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首页> 外文期刊>Eukaryotic cell >Isoprenoid Precursor Biosynthesis Is the Essential Metabolic Role of the Apicoplast during Gametocytogenesis in Plasmodium falciparum
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Isoprenoid Precursor Biosynthesis Is the Essential Metabolic Role of the Apicoplast during Gametocytogenesis in Plasmodium falciparum

机译:类异戊二烯前体的生物合成是恶性疟原虫配子生成过程中质子体的重要代谢作用。

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The malaria parasite harbors a relict plastid called the apicoplast and its discovery opened a new avenue for drug discovery and development due to its unusual, nonmammalian metabolism. The apicoplast is essential during the asexual intraerythrocytic and hepatic stages of the parasite, and there is strong evidence supporting its essential metabolic role during the mosquito stages of the parasite. Supply of the isoprenoid building blocks isopentenyl diphosphate (IPP) and dimethylallyl diphosphate (DMAPP) is the essential metabolic function of the apicoplast during the asexual intraerythrocytic stages. However, the metabolic role of the apicoplast during gametocyte development, the malaria stages transmitted to the mosquito, remains unknown. In this study, we showed that production of IPP for isoprenoid biosynthesis is the essential metabolic function of the apicoplast during gametocytogenesis, by obtaining normal gametocytes lacking the apicoplast when supplemented with IPP. When IPP supplementation was removed early in gametocytogenesis, developmental defects were observed, supporting the essential role of isoprenoids for normal gametocytogenesis. Furthermore, mosquitoes infected with gametocytes lacking the apicoplast developed fewer and smaller oocysts that failed to produce sporozoites. This finding further supports the essential role of the apicoplast in establishing a successful infection in the mosquito vector. Our study supports isoprenoid biosynthesis as a valid drug target for development of malaria transmission-blocking inhibitors.
机译:疟疾寄生虫带有一种称为质子体的残质质体,由于其异常的非哺乳动物代谢,其发现为药物发现和开发开辟了新途径。在寄生虫的无性红细胞内和肝期中,apicoplast是必不可少的,并且有强有力的证据支持其在蚊子的蚊子期中的重要代谢作用。异戊二烯基二磷酸异戊二烯(IPP)和二甲基二烯丙基二磷酸酯(DMAPP)的供应是无性红细胞内无梭菌阶段apicoplast的基本代谢功能。然而,在配子细胞发育期间的疟原虫的代谢作用,即传播到蚊子的疟疾阶段,仍然未知。在这项研究中,我们表明,通过补充IPP可获得缺乏豆腐质的正常配子细胞,异戊二烯生物合成过程中IPP的产生是豆腐质在配子生成过程中必不可少的代谢功能。当在配子生成过程中早期去除IPP补充剂时,观察到发育缺陷,支持类异戊二烯在正常配子生成中的重要作用。此外,感染了缺乏配子体配子体细胞的蚊子产生的卵囊越来越少,卵囊较小,无法产生子孢子。这一发现进一步支持了apicoplast在蚊媒中成功建立感染中的重要作用。我们的研究支持类异戊二烯生物合成作为发展疟疾传播抑制剂的有效药物靶标。

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