Apicomplexan parasites are the cause of numerous important human diseases including malaria and AIDS-associated opportunistic infections. Drug treatment for these diseases is not satisfactory and is threatened by resistance. The discovery of the apicoplast, a chloroplast-like organelle, presents drug targets unique to these parasites. The apicoplast-localized fatty acid synthesis (FAS II) pathway, a metabolic process fundamentally divergent from the analogous FAS I pathway in humans, represents one such target. However, the specific biological roles of apicoplast FAS II remain elusive. Furthermore, the parasite genome encodes additional and potentially redundant pathways for the synthesis of fatty acids. We have constructed a conditional null mutant of acyl carrier protein, a central component of the FAS II pathway in Toxoplasma gondii. Loss of FAS II severely compromises parasite growth in culture. We show FAS II to be required for the activation of pyruvate dehydrogenase, an important source of the metabolic precursor acetyl-CoA. Interestingly, acyl carrier protein knockout also leads to defects in apicoplast biogenesis and a consequent loss of the organelle. Most importantly, in vivo knockdown of apicoplast FAS II in a mouse model results in cure from a lethal challenge infection. In conclusion, our study demonstrates a direct link between apicoplast FAS II functions and parasite survival and pathogenesis. Our genetic model also offers a platform to dissect the integration of the apicoplast into parasite metabolism, especially its postulated interaction with the mitochondrion.

译文

Apicomplexan寄生虫是许多重要人类疾病的病因,包括疟疾和与艾滋病相关的机会性感染。这些疾病的药物治疗并不令人满意,并受到耐药性的威胁。叶绿体样细胞器apicoplast的发现提出了这些寄生虫特有的药物靶标。apicoplast定位脂肪酸合成 (FAS II) 途径是一种与人类类似FAS I途径根本不同的代谢过程,它代表了一个这样的目标。然而,apicoplast FAS II的特定生物学作用仍然难以捉摸。此外,寄生虫基因组还编码用于合成脂肪酸的其他且潜在的冗余途径。我们已经构建了酰基载体蛋白的条件无效突变体,这是弓形虫中FAS II途径的核心组成部分。FAS II的丢失严重损害了寄生虫在培养中的生长。我们显示FAS II是激活丙酮酸脱氢酶所必需的,丙酮酸脱氢酶是代谢前体乙酰辅酶a的重要来源。有趣的是,酰基载体蛋白敲除还导致apicoplast生物发生缺陷,并导致细胞器丢失。最重要的是,在小鼠模型中体内敲除apicoplast FAS II可从致命的攻击感染中治愈。总之,我们的研究证明了apicoplast FAS II功能与寄生虫存活和发病机理之间的直接联系。我们的遗传模型还提供了一个平台,可以将apicoplast整合到寄生虫代谢中,尤其是其与线粒体的假定相互作用。

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