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首页> 外文期刊>Parasites Vectors >Conditional knock-out of lipoic acid protein ligase 1 reveals redundancy pathway for lipoic acid metabolism in Plasmodium berghei malaria parasite
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Conditional knock-out of lipoic acid protein ligase 1 reveals redundancy pathway for lipoic acid metabolism in Plasmodium berghei malaria parasite

机译:有条件地敲除硫辛酸蛋白连接酶1揭示了伯氏疟原虫疟原虫中硫辛酸代谢的冗余途径

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BackgroundLipoic acid is a cofactor for α-keto acid dehydrogenase system that is involved in the central energy metabolism. In the apicomplexan parasite, Plasmodium , lipoic acid protein ligase 1 (LplA1) and LplA2 catalyse the ligation of acquired lipoic acid to the dehydrogenase complexes in the mitochondrion. The enzymes LipB and LipA mediate lipoic acid synthesis and ligation to the enzymes in the apicoplast. These enzymes in the lipoic acid metabolism machinery have been shown to play important roles in the biology of Plasmodium parasites, but the relationship between the enzymes is not fully elucidated. MethodsWe used an anhydrotetracycline (ATc)-inducible transcription system to generate transgenic P. berghei parasites in which the lplA1 gene was conditionally knocked out (LplA1-cKO). Phenotypic changes and the lplA1 and lplA2 gene expression profiles of cloned LplA1-cKO parasites were analysed. ResultsLplA1-cKO parasites showed severely impaired growth in vivo in the first 8?days of infection, and retarded blood-stage development in vitro, in the absence of ATc. However, these parasites resumed viability in the late stage of infection and mounted high levels of parasitemia leading to the death of the hosts. Although lplA1 mRNA expression was regulated tightly by ATc during the whole course of infection, lplA2 mRNA expression was significantly increased in the late stage of infection only in the LplA1-cKO parasites that were not exposed to ATc. ConclusionsThe lplA2 gene can be activated as an alternative pathway to compensate for the loss of LplA1 activity and to maintain lipoic acid metabolism.
机译:背景硫辛酸是参与中央能量代谢的α-酮酸脱氢酶系统的辅助因子。在apicomplexan寄生虫中,疟原虫,硫辛酸蛋白连接酶1(LplA1)和LplA2催化获得的硫辛酸与线粒体中脱氢酶复合物的连接。酶LipB和LipA介导硫辛酸的合成,并与无纺布中的酶连接。硫辛酸代谢机制中的这些酶已显示在疟原虫寄生虫的生物学中起重要作用,但这些酶之间的关系尚未完全阐明。方法我们使用了脱水四环素(ATc)诱导的转录系统来生成转基因伯氏疟原虫,其中有条件地剔除lplA1基因(LplA1-cKO)。分析了克隆的LplA1-cKO寄生虫的表型变化以及lplA1和lplA2基因表达谱。结果在没有ATc的情况下,LplA1-cKO寄生虫在感染的前8天中体内生长严重受损,并在体外阻碍了血液的发育。但是,这些寄生虫在感染后期恢复了活力,并携带高水平的寄生虫病,导致宿主死亡。尽管在整个感染过程中ATc严格调节lplA1 mRNA的表达,但在感染后期,只有在未暴露于ATc的LplA1-cKO寄生虫中,lplA2 mRNA的表达才显着增加。结论可以激活lplA2基因作为补偿LplA1活性损失并维持硫辛酸代谢的替代途径。

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