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布氏锥虫病原体线粒体铁转运蛋白的特性分析

Characterisation of a mitochondrial iron transporter of the pathogen Trypanosoma brucei.

作者信息

Zheng Fuli, Colasante Claudia, Voncken Frank

机构信息

Department of Preventive Medicine, School of Public Health, Fujian Medical University, Xueyuan Road, Fujian, 350122, PR China; Department of Biomedical Sciences, School of Life Sciences, University of Hull, Cottingham Road, Hull, HU6 7RX, United Kingdom.

Institute for Anatomy and Cell Biology, Division of Medical Cell Biology, Aulweg 123, University of Giessen, 35392, Giessen, Germany.

出版信息

Mol Biochem Parasitol. 2019 Oct;233:111221. doi: 10.1016/j.molbiopara.2019.111221. Epub 2019 Sep 19.

Abstract

Similar to higher eukaryotes, the protist parasite T. brucei harbours several iron-containing proteins that regulate DNA and protein processing, oxidative stress defence and mitochondrial respiration. The synthesis of these proteins occurs either in the cytoplasm or within the mitochondrion. For mitochondrial iron cluster protein synthesis, iron needs to be transported across the solute impermeable mitochondrial membrane. In T. brucei we previously identified 24 mitochondrial carrier proteins (TbMCPs) sharing conserved structural and functional features with those from higher eukaryotes. One of these carriers (TbMCP17) displayed high similarity with the iron carriers MRS3, MRS4 from yeast and mitoferrin from mammals, insects and plants. In the present study we demonstrated that TbMCP17 functions as an iron carrier by complementation studies using MRS3/4-deficient yeast. Depletion of TbMCP17 in procyclic form T. brucei resulted in growth deficiency, increased sensitivity to iron deprivation, and lowered mitochondrial iron content. Taken together our results suggest that TbMCP17 functions as a mitochondrial iron transporter in the parasite T. brucei.

摘要

与高等真核生物类似,原生生物寄生虫布氏锥虫含有多种含铁蛋白,这些蛋白调节DNA和蛋白质加工、氧化应激防御以及线粒体呼吸。这些蛋白质的合成发生在细胞质或线粒体内。对于线粒体铁簇蛋白的合成,铁需要穿过对溶质不可渗透的线粒体膜进行运输。在布氏锥虫中,我们之前鉴定出了24种线粒体载体蛋白(TbMCPs),它们与高等真核生物的线粒体载体蛋白具有保守的结构和功能特征。其中一种载体(TbMCP17)与酵母的铁载体MRS3、MRS4以及哺乳动物、昆虫和植物的线粒体铁转运蛋白具有高度相似性。在本研究中,我们通过使用缺乏MRS3/4的酵母进行互补研究,证明了TbMCP17作为一种铁载体发挥作用。在布氏锥虫前循环期缺失TbMCP17会导致生长缺陷、对铁剥夺的敏感性增加以及线粒体铁含量降低。综合我们的结果表明,TbMCP17在布氏锥虫寄生虫中作为线粒体铁转运蛋白发挥作用。

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