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The malarial parasite Plasmodium falciparum imports the human protein peroxiredoxin 2 for peroxide detoxification

机译:疟原虫恶性疟原虫进口人类蛋白peroxiredoxin 2进行过氧化物排毒

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摘要

Coevolution of the malarial parasite and its human host has resulted in a complex network of interactions contributing to the homeodynamics of the host-parasite unit. As a rapidly growing and multiplying organism, Plasmodium falciparum depends on an adequate antioxidant defense system that is efficient despite the absence of genuine catalase and glutathione peroxidase. Using different experimental approaches, we demonstrate that P. falciparum imports the human redox-active protein peroxiredoxin 2 (hPrx-2, hTPx1) into its cytosol. As shown by confocal microscopy and immunogold electron microscopy, hPrx-2 is also present in the Maurer's clefts, organelles that are described as being involved in parasite protein export. Enzyme kinetic analyses prove that hPrx-2 accepts Plasmodium cytosolic thioredoxin 1 as a reducing substrate. hPrx-2 accounts for roughly 50% of thioredoxin peroxidase activity in parasite extracts, thus indicating a functional role of hPrx-2 as an enzymatic scavenger of peroxides in the parasite. Under chloroquine treatment, a drug promoting oxidative stress, the abundance of hPrx-2 in the parasite increases significantly. P. falciparum has adapted to adopt the hPrx-2, thereby using the host protein for its own purposes.
机译:疟原虫及其人类宿主的共同进化导致了复杂的相互作用网络,从而促进了宿主-寄生虫单元的体内动力学。作为快速生长和繁殖的有机体,恶性疟原虫依赖于足够的抗氧化剂防御系统,尽管没有真正的过氧化氢酶和谷胱甘肽过氧化物酶,该系统仍然有效。使用不同的实验方法,我们证明恶性疟原虫将人类氧化还原活性蛋白过氧化物酶2(hPrx-2,hTPx1)导入其细胞质。如共聚焦显微镜和免疫金电子显微镜所示,hPrx-2也存在于Maurer裂隙中,据称其参与了寄生虫蛋白质输出。酶动力学分析证明hPrx-2接受疟原虫胞质硫氧还蛋白1作为还原底物。 hPrx-2大约占寄生虫提取物中硫氧还蛋白过氧化物酶活性的50%,因此表明hPrx-2作为寄生虫中过氧化物的酶清除剂起作用。在氯喹(一种促进氧化应激的药物)处理下,寄生虫中hPrx-2的丰度显着增加。恶性疟原虫已经适应采用hPrx-2,从而将宿主蛋白用于其自身目的。

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