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前循环型布氏锥虫不利用三羧酸循环活动来产生能量。

Procyclic Trypanosoma brucei do not use Krebs cycle activity for energy generation.

作者信息

van Weelden Susanne W H, Fast Beate, Vogt Achim, van der Meer Pieter, Saas Joachim, van Hellemond Jaap J, Tielens Aloysius G M, Boshart Michael

机构信息

Department of Biochemistry and Cell Biology, Faculty of Veterinary Medicine, Utrecht University, NL-3508 TD Utrecht, The Netherlands.

出版信息

J Biol Chem. 2003 Apr 11;278(15):12854-63. doi: 10.1074/jbc.M213190200. Epub 2003 Jan 31.

Abstract

The importance of a functional Krebs cycle for energy generation in the procyclic stage of Trypanosoma brucei was investigated under physiological conditions during logarithmic phase growth of a pleomorphic parasite strain. Wild type procyclic cells and mutants with targeted deletion of the gene coding for aconitase were derived by synchronous in vitro differentiation from wild type and mutant (Delta aco::NEO/Delta aco::HYG) bloodstream stage parasites, respectively, where aconitase is not expressed and is dispensable. No differences in intracellular levels of glycolytic and Krebs cycle intermediates were found in procyclic wild type and mutant cells, except for citrate that accumulated up to 90-fold in the mutants, confirming the absence of aconitase activity. Surprisingly, deletion of aconitase did not change differentiation nor the growth rate or the intracellular ATP/ADP ratio in those cells. Metabolic studies using radioactively labeled substrates and NMR analysis demonstrated that glucose and proline were not degraded via the Krebs cycle to CO(2). Instead, glucose was degraded to acetate, succinate, and alanine, whereas proline was degraded to succinate. Importantly, there was absolutely no difference in the metabolic products released by wild type and aconitase knockout parasites, and both were for survival strictly dependent on respiration via the mitochondrial electron transport chain. Hence, although the Krebs cycle enzymes are present, procyclic T. brucei do not use Krebs cycle activity for energy generation, but the mitochondrial respiratory chain is essential for survival and growth. We therefore propose a revised model of the energy metabolism of procyclic T. brucei.

摘要

在多形性寄生虫株对数期生长的生理条件下,研究了功能性三羧酸循环对于布氏锥虫前循环期能量产生的重要性。野生型前循环期细胞和乌头酸酶编码基因靶向缺失的突变体,分别通过野生型和突变体(Δaco::NEO/Δaco::HYG)血流期寄生虫的体外同步分化获得,在血流期寄生虫中乌头酸酶不表达且非必需。除了在突变体中柠檬酸积累高达90倍外,在前循环期野生型和突变体细胞中未发现糖酵解和三羧酸循环中间产物的细胞内水平存在差异,这证实了乌头酸酶活性的缺失。令人惊讶的是,乌头酸酶的缺失并未改变这些细胞的分化、生长速率或细胞内ATP/ADP比值。使用放射性标记底物的代谢研究和核磁共振分析表明,葡萄糖和脯氨酸并非通过三羧酸循环降解为CO₂。相反,葡萄糖降解为乙酸盐、琥珀酸盐和丙氨酸,而脯氨酸降解为琥珀酸盐。重要的是,野生型和乌头酸酶敲除寄生虫释放的代谢产物绝对没有差异,并且两者的生存都严格依赖于通过线粒体电子传递链的呼吸作用。因此,尽管存在三羧酸循环酶,但前循环期布氏锥虫并不利用三羧酸循环活性来产生能量,而是线粒体呼吸链对于生存和生长至关重要。我们因此提出了前循环期布氏锥虫能量代谢的修正模型。

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