTDO, respectively, and had good pharmacokinetic properties and brain penetration in mice. 23 showed efficacy against the 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine-induced mouse motor coordination deficits, comparable to Madopar, an anti-PD medicine. Further studies revealed that different from Madopar, 23 likely has specific anti-PD mechanisms involving lowering IDO1 expression, alleviating dopaminergic neurodegeneration, reducing inflammatory cytokines and quinolinic acid in mouse brain, and increasing kynurenic acid in mouse blood.

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