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弓形虫中糖异生和三羧酸(TCA)循环酶的定位及TCA循环的首次功能分析

Localisation of gluconeogenesis and tricarboxylic acid (TCA)-cycle enzymes and first functional analysis of the TCA cycle in Toxoplasma gondii.

作者信息

Fleige Tobias, Pfaff Nils, Gross Uwe, Bohne Wolfgang

机构信息

Institute of Medical Microbiology, University of Göttingen, Kreuzbergring 57, Göttingen, Germany.

出版信息

Int J Parasitol. 2008 Aug;38(10):1121-32. doi: 10.1016/j.ijpara.2008.01.007. Epub 2008 Feb 13.

Abstract

The apicomplexan parasite Toxoplasma gondii displays some unusual localisations of carbohydrate converting enzymes, which is due to the presence of a vestigial, non-photosynthetic plastid, referred to as the apicoplast. It was recently demonstrated that the single pyruvate dehydrogenase complex (PDH) in T. gondii is exclusively localised inside the apicoplast but absent in the mitochondrion. This raises the question about expression, localisation and function of enzymes for the tricarboxylic acid (TCA)-cycle, which normally depends on PDH generated acetyl-CoA. Based on the expression and localisation of epitope-tagged fusion proteins, we show that all analysed TCA cycle enzymes are localised in the mitochondrion, including both isoforms of malate dehydrogenase. The absence of a cytosolic malate dehydrogenase suggests that a typical malate-aspartate shuttle for transfer of reduction equivalents is missing in T. gondii. We also localised various enzymes which catalyse the irreversible steps in gluconeogenesis to a cellular compartment and examined mRNA expression levels for gluconeogenesis and TCA cycle genes between tachyzoites and in vitro bradyzoites. In order to get functional information on the TCA cycle for the parasite energy metabolism, we created a conditional knock-out mutant for the succinyl-CoA synthetase. Disruption of the sixth step in the TCA cycle should leave the biosynthetic parts of the cycle intact, but prevent FADH2 production. The succinyl-CoA synthetase depletion mutant displayed a 30% reduction in growth rate, which could be restored by supplementation with 2 microM succinate in the tissue culture medium. The mitochondrial membrane potential in these parasites was found to be unaltered. The lack of a more severe phenotype suggests that a functional TCA cycle is not essential for T. gondii replication and for maintenance of the mitochondrial membrane potential.

摘要

顶复门寄生虫刚地弓形虫的碳水化合物转化酶存在一些不寻常的定位,这是由于存在一个退化的、非光合质体,即所谓的顶质体。最近有研究表明,刚地弓形虫中的单个丙酮酸脱氢酶复合体(PDH)仅定位于顶质体内,而线粒体中不存在。这就引发了关于三羧酸(TCA)循环中酶的表达、定位和功能的问题,因为TCA循环通常依赖于PDH产生的乙酰辅酶A。基于表位标签融合蛋白的表达和定位,我们发现所有分析的TCA循环酶都定位于线粒体中,包括苹果酸脱氢酶的两种同工型。缺乏胞质苹果酸脱氢酶表明刚地弓形虫中缺少用于转移还原当量的典型苹果酸 - 天冬氨酸穿梭系统。我们还将催化糖异生中不可逆步骤的各种酶定位到细胞区室,并检测了速殖子和体外缓殖子之间糖异生和TCA循环基因的mRNA表达水平。为了获取关于寄生虫能量代谢中TCA循环的功能信息,我们构建了琥珀酰辅酶A合成酶的条件性敲除突变体。TCA循环第六步的破坏应使循环的生物合成部分保持完整,但会阻止FADH2的产生。琥珀酰辅酶A合成酶缺失突变体的生长速率降低了30%,在组织培养基中添加2 microM琥珀酸可使其恢复。发现这些寄生虫的线粒体膜电位未改变。缺乏更严重的表型表明功能性TCA循环对于刚地弓形虫的复制和线粒体膜电位的维持并非必不可少。

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