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A Kelchl3-defined endocytosis pathway mediates artemisinin resistance in malaria parasites

机译:Kelchl3定义的内吞途径介导疟原虫对青蒿素的抵抗。

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摘要

Artemisinin and its derivatives (ARTs) are the frontline drugs against malaria, but resistance is jeopardizing their effectiveness. ART resistance is mediated by mutations in the parasite's Kelch13 protein, but Kelch13 function and its role in resistance remain unclear. In this study, we identified proteins located at a Kelch13-defined compartment. Inactivation of eight of these proteins, including Kelch13, rendered parasites resistant to ART, revealing a pathway critical for resistance. Functional analysis showed that these proteins are required for endocytosis of hemoglobin from the host cell. Parasites with inactivated Kelch13 or a resistance-conferring Kelch13 mutation displayed reduced hemoglobin endocytosis. ARTs are activated by degradation products of hemoglobin. Hence, reduced activity of Kelch13 and its interactors diminishes hemoglobin endocytosis and thereby ART activation, resulting in parasite resistance.
机译:青蒿素及其衍生物(ARTs)是抗疟疾的第一线药物,但耐药性正在损害其有效性。抗药性是由寄生虫的Kelch13蛋白突变介导的,但尚不清楚Kelch13的功能及其在抗药性中的作用。在这项研究中,我们确定了位于Kelch13定义的区室的蛋白质。包括Kelch13在内的8种蛋白质的失活使寄生虫对ART产生抗药性,从而揭示了抗药性的关键途径。功能分析表明,这些蛋白质是从宿主细胞内吞血红蛋白所需的。具有灭活的Kelch13或赋予抗性的Kelch13突变的寄生虫显示血红蛋白内吞减少。 ARTs被血红蛋白降解产物激活。因此,降低的Kelch13及其相互作用物的活性减少了血红蛋白的内吞作用,从而减少了ART的活化,从而导致了寄生虫的抗药性。

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