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首页> 外文期刊>Journal of Medicinal Chemistry >Identification and Optimization of Inhibitors of Trypanosomal Cysteine Proteases: Cruzain,Rhodesain, and TbCatB
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Identification and Optimization of Inhibitors of Trypanosomal Cysteine Proteases: Cruzain,Rhodesain, and TbCatB

机译:锥虫半胱氨酸蛋白酶抑制剂的鉴定和优化:Cruzain,Rhodesain和TbCatB

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摘要

Trypanosoma cruzi and Trypanosoma brucei are parasites that cause Chagas’ disease and African sleeping sickness, respectively. Both parasites rely on essential cysteine proteases for survival: cruzain for T. cruzi and TbCatB/rhodesain for T. brucei. A recent quantitative high-throughput screen of cruzain identified triazine nitriles, which are known inhibitors of other cysteine proteases, as reversible inhibitors of the enzyme. Structural modifications detailed herein, including core scaffold modification from triazine to purine, improved the in vitro potency against both cruzain and rhodesain by 350-fold, while also gaining activity against T. brucei parasites. Selected compounds were screened against a panel of human cysteine and serine proteases to determine selectivity, and a cocrystal was obtained of our most potent analogue bound to cruzain.
机译:克氏锥虫和布鲁氏锥虫分别是引起恰加斯病和非洲昏睡病的寄生虫。两种寄生虫都依赖于必需的半胱氨酸蛋白酶来维持生存:克鲁萨姆(T. Cruziin)用于克鲁维酵母(T. cruzi),而TbCatB / rhodesain(布鲁氏菌)用于T. brucei。最近对cruzain的定量高通量筛选将三嗪腈(该酶是其他半胱氨酸蛋白酶的已知抑制剂)确定为该酶的可逆抑制剂。本文详述的结构修饰,包括从三嗪到嘌呤的核心支架修饰,将针对克鲁萨因和罗德沙星的体外效力提高了350倍,同时还获得了针对布鲁氏杆菌寄生虫的活性。针对一组人半胱氨酸和丝氨酸蛋白酶筛选了选定的化合物,以确定选择性,并获得了与克鲁萨因结合的最有效类似物的共晶体。

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