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Pyrazoleamide compounds are potent antimalarials that target Na+ homeostasis in intraerythrocytic Plasmodium falciparum

机译:吡唑酰胺化合物是有效的抗疟药,可靶向红细胞内恶性疟原虫中的Na +稳态

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摘要

The quest for new antimalarial drugs, especially those with novel modes of action, is essential in the face of emerging drug-resistant parasites. Here we describe a new chemical class of molecules, pyrazoleamides, with potent activity against human malaria parasites and showing remarkably rapid parasite clearance in an in vivo model. Investigations involving pyrazoleamide-resistant parasites, whole-genome sequencing and gene transfers reveal that mutations in two proteins, a calcium-dependent protein kinase (​PfCDPK5) and a P-type cation-ATPase (​PfATP4), are necessary to impart full resistance to these compounds. A pyrazoleamide compound causes a rapid disruption of Na+ regulation in blood-stage Plasmodium falciparum parasites. Similar effect on Na+ homeostasis was recently reported for spiroindolones, which are antimalarials of a chemical class quite distinct from pyrazoleamides. Our results reveal that disruption of Na+ homeostasis in malaria parasites is a promising mode of antimalarial action mediated by at least two distinct chemical classes.
机译:面对新出现的耐药性寄生虫,寻找新的抗疟药尤其是具有新颖作用方式的抗疟药至关重要。在这里,我们描述了一种新型的化学分子类吡唑酰胺,具有对人类疟疾寄生虫的有效活性,并且在体内模型中显示出非常快速的寄生虫清除能力。涉及吡唑酰胺抗性寄生虫,全基因组测序和基因转移的研究表明,两个蛋白(钙依赖性蛋白激酶(PfCDPK5)和P型阳离子-ATPase(PfATP4))的突变是赋予完全耐药性所必需的这些化合物。吡唑酰胺化合物会导致血液中恶性疟原虫寄生虫的Na +调节迅速中断。最近报道了螺吲哚酮对Na +稳态的类似作用,螺吡喃酮是与吡唑酰胺完全不同的化学类别的抗疟药。我们的结果表明,破坏疟原虫中Na +稳态是一种由至少两种不同的化学类别介导的抗疟作用的有前途的模式。

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