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Restructured Mitochondrial-Nuclear Interaction in Plasmodium falciparum Dormancy and Persister Survival after Artemisinin Exposure

机译:在<命名含量含量型=“属型”>疟原虫暴露后的疟原虫休眠和抗风病毒中的重组线粒体 - 核相互作用

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ABSTRACT Artemisinin and its semisynthetic derivatives (ART) are fast acting, potent antimalarials; however, their use in malaria treatment is frequently confounded by recrudescences from bloodstream Plasmodium parasites that enter into and later reactivate from a dormant persister state. Here, we provide evidence that the mitochondria of dihydroartemisinin (DHA)-exposed persisters are dramatically altered and enlarged relative to the mitochondria of young, actively replicating ring forms. Restructured mitochondrial-nuclear associations and an altered metabolic state are consistent with stress from reactive oxygen species. New contacts between the mitochondria and nuclei may support communication pathways of mitochondrial retrograde signaling, resulting in transcriptional changes in the nucleus as a survival response. Further characterization of the organelle communication and metabolic dependencies of persisters may suggest strategies to combat recrudescences of malaria after treatment.
机译:摘要青蒿素及其半合成衍生物(艺术品)是快速表演,有效的抗疟疾;然而,它们在疟疾治疗中的用途经常被患者从血液疟原虫寄生虫捕获的污染物混淆,然后从休眠抗静者状态重新激活。在这里,我们提供了证据表明,相对于年轻,积极的复制环形形式的线粒体,二氢氨基蛋白(DHA)的线粒体(DHA)的线粒体被显着改变和扩大。重组的线粒体 - 核关联和改变的代谢状态与反应性氧物种的应力一致。线粒体和核之间的新触点可以支持线粒体逆行信号传导的通信途径,导致细胞核作为存活反应的转录变化。进一步表征细胞器通信和持久因子的代谢依赖性可能表明在治疗后对抗疟疾的核糖的策略。

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