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ATM1 an essential conserved transporter in Apicomplexa bridges mitochondrial and cytosolic Fe-S biogenesis

机译:ATM1 是 Apicomplexa 中重要的保守转运蛋白可连接线粒体和胞质 Fe-S 生物发生

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摘要

The Apicomplexa phylum encompasses numerous obligate intracellular parasites, some associated with severe implications for human health, including Plasmodium, Cryptosporidium, and Toxoplasma gondii. The iron-sulfur cluster [Fe-S] biogenesis ISC pathway, localized within the mitochondrion or mitosome of these parasites, is vital for parasite survival and development. Previous work on T. gondii and Plasmodium falciparum provided insights into the mechanisms of [Fe-S] biogenesis within this phylum, while the transporter linking mitochondria-generated [Fe-S] with the cytosolic [Fe-S] assembly (CIA) pathway remained elusive. This critical step is catalyzed by a well-conserved ABC transporter, termed ATM1 in yeast, ATM3 in plants and ABCB7 in mammals. Here, we identify and characterize this transporter in two clinically relevant Apicomplexa. We demonstrate that depletion of TgATM1 does not specifically impair mitochondrial metabolism. Instead, proteomic analyses reveal that TgATM1 expression levels inversely correlate with the abundance of proteins that participate in the transfer of [Fe-S] to cytosolic proteins at the outer mitochondrial membrane. Further insights into the role of TgATM1 are gained through functional complementation with the well-characterized yeast homolog. Biochemical characterization of PfATM1 confirms its role as a functional ABC transporter, modulated by oxidized glutathione (GSSG) and [4Fe-4S].
机译:Apicomplexa 门包含许多专性细胞内寄生虫,其中一些对人类健康有严重影响,包括疟原虫、隐孢子虫和弓形虫。铁硫簇 [Fe-S] 生物发生 ISC 通路位于这些寄生虫的线粒体或线粒体内,对寄生虫的生存和发育至关重要。先前对弓形虫和恶性疟原虫的研究为该门内 [Fe-S] 生物发生的机制提供了见解,而将线粒体产生的 [Fe-S] 与胞质 [Fe-S] 组装 (CIA) 途径联系起来的转运蛋白仍然难以捉摸。这一关键步骤由一种保守的 ABC 转运蛋白催化,在酵母中称为 ATM1,在植物中称为 ATM3,在哺乳动物中称为 ABCB7。在这里,我们在两个临床相关的 Apicomplexa 中鉴定和表征了这种转运蛋白。我们证明 TgATM1 的耗竭不会特异性损害线粒体代谢。相反,蛋白质组学分析显示,TgATM1 表达水平与参与 [Fe-S] 向线粒体外膜胞质蛋白转移的蛋白质丰度呈负相关。通过与表征良好的酵母同源物的功能互补,进一步了解 TgATM1 的作用。PfATM1 的生化表征证实了其作为功能性 ABC 转运蛋白的作用,受氧化谷胱甘肽 (GSSG) 和 [4Fe-4S] 调节。
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