Department of Neuroscience, University of Cambridge, Cambridge Biomedical Campus, Hills Road, Cambridge, CB2 0AH, United Kingdom.
Department of Biomedical Sciences, School of Life Sciences, University of Hull, Cottingham Road, Hull, HU6 7RX, United Kingdom.
Mol Biochem Parasitol. 2020 May;237:111275. doi: 10.1016/j.molbiopara.2020.111275. Epub 2020 Apr 27.
Conserved amongst all eukaryotes is a family of mitochondrial carrier proteins (SLC25A) responsible for the import of various solutes across the inner mitochondrial membrane. We previously reported that the human parasite Trypanosoma brucei possesses 26 SLC25A proteins (TbMCPs) amongst which two, TbMCP11 and TbMCP8, were predicted to function as phosphate importers. The transport of inorganic phosphate into the mitochondrion is a prerequisite to drive ATP synthesis by substrate level and oxidative phosphorylation and thus crucial for cell viability. In this paper we describe the functional characterization of TbMCP11. In procyclic form T. brucei, the RNAi of TbMCP11 blocked ATP synthesis on mitochondrial substrates, caused a drop of the mitochondrial oxygen consumption and drastically reduced cell viability. The functional complementation in yeast and mitochondrial swelling experiments suggested a role for TbMCP11 as inorganic phosphate carrier. Interestingly, procyclic form T. brucei cells in which TbMCP11 was depleted displayed an inability to either replicate or divide the kinetoplast DNA, which resulted in a severe cytokinesis defect.
所有真核生物中都有一组线粒体载体蛋白(SLC25A),负责将各种溶质跨线粒体内膜输入。我们之前报道过,人类寄生虫布氏锥虫拥有 26 种 SLC25A 蛋白(TbMCPs),其中两种,TbMCP11 和 TbMCP8,被预测为磷酸盐载体。无机磷酸盐进入线粒体是驱动基质水平和氧化磷酸化合成 ATP 的前提条件,因此对细胞活力至关重要。在本文中,我们描述了 TbMCP11 的功能特征。在裂殖体形式的 T. brucei 中,TbMCP11 的 RNAi 阻断了线粒体底物上的 ATP 合成,导致线粒体耗氧量下降,并严重降低细胞活力。在酵母中的功能互补和线粒体肿胀实验表明 TbMCP11 作为无机磷酸盐载体的作用。有趣的是,TbMCP11 耗尽的裂殖体形式 T. brucei 细胞既不能复制也不能分裂动基体 DNA,导致严重的胞质分裂缺陷。