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Protein Prenylation and Hsp40 in Thermotolerance of Plasmodium falciparum Malaria Parasites

机译:蛋白质旺苯胺化和Hsp40在疟原虫疟疾疟疾疟原虫的热电阻中

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摘要

During its complex life cycle, the malaria parasite survives dramatic environmental stresses, including large temperature shifts. Protein prenylation is required during asexual replication of Plasmodium falciparum, and the canonical heat shock protein 40 protein (HSP40; PF3D7_1437900) is posttranslationally modified with a 15-carbon farnesyl isoprenyl group. In other organisms, farnesylation of Hsp40 orthologs controls their localization and function in resisting environmental stress. In this work, we find that plastidial isopentenyl pyrophosphate (IPP) synthesis and protein farnesylation are required for malaria parasite survival after cold and heat shock. Furthermore, loss of HSP40 farnesylation alters its membrane attachment and interaction with proteins in essential pathways in the parasite. Together, this work reveals that farnesylation is essential for parasite survival during temperature stress. Farnesylation of HSP40 may promote thermotolerance by guiding distinct chaperone-client protein interactions.
机译:在其复杂的生命周期中,疟疾寄生虫在剧烈的环境压力中存活,包括大的温度变化。在恶性疟原虫的无性复制期间需要蛋白质戊烯化,并且通过15碳法尼基异戊二烯基因改性,规范热休克蛋白40蛋白(HSP40; PF3D7_1437900)。在其他生物中,HSP40 orthologs的法金黑化控制了它们的定位和抵抗环境压力的功能。在这项工作中,我们发现糖尿病酰磷酸盐磷酸盐(IPP)合成和蛋白质库化是在冷热和热休克后的疟疾寄生物存活所必需的。此外,HSP40法呢基化的丧失改变了膜附着和与寄生虫基本途径中的蛋白质相互作用。在一起,这项工作揭示了法呢基化对于温度胁迫期间寄生物生存至关重要。 HSP40的法金脂化可以通过引导不同的伴侣蛋白蛋白质相互作用来促进热能。

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