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首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Compartmentation Prevents A Lethal Turbo-explosion Of Glycolysis In Trypanosomes
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Compartmentation Prevents A Lethal Turbo-explosion Of Glycolysis In Trypanosomes

机译:隔室可防止锥虫中糖酵解的致命涡轮爆炸。

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ATP generation by both glycolysis and glycerol catabolism is autocatalytic, because the first kinases of these pathways are fuelled by ATP produced downstream. