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本文引用的文献

1
Revisiting the central metabolism of the bloodstream forms of Trypanosoma brucei: production of acetate in the mitochondrion is essential for parasite viability.重新审视布氏锥虫血流形式的中心代谢:线粒体中乙酸盐的产生对寄生虫的生存至关重要。
PLoS Negl Trop Dis. 2013 Dec 19;7(12):e2587. doi: 10.1371/journal.pntd.0002587. eCollection 2013.
2
The threonine degradation pathway of the Trypanosoma brucei procyclic form: the main carbon source for lipid biosynthesis is under metabolic control.布氏锥虫前鞭毛体的苏氨酸降解途径:脂质生物合成的主要碳源受代谢控制。
Mol Microbiol. 2013 Oct;90(1):114-29. doi: 10.1111/mmi.12351. Epub 2013 Aug 25.
3
Cytosolic NADPH homeostasis in glucose-starved procyclic Trypanosoma brucei relies on malic enzyme and the pentose phosphate pathway fed by gluconeogenic flux.葡萄糖饥饿的前鞭毛体布鲁氏锥虫细胞溶质 NADPH 稳态依赖于苹果酸酶和糖异生通量供应的戊糖磷酸途径。
J Biol Chem. 2013 Jun 21;288(25):18494-505. doi: 10.1074/jbc.M113.462978. Epub 2013 May 10.
4
Flux Analysis of the Trypanosoma brucei Glycolysis Based on a Multiobjective-Criteria Bioinformatic Approach.基于多目标标准生物信息学方法的布氏锥虫糖酵解通量分析
Adv Bioinformatics. 2012;2012:159423. doi: 10.1155/2012/159423. Epub 2012 Oct 13.
5
ATP synthesis-coupled and -uncoupled acetate production from acetyl-CoA by mitochondrial acetate:succinate CoA-transferase and acetyl-CoA thioesterase in Trypanosoma.三磷酸腺苷合成偶联和不偶联的乙酰辅酶 A 经线粒体乙酰辅酶 A:琥珀酸辅酶 A 转移酶和乙酰辅酶 A 硫酯酶产生乙酸盐在锥虫中的作用。
J Biol Chem. 2012 May 18;287(21):17186-17197. doi: 10.1074/jbc.M112.355404. Epub 2012 Apr 2.
6
Multiple roles of proline transport and metabolism in trypanosomatids.脯氨酸转运和代谢在原虫中的多重作用。
Front Biosci (Landmark Ed). 2012 Jan 1;17(1):349-74. doi: 10.2741/3931.
7
When, how and why glycolysis became compartmentalised in the Kinetoplastea. A new look at an ancient organelle.糖酵解在动基体类生物中是如何、何时以及为何发生区室化的。对古老细胞器的新认识。
Int J Parasitol. 2012 Jan;42(1):1-20. doi: 10.1016/j.ijpara.2011.10.007. Epub 2011 Nov 22.
8
Concentration Measurement by Proton NMR Using the ERETIC Method.质子 NMR 利用 ERETIC 方法进行浓度测量。
Anal Chem. 1999 Jul 1;71(13):2554-7. doi: 10.1021/ac981422i.
9
The exopolyphosphatase TbrPPX1 of Trypanosoma brucei.布氏锥虫外多聚磷酸酶 TbrPPX1。
BMC Microbiol. 2011 Jan 6;11:4. doi: 10.1186/1471-2180-11-4.
10
Ablation of succinate production from glucose metabolism in the procyclic trypanosomes induces metabolic switches to the glycerol 3-phosphate/dihydroxyacetone phosphate shuttle and to proline metabolism.在循环亲代锥虫的葡萄糖代谢中切除琥珀酸的产生会诱导代谢向 3-磷酸甘油/二羟丙酮磷酸穿梭和脯氨酸代谢转换。
J Biol Chem. 2010 Oct 15;285(42):32312-24. doi: 10.1074/jbc.M110.124917. Epub 2010 Aug 11.

丙酮酸磷酸二激酶在布氏锥虫前循环型糖体ATP/ADP平衡维持中的作用。

Contribution of pyruvate phosphate dikinase in the maintenance of the glycosomal ATP/ADP balance in the Trypanosoma brucei procyclic form.

