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ATP Synthase Is Responsible for Maintaining Mitochondrial Membrane Potential in Bloodstream Form Trypanosoma brucei

机译:ATP合酶负责维持布鲁氏锥虫血流中线粒体膜的电位

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摘要

The mitochondrion of Trypanosoma brucei bloodstream form maintains a membrane potential, although it lacks cytochromes and several Krebs cycle enzymes. At this stage, the ATP synthase is present at reduced, although significant, levels. To test whether the ATP synthase at this stage is important for maintaining the mitochondrial membrane potential, we used RNA interference (RNAi) to knock down the levels of the ATP synthase by targeting the F1-ATPase α and β subunits. RNAi-induced cells grew significantly slower than uninduced cells but were not morphologically altered. RNAi of the β subunit decreased the mRNA and protein levels for the β subunit, as well as the mRNA and protein levels of the α subunit. Similarly, RNAi of α subunit decreased the α subunit transcript and protein levels, as well as the β-subunit transcript and protein levels. In contrast, α and β RNAi knockdown resulted in a 60% increase in the F0 complex subunit 9 protein levels without a significant change in the steady-state transcript levels of this subunit. The F0-32-kDa subunit protein expression, however, remained stable throughout induction of RNAi for α or β subunits. Oligomycin-sensitive ATP hydrolytic and synthetic activities were decreased by 43 and 44%, respectively. Significantly, the mitochondrial membrane potential of α and β RNAi cells was decreased compared to wild-type cells, as detected by MitoTracker Red CMXRos fluorescence microscopy and flow cytometry. These results support the role of the ATP synthase in the maintenance of the mitochondrial membrane potential in bloodstream form T. brucei.
机译:布氏锥虫血流形式的线粒体尽管缺乏细胞色素和几种克雷布斯循环酶,但仍具有膜电位。在此阶段,ATP合酶的含量虽然降低,但显着降低。为了测试此阶段的ATP合酶对于维持线粒体膜电位是否重要,我们使用RNA干扰(RNAi)通过靶向F1-ATPaseα和β亚基来敲低ATP合酶的水平。 RNAi诱导的细胞比未诱导的细胞生长显着慢,但是形态上没有改变。 β亚基的RNAi降低了β亚基的mRNA和蛋白质水平,以及α亚基的mRNA和蛋白质水平。类似地,α亚基的RNAi降低了α亚基的转录物和蛋白质水平,以及β-亚基的转录物和蛋白质水平。相比之下,α和βRNAi敲低导致F0复杂亚基9蛋白水平增加60%,而该亚基的稳态转录水平没有明显变化。然而,在诱导α或β亚基的RNAi的整个过程中,F0-32-kDa亚基蛋白的表达保持稳定。寡霉素敏感性ATP的水解和合成活性分别降低了43%和44%。值得注意的是,如MitoTracker Red CMXRos荧光显微镜和流式细胞术所检测到的,与野生型细胞相比,α和βRNAi细胞的线粒体膜电位降低了。这些结果支持了ATP合酶在维持布鲁氏锥虫血流中线粒体膜电位中的作用。

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