Synthesis and characterization of I-BET151 derivatives for use in identifying protein targets in the African trypanosome

Adi Narayana Reddy Poli , Rebecca C. Blyn , Gracyn Y. Buenconsejo , Melvin Hodanu , Eric Tang , Channy Danh , Joel Cassel , Erik W. Debler , Danae Schulz , Joseph M. Salvino
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Abstract

Trypanosoma brucei, the causative agent of Human African Trypanosomiasis (HAT) and animal trypanosomiases, cycles between a bloodstream form in mammals and a procyclic form in the gut of its insect vector. We previously discovered that the human bromodomain inhibitor I-BET151 causes transcriptome changes that resemble the transition from the bloodstream to the procyclic form. In particular, I-BET151 induces replacement of variant surface glycoprotein (VSG) with procyclin protein. While modest binding of I-BET151 to TbBdf2 and TbBdf3 has been demonstrated, it is unknown whether I-BET151 binds to other identified T. brucei bromodomain proteins and/or other targets. To identify target(s) in T. brucei, we have synthesized I-BET151 derivatives maintaining the key pharmacophoric elements with functionality useful for chemoproteomic approaches. We identified compounds that are potent in inducing expression of procyclin, delineating a strategy towards the design of drugs against HAT and other trypanosomiases. Furthermore, these derivatives represent useful chemical probes to elucidate the molecular mechanism underlying I-BET151-induced differentiation.

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用于鉴定非洲锥虫蛋白靶点的I-BET151衍生物的合成和鉴定
布氏锥虫是非洲人类锥虫病(HAT)和动物锥虫病的病原体,在哺乳动物的血流形式和其昆虫载体的肠道中的原循环形式之间循环。我们之前发现,人类溴结构域抑制剂I-BET151导致转录组变化,类似于从血流到原环形式的转变。特别是,I-BET151诱导变异表面糖蛋白(VSG)被原环素蛋白取代。虽然已证实I-BET151与TbBdf2和TbBdf3有一定程度的结合,但尚不清楚I-BET151是否与其他已鉴定的布鲁氏体溴结构域蛋白和/或其他靶标结合。为了鉴定布鲁氏菌中的靶点,我们合成了I-BET151衍生物,这些衍生物保留了对化学蛋白质组学方法有用的关键药效元件。我们发现了能有效诱导原环素表达的化合物,描绘了一种针对HAT和其他锥虫病的药物设计策略。此外,这些衍生物为阐明i - bet151诱导分化的分子机制提供了有用的化学探针。
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Current research in chemical biology
Current research in chemical biology Biochemistry, Genetics and Molecular Biology (General)
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