Selective Phenylimidazole-Based Inhibitors of the Mycobacterium tuberculosis Proteasome

选择性苯基咪唑类结核分枝杆菌蛋白酶体抑制剂

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作者:Wenhu Zhan, Hao-Chi Hsu, Trevor Morgan, Tierra Ouellette, Kristin Burns-Huang, Ryoma Hara, Adrian G Wright, Toshihiro Imaeda, Rei Okamoto, Kenjiro Sato, Mayako Michino, Manoj Ramjee, Kazuyoshi Aso, Peter T Meinke, Michael Foley, Carl F Nathan, Huilin Li, Gang Lin

Abstract

Proteasomes of pathogenic microbes have become attractive targets for anti-infectives. Coevolving with its human host, Mycobacterium tuberculosis (Mtb) has developed mechanisms to resist host-imposed nitrosative and oxidative stresses. Genetic deletion or pharmacological inhibition of the Mtb proteasome (Mtb20S) renders nonreplicating Mtb susceptible to reactive nitrogen species in vitro and unable to survive in the lungs of mice, validating the Mtb proteasome as a promising target for anti-Mtb agents. Using a structure-guided and flow chemistry-enabled study of structure-activity relationships, we developed phenylimidazole-based peptidomimetics that are highly potent for Mtb20S. X-ray structures of selected compounds with Mtb20S shed light on their selectivity for mycobacterial over human proteasomes.

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