首页> 美国卫生研究院文献>PLoS Pathogens >BCKDH: The Missing Link in Apicomplexan Mitochondrial Metabolism Is Required for Full Virulence of Toxoplasma gondii and Plasmodium berghei
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BCKDH: The Missing Link in Apicomplexan Mitochondrial Metabolism Is Required for Full Virulence of Toxoplasma gondii and Plasmodium berghei

机译:BCKDH:弓形虫和伯氏疟原虫的完全毒性需要在蜂巢线粒体代谢中缺少链接。

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摘要

While the apicomplexan parasites Plasmodium falciparum and Toxoplasma gondii are thought to primarily depend on glycolysis for ATP synthesis, recent studies have shown that they can fully catabolize glucose in a canonical TCA cycle. However, these parasites lack a mitochondrial isoform of pyruvate dehydrogenase and the identity of the enzyme that catalyses the conversion of pyruvate to acetyl-CoA remains enigmatic. Here we demonstrate that the mitochondrial branched chain ketoacid dehydrogenase (BCKDH) complex is the missing link, functionally replacing mitochondrial PDH in both T. gondii and P. berghei. Deletion of the E1a subunit of T. gondii and P. berghei BCKDH significantly impacted on intracellular growth and virulence of both parasites. Interestingly, disruption of the P. berghei E1a restricted parasite development to reticulocytes only and completely prevented maturation of oocysts during mosquito transmission. Overall this study highlights the importance of the molecular adaptation of BCKDH in this important class of pathogens.
机译:虽然认为蚜虫疟原虫和恶性疟原虫主要依赖糖酵解来合成ATP,但最近的研究表明它们可以在规范的TCA循环中完全分解葡萄糖。然而,这些寄生虫缺乏丙酮酸脱氢酶的线粒体同工型,并且催化丙酮酸转化为乙酰辅酶A的酶的身份仍然是个谜。在这里,我们证明线粒体支链酮酸脱氢酶(BCKDH)复合物是缺失的环节,功能上替代了弓形虫和伯氏疟原虫中的线粒体PDH。弓形虫和伯氏疟原虫BCKDH E1a亚基的删除对两种寄生虫的细胞内生长和毒力有显着影响。有趣的是,对伯氏疟原虫E1a的破坏将寄生虫的发育限制为仅网状细胞,并完全阻止了蚊子传播过程中卵囊的成熟。总的来说,这项研究突出了BCKDH分子在这一重要病原体中的分子适应性的重要性。

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