Surve Sachin, Heestand Meredith, Panicucci Brian, Schnaufer Achim, Parsons Marilyn
Seattle Biomedical Research Institute, Seattle, Washington, USA.
Eukaryot Cell. 2012 Feb;11(2):183-93. doi: 10.1128/EC.05282-11. Epub 2011 Dec 9.
The presence of mitochondrial respiratory complex I in the pathogenic bloodstream stages of Trypanosoma brucei has been vigorously debated: increased expression of mitochondrially encoded functional complex I mRNAs is countered by low levels of enzymatic activity that show marginal inhibition by the specific inhibitor rotenone. We now show that epitope-tagged versions of multiple complex I subunits assemble into α and β subcomplexes in the bloodstream stage and that these subcomplexes require the mitochondrial genome for their assembly. Despite the presence of these large (740- and 855-kDa) multisubunit complexes, the electron transport activity of complex I is not essential under experimental conditions since null mutants of two core genes (NUBM and NUKM) showed no growth defect in vitro or in mouse infection. Furthermore, the null mutants showed no decrease in NADH:ubiquinone oxidoreductase activity, suggesting that the observed activity is not contributed by complex I. This work conclusively shows that despite the synthesis and assembly of subunit proteins, the enzymatic function of the largest respiratory complex is neither significant nor important in the bloodstream stage. This situation appears to be in striking contrast to that for the other respiratory complexes in this parasite, where physical presence in a life-cycle stage always indicates functional significance.
布氏锥虫致病性血流阶段中线粒体呼吸复合体I的存在一直存在激烈争论:线粒体编码的功能性复合体I mRNA表达增加,但酶活性水平较低,且特异性抑制剂鱼藤酮对其抑制作用微弱。我们现在表明,多个复合体I亚基的表位标记版本在血流阶段组装成α和β亚复合体,且这些亚复合体的组装需要线粒体基因组。尽管存在这些大型(740 kDa和855 kDa)多亚基复合体,但在实验条件下,复合体I的电子传递活性并非必需,因为两个核心基因(NUBM和NUKM)的缺失突变体在体外或小鼠感染中均未表现出生长缺陷。此外,缺失突变体的NADH:泛醌氧化还原酶活性没有降低,这表明观察到的活性并非由复合体I贡献。这项工作确凿地表明,尽管亚基蛋白进行了合成和组装,但最大呼吸复合体的酶功能在血流阶段既不显著也不重要。这种情况似乎与该寄生虫中的其他呼吸复合体形成鲜明对比,在其他呼吸复合体中,生命周期阶段的实际存在总是表明其功能意义。