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首页> 外文期刊>The Journal of biological chemistry >Isotopomer Profiling of Leishmania mexicana Promastigotes Reveals Important Roles for Succinate Fermentation and Aspartate Uptake in Tricarboxylic Acid Cycle (TCA) Anaplerosis, Glutamate Synthesis, and Growth
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Isotopomer Profiling of Leishmania mexicana Promastigotes Reveals Important Roles for Succinate Fermentation and Aspartate Uptake in Tricarboxylic Acid Cycle (TCA) Anaplerosis, Glutamate Synthesis, and Growth

机译:Leishmania墨西哥蛋白酶突发性探讨了琥珀酸酯发酵和天冬氨酸在三羧酸循环(TCA)的胎儿术,谷氨酸合成和生长中的重要作用

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Leishmania parasites proliferate within nutritionally complex niches in their sandfly vector and mammalian hosts. However, the extent to which these parasites utilize different carbon sources remains poorly defined. In this study, we have followed the incorporation of various 13C-labeled carbon sources into the intracellular and secreted metabolites of Leishmania mexicana promastigotes using gas chromatography-mass spectrometry and 13C NMR. [U-13C]Glucose was rapidly incorporated into intermediates in glycolysis, the pentose phosphate pathway, and the cytoplasmic carbohydrate reserve material, mannogen. Enzymes involved in the upper glycolytic pathway are sequestered within glycosomes, and the ATP and NAD+ consumed by these reactions were primarily regenerated by the fermentation of phosphoenolpyruvate to succinate (glycosomal succinate fermentation). The initiating enzyme in this pathway, phosphoenolpyruvate carboxykinase, was exclusively localized to the glycosome. Although some of the glycosomal succinate was secreted, most of the C4 dicarboxylic acids generated during succinate fermentation were further catabolized in the TCA cycle. A high rate of TCA cycle anaplerosis was further suggested by measurement of [U-13C]aspartate and [U-13C]alanine uptake and catabolism. TCA cycle anaplerosis is apparently needed to sustain glutamate production under standard culture conditions. Specifically, inhibition of mitochondrial aconitase with sodium fluoroacetate resulted in the rapid depletion of intracellular glutamate pools and growth arrest. Addition of high concentrations of exogenous glutamate alleviated this growth arrest. These findings suggest that glycosomal and mitochondrial metabolism in Leishmania promastigotes is tightly coupled and that, in contrast to the situation in some other trypanosomatid parasites, the TCA cycle has crucial anabolic functions.
机译:Leishmania寄生虫在他们的沙蝇载体和哺乳动物宿主中营养复杂的核心。然而,这些寄生虫利用不同碳源的程度仍然定义不足。在这项研究中,我们遵循使用气相色谱 - 质谱和13C NMR将各种13C标记的碳源掺入Leishmania Mexicana Promastigots的细胞内和分泌的代谢物。 [U-13C]葡萄糖迅速掺入糖酵解的中间体中,戊糖磷酸途径和细胞质碳水化合物储备材料,甘油。参与上糖酵解途径的酶被隔离在糖细胞内,并通过这些反应消耗的ATP和NAD +主要通过磷酸丙酯发酵成琥珀酸盐(糖细胞琥珀酸发酵)来再生。该途径中的启动酶,磷酸丙酮酸羧酮酶,专门定位于糖体。虽然一些糖琥珀酸酯分泌,但在琥珀酸盐发酵期间产生的大多数C 4二羧酸在TCA循环中进一步分解代谢。通过测量[U-13C]天冬氨酸和[U-13C]丙氨酸摄取和分解代谢进一步提出了高速率的TCA循环瓣膜术。显然需要TCA循环厌氧体在标准培养条件下维持谷氨酸产量。具体地,抑制氟乙酸钠的线粒体穴位酶导致细胞内谷氨酸库和生长停滞的快速消耗。添加了高浓度的外源谷氨酸缓释。这些研究结果表明,Leishmania春季的糖蛋白和线粒体代谢是紧密偶联的,并且与一些其他锥虫寄生虫的情况相比,TCA循环具有至关重要的合成代谢功能。

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