Horváth Anton, Horáková Eva, Dunajcíková Petra, Verner Zdenek, Pravdová Eliska, Slapetová Iveta, Cuninková L'udmila, Lukes Julius
Faculty of Natural Sciences, Comenius University, Bratislava, Slovakia.
Mol Microbiol. 2005 Oct;58(1):116-30. doi: 10.1111/j.1365-2958.2005.04813.x.
The function, stability and mutual interactions of selected nuclear-encoded subunits of respiratory complexes III and IV were studied in the Trypanosoma brucei procyclics using RNA interference (RNAi). The growth rates and oxygen consumption of clonal cell lines of knock-downs for apocytochrome c1 (apoc1) and the Rieske Fe-S protein (Rieske) of complex III, and cytochrome c oxidase subunit 6 (cox6) of complex IV were markedly decreased after RNAi induction. Western analysis of mitochondrial lysates using specific antibodies confirmed complete elimination of the targeted proteins 4-6 days after induction. The Rieske protein was reduced in the apoc1 knock-down and vice versa, indicating a mutual interdependence of these components of complex III. However, another subunit of complex IV remained at the wild-type level in the cox6 knock-down. As revealed by two-dimensional blue native/SDS-PAGE electrophoresis, silencing of a single subunit resulted in the disruption of the respective complex, while the other complex remained unaffected. Membrane potential was reproducibly decreased in the knock-downs and the activities of complex III and/or IV, but not complex I, were drastically reduced, as measured by activity assays and histochemical staining. Using specific inhibitors, we have shown that in procyclics with depleted subunits of the respiratory complexes the flow of electrons was partially re-directed to the alternative oxidase. The apparent absence in T. brucei procyclics of a supercomplex composed of complexes I and III may represent an ancestral state of the respiratory chain.
利用RNA干扰(RNAi)技术,在布氏锥虫原循环期研究了呼吸复合物III和IV中选定的核编码亚基的功能、稳定性及相互作用。RNAi诱导后,复合物III的脱辅基细胞色素c1(apoc1)和铁硫蛋白(Rieske)以及复合物IV的细胞色素c氧化酶亚基6(cox6)的敲低克隆细胞系的生长速率和氧消耗显著降低。使用特异性抗体对线粒体裂解物进行的蛋白质免疫印迹分析证实,诱导后4 - 6天目标蛋白被完全清除。在apoc1敲低细胞系中Rieske蛋白减少,反之亦然,这表明复合物III的这些组分相互依赖。然而,在cox6敲低细胞系中,复合物IV的另一个亚基保持在野生型水平。二维蓝色天然/SDS - PAGE电泳结果显示,单个亚基的沉默导致相应复合物的破坏,而另一个复合物未受影响。通过活性测定和组织化学染色测量发现,敲低细胞系中的膜电位可重复性降低,复合物III和/或IV的活性大幅降低,但复合物I的活性未受影响。使用特异性抑制剂,我们发现,在呼吸复合物亚基缺失的原循环期细胞中,电子流部分重新导向交替氧化酶。布氏锥虫原循环期明显不存在由复合物I和III组成的超复合物,这可能代表了呼吸链的原始状态。