Department of Biological Sciences and Hull York Medical School, University of Hull, Cottingham Road, HU6 7RX Hull, United Kingdom.
J Biol Chem. 2012 Dec 7;287(50):41861-74. doi: 10.1074/jbc.M112.404699. Epub 2012 Oct 16.
Trypanosoma brucei is a kinetoplastid parasite of medical and veterinary importance. Its digenetic life cycle alternates between the bloodstream form in the mammalian host and the procyclic form (PCF) in the bloodsucking insect vector, the tsetse fly. PCF trypanosomes rely in the glucose-depleted environment of the insect vector primarily on the mitochondrial oxidative phosphorylation of proline for their cellular ATP provision. We previously identified two T. brucei mitochondrial carrier family proteins, TbMCP5 and TbMCP15, with significant sequence similarity to functionally characterized ADP/ATP carriers from other eukaryotes. Comprehensive sequence analysis confirmed that TbMCP5 contains canonical ADP/ATP carrier sequence features, whereas they are not conserved in TbMCP15. Heterologous expression in the ANC-deficient yeast strain JL1Δ2Δ3u(-) revealed that only TbMCP5 was able to restore its growth on the non-fermentable carbon source lactate. Transport studies in yeast mitochondria showed that TbMCP5 has biochemical properties and ADP/ATP exchange kinetics similar to those of Anc2p, the prototypical ADP/ATP carrier of S. cerevisiae. Immunofluorescence microscopy and Western blot analysis confirmed that TbMCP5 is exclusively mitochondrial and is differentially expressed with 4.5-fold more TbMCP5 in the procyclic form of the parasite. Silencing of TbMCP5 expression in PCF T. brucei revealed that this ADP/ATP carrier is essential for parasite growth, particularly when depending on proline for energy generation. Moreover, ADP/ATP exchange in isolated T. brucei mitochondria was eliminated upon TbMCP5 depletion. These results confirmed that TbMCP5 functions as the main ADP/ATP carrier in the trypanosome mitochondrion. The important role of TbMCP5 in the T. brucei energy metabolism is further discussed.
布氏锥虫是一种具有医学和兽医重要性的动基体目寄生虫。其双核生活史在哺乳动物宿主的血液形式和吸血昆虫传播媒介(采采蝇)中的前循环形式(PCF)之间交替。PCF 锥虫在昆虫媒介的葡萄糖耗尽环境中主要依赖于脯氨酸的线粒体氧化磷酸化来提供细胞内的 ATP。我们之前鉴定了两种 T. brucei 线粒体载体家族蛋白,TbMCP5 和 TbMCP15,它们与来自其他真核生物的功能表征的 ADP/ATP 载体具有显著的序列相似性。全面的序列分析证实,TbMCP5 含有典型的 ADP/ATP 载体序列特征,而 TbMCP15 则没有保守。在 ANC 缺陷酵母菌株 JL1Δ2Δ3u(-)中的异源表达表明,只有 TbMCP5 能够恢复其在不可发酵碳源乳酸上的生长。在酵母线粒体中的转运研究表明,TbMCP5 具有生化特性和 ADP/ATP 交换动力学,与 S. cerevisiae 的典型 ADP/ATP 载体 Anc2p 相似。免疫荧光显微镜和 Western blot 分析证实,TbMCP5 是专门的线粒体蛋白,在寄生虫的前循环形式中表达量增加了 4.5 倍。在 PCF T. brucei 中沉默 TbMCP5 的表达表明,该 ADP/ATP 载体对寄生虫的生长至关重要,尤其是在依赖脯氨酸产生能量时。此外,在 TbMCP5 耗尽时,分离的 T. brucei 线粒体中的 ADP/ATP 交换被消除。这些结果证实,TbMCP5 作为主要的 ADP/ATP 载体在锥虫线粒体中发挥作用。进一步讨论了 TbMCP5 在 T. brucei 能量代谢中的重要作用。