Štáfková Jitka, Mach Jan, Biran Marc, Verner Zdeněk, Bringaud Frédéric, Tachezy Jan
Department of Parasitology, Faculty of Science, Charles University in Prague, Czech Republic.
Centre de Résonance Magnétique des Systèmes Biologiques (RMSB), UMR5536 CNRS.
Mol Microbiol. 2016 May;100(3):442-56. doi: 10.1111/mmi.13325. Epub 2016 Feb 10.
Pyruvate is a key product of glycolysis that regulates the energy metabolism of cells. In Trypanosoma brucei, the causative agent of sleeping sickness, the fate of pyruvate varies dramatically during the parasite life cycle. In bloodstream forms, pyruvate is mainly excreted, whereas in tsetse fly forms, pyruvate is metabolized in mitochondria yielding additional ATP molecules. The character of the molecular machinery that mediates pyruvate transport across mitochondrial membrane was elusive until the recent discovery of mitochondrial pyruvate carrier (MPC) in yeast and mammals. Here, we characterized pyruvate import into mitochondrion of T. brucei. We identified mpc1 and mpc2 homologs in the T. brucei genome with attributes of MPC protein family and we demonstrated that both proteins are present in the mitochondrial membrane of the parasite. Investigations of mpc1 or mpc2 gene knock-out cells proved that T. brucei MPC1/2 proteins facilitate mitochondrial pyruvate transport. Interestingly, MPC is expressed not only in procyclic trypanosomes with fully activated mitochondria but also in bloodstream trypanosomes in which most of pyruvate is excreted. Moreover, MPC appears to be essential for bloodstream forms, supporting the recently emerging picture that the functions of mitochondria in bloodstream forms are more diverse than it was originally thought.
丙酮酸是糖酵解的关键产物,可调节细胞的能量代谢。在昏睡病的病原体布氏锥虫中,丙酮酸的命运在寄生虫生命周期中变化很大。在血液形式中,丙酮酸主要被排泄,而在采采蝇形式中,丙酮酸在线粒体中代谢产生额外的ATP分子。直到最近在酵母和哺乳动物中发现线粒体丙酮酸载体(MPC),介导丙酮酸跨线粒体膜转运的分子机制的特性一直难以捉摸。在这里,我们对布氏锥虫线粒体中的丙酮酸导入进行了表征。我们在布氏锥虫基因组中鉴定了具有MPC蛋白家族属性的mpc1和mpc2同源物,并证明这两种蛋白都存在于寄生虫的线粒体膜中。对mpc1或mpc2基因敲除细胞的研究证明,布氏锥虫MPC1/2蛋白促进线粒体丙酮酸转运。有趣的是,MPC不仅在具有完全激活线粒体的前循环锥虫中表达,而且在大多数丙酮酸被排泄的血液锥虫中也表达。此外,MPC似乎对血液形式至关重要,这支持了最近出现的一种观点,即血液形式中线粒体的功能比最初认为的更加多样化。