作者信息

Deramchia Kamel, Morand Pauline, Biran Marc, Millerioux Yoann, Mazet Muriel, Wargnies Marion, Franconi Jean-Michel, Bringaud Frédéric

机构信息

From the Centre de Résonance Magnétique des Systèmes Biologiques, Université de Bordeaux, CNRS UMR-5536, 146 rue Léo Saignat, 33076 Bordeaux Cedex, France.

From the Centre de Résonance Magnétique des Systèmes Biologiques, Université de Bordeaux, CNRS UMR-5536, 146 rue Léo Saignat, 33076 Bordeaux Cedex, France

出版信息

J Biol Chem. 2014 Jun 20;289(25):17365-78. doi: 10.1074/jbc.M114.567230. Epub 2014 May 2.

DOI:10.1074/jbc.M114.567230
PMID:24794874
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4067170/
Abstract

Trypanosoma brucei belongs to a group of protists that sequester the first six or seven glycolytic steps inside specialized peroxisomes, named glycosomes. Because of the glycosomal membrane impermeability to nucleotides, ATP molecules consumed by the first glycolytic steps need to be regenerated in the glycosomes by kinases, such as phosphoenolpyruvate carboxykinase (PEPCK). The glycosomal pyruvate phosphate dikinase (PPDK), which reversibly converts phosphoenolpyruvate into pyruvate, could also be involved in this process. To address this question, we analyzed the metabolism of the main carbon sources used by the procyclic trypanosomes (glucose, proline, and threonine) after deletion of the PPDK gene in the wild-type (Δppdk) and PEPCK null (Δppdk/Δpepck) backgrounds. The rate of acetate production from glucose is 30% reduced in the Δppdk mutant, whereas threonine-derived acetate production is not affected, showing that PPDK function in the glycolytic direction with production of ATP in the glycosomes. The Δppdk/Δpepck mutant incubated in glucose as the only carbon source showed a 3.8-fold reduction of the glycolytic rate compared with the Δpepck mutant, as a consequence of the imbalanced glycosomal ATP/ADP ratio. The role of PPDK in maintenance of the ATP/ADP balance was confirmed by expressing the glycosomal phosphoglycerate kinase (PGKC) in the Δppdk/Δpepck cell line, which restored the glycolytic flux. We also observed that expression of PGKC is lethal for procyclic trypanosomes, as a consequence of ATP depletion, due to glycosomal relocation of cytosolic ATP production. This illustrates the key roles played by glycosomal and cytosolic kinases, including PPDK, to maintain the cellular ATP/ADP homeostasis.

摘要

布氏锥虫属于一类原生生物,它们将糖酵解的前六个或七个步骤隔离在特殊的过氧化物酶体(称为糖体)中。由于糖体膜对核苷酸不渗透,糖酵解前几步消耗的ATP分子需要由激酶(如磷酸烯醇丙酮酸羧激酶(PEPCK))在糖体中再生。糖体丙酮酸磷酸二激酶(PPDK)可将磷酸烯醇丙酮酸可逆地转化为丙酮酸,也可能参与这一过程。为了解决这个问题,我们分析了在野生型(Δppdk)和PEPCK缺失型(Δppdk/Δpepck)背景下删除PPDK基因后,前循环锥虫使用的主要碳源(葡萄糖、脯氨酸和苏氨酸)的代谢情况。在Δppdk突变体中,由葡萄糖产生乙酸盐的速率降低了30%,而苏氨酸衍生的乙酸盐产生不受影响,这表明PPDK在糖体中沿糖酵解方向发挥作用并产生ATP。与Δpepck突变体相比,以葡萄糖作为唯一碳源培养的Δppdk/Δpepck突变体的糖酵解速率降低了3.8倍,这是糖体中ATP/ADP比例失衡的结果。通过在Δppdk/Δpepck细胞系中表达糖体磷酸甘油酸激酶(PGKC),恢复了糖酵解通量,从而证实了PPDK在维持ATP/ADP平衡中的作用。我们还观察到,由于胞质ATP产生在糖体中的重新定位导致ATP耗竭,PGKC的表达对前循环锥虫是致命的。这说明了包括PPDK在内的糖体和胞质激酶在维持细胞ATP/ADP稳态中所起的关键作用。