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[Fe-S] cluster assembly in the apicoplast and its indispensability in mosquito stages of the malaria parasite

机译:在疟疾寄生虫的蚊子阶段中的[Fe-S]聚集组件及其在蚊子阶段的不可缺度

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摘要

The relict plastid (apicoplast) of the malaria parasite is the site for important biochemical pathways and is essential for parasite survival. The sulfur mobilization (SUF) pathway of iron-sulfur [Fe-S] cluster assembly in the apicoplast of Plasmodium spp. is of interest due to its absence in the human host suggesting the possibility of antimalarial intervention through apicoplast [Fe-S] biogenesis. We report biochemical characterization of components of the Plasmodium falciparum apicoplast SUF pathway after the first step of SUF. In vitro interaction experiments and in vivo cross-linking showed that apicoplast-encoded PfSufB and apicoplast-targeted PfSufC and PfSufD formed a complex. The PfSufB-C2-D complex could function as a scaffold to assemble [4Fe-4S] clusters in vitro and activity of the PfSufC ATPase was enhanced by PfSufD. Two carrier proteins, the NifU-like protein PfNfu and the A-type carrier PfSufA are homodimers, the former mediating transfer of [4Fe-4S] from the scaffold to a model [4Fe-4S] target protein with higher efficiency. Conditional knockout of SufS, the enzyme catalyzing the first step of SUF, by selective excision in the mosquito stages of Plasmodium berghei severely impaired development of sporozoites in oocysts establishing essentiality of the SUF machinery in the vector. Our results delineate steps of the complete apicoplast SUF pathway and demonstrate its critical role in the parasite life cycle.
机译:疟原虫的孑遗质(apicoplast)是重要的生化途径的网站,是寄生虫生存所必需的。铁硫的硫动员(SUF)途径的[Fe-S]簇组件在疟原虫属的apicoplast。是感兴趣,因为它不存在在人类宿主暗示通过apicoplast的[Fe-S]生物合成抗疟疾干预的可能性。我们SUF的第一步后上报恶性疟原虫apicoplast SUF途径成分的生化特性。体外相互作用实验和体内交联表明apicoplast编码PfSufB和apicoplast靶向PfSufC和PfSufD形成的复合物。所述PfSufB-C2-d络合物可以作为支架组装[的4Fe-4S]在体外和PfSufC ATP酶的活性簇通过PfSufD增强的功能。两个载体蛋白,该NifU样蛋白PfNfu和A型载体PfSufA是同型二聚体,[的4Fe-4S]前中介转印从支架到模型[的4Fe-4S]以更高的效率靶蛋白。 SufS的条件性敲除,催化SUF的第一步骤中,通过选择性切除在疟原虫的蚊子阶段酶疟原虫严重受损子孢子发育中卵囊建立载体中的SUF机械的必要性。我们的研究结果划定完整apicoplast SUF途径的步骤,并展示了寄生虫的生命周期中的关键作用。

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