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Developments in drug design strategies for bromodomain protein inhibitors to target Plasmodium falciparum parasites

机译:溴琼蛋白抑制剂对靶疟原虫靶疟原虫的药物设计策略的发展

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Introduction: Bromodomains (BRDs) bind to acetylated lysine residues, often on histones. The BRD proteins can contribute to gene regulation either directly through enzymatic activity or indirectly through recruitment of chromatin-modifying complexes or transcription factors. There is no evidence of direct orthologues of the Plasmodium falciparum BRD proteins (PfBDPs) outside the apicomplexans. PfBDPs are expressed during the parasite's life cycle in both the human host's blood and in the mosquito. PfBDPs could also prove to be promising targets for novel antimalarials, which are urgently required to address increasing drug resistance. Areas covered: This review discusses recent studies of the biology of PfBDPs, current target-based strategies for PfBDP inhibitor discovery, and different approaches to the important step of validating the specificity of hit compounds for PfBDPs. Expert opinion: The novelty of Plasmodium BRDs suggests that they could be targeted by selective compounds. Chemical series that showed promise in screens against human BRDs could be leveraged to create targeted compound libraries, as could hits from P. falciparum phenotypic screens. These targeted libraries and hits could be screened in target-based strategies aimed at discovery and optimization of novel inhibitors of PfBDPs. A key task for the field is to generate parasite assays to validate the hit compounds' specificity for PfBDPs.
机译:介绍:溴莫醇(BRDS)与乙酰化赖氨酸残基结合,通常在组蛋白上。 BRD蛋白可以通过酶活性直接或间接地通过募集染色质复合物或转录因子来促进基因调节。没有证据表明在ApiCoMplex的疟原虫BRD蛋白(PFBDPS)外直接正交。 PFBDP在寄生虫的生命周期中表达,在人类宿主的血液和蚊子中。 PFBDP还可以证明是新型抗疟药的有希望的目标,这是迫切需要解决增加的耐药性的抗疟疾。涵盖了地区:讨论了最近对PFBDPS生物学的研究,目前基于目标的PFBDP抑制剂发现的策略以及验证PFBDPS击中化合物特异性的不同方法。专家意见:疟原虫BRD的新颖性表明它们可以通过选择性化合物靶向。可以利用在屏幕上显示出对人类Brdds的承诺的化学系列,以创建有针对性的复合文库,可以从p. falciparum表型屏幕中欣赏。可以以基于目标的策略筛查这些有针对性的文库和命中措施旨在发现和优化PFBDP的新抑制剂。该字段的一个关键任务是生成寄生虫测定以验证PFBDP的命中化合物的特异性。

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