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Dual Functions of α-Ketoglutarate Dehydrogenase E2 in the Krebs Cycle and Mitochondrial DNA Inheritance in Trypanosoma brucei

机译:布氏锥虫中α-酮戊二酸脱氢酶E2在克雷布斯循环和线粒体DNA遗传中的双重功能

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摘要

The dihydrolipoyl succinyltransferase (E2) of the multisubunit α-ketoglutarate dehydrogenase complex (α-KD) is an essential Krebs cycle enzyme commonly found in the matrices of mitochondria. African trypanosomes developmentally regulate mitochondrial carbohydrate metabolism and lack a functional Krebs cycle in the bloodstream of mammals. We found that despite the absence of a functional α-KD, bloodstream form (BF) trypanosomes express α-KDE2, which localized to the mitochondrial matrix and inner membrane. Furthermore, α-KDE2 fractionated with the mitochondrial genome, the kinetoplast DNA (kDNA), in a complex with the flagellum. A role for α-KDE2 in kDNA maintenance was revealed in α-KDE2 RNA interference (RNAi) knockdowns. Following RNAi induction, bloodstream trypanosomes showed pronounced growth reduction and often failed to equally distribute kDNA to daughter cells, resulting in accumulation of cells devoid of kDNA (dyskinetoplastic) or containing two kinetoplasts. Dyskinetoplastic trypanosomes lacked mitochondrial membrane potential and contained mitochondria of substantially reduced volume. These results indicate that α-KDE2 is bifunctional, both as a metabolic enzyme and as a mitochondrial inheritance factor necessary for the distribution of kDNA networks to daughter cells at cytokinesis.
机译:多亚基α-酮戊二酸脱氢酶复合物(α-KD)的二氢脂酰琥珀酰转移酶(E2)是线粒体基质中常见的必不可少的克雷布斯循环酶。非洲锥虫在发育中调节线粒体碳水化合物的代谢,在哺乳动物的血液中缺乏功能性的克雷布斯循环。我们发现尽管不存在功能性α-KD,血流形式(BF)的锥虫仍表达α-KDE2,其定位于线粒体基质和内膜。此外,α-KDE2与线粒体基因组,动塑料DNA(kDNA)分离,并与鞭毛复合。在α-KDE2RNA干扰(RNAi)敲低中揭示了α-KDE2在kDNA维持中的作用。 RNAi诱导后,血锥虫的生长显着降低,通常无法将kDNA平均分配给子细胞,从而导致缺乏kDNA的细胞蓄积(运动增生)或含有两个运动质体。运动型锥虫缺乏线粒体膜电位,线粒体体积明显减少。这些结果表明,α-KDE2是双功能的,既是代谢酶又是线粒体遗传因子,是胞质分裂时将kDNA网络分布到子代细胞所必需的。

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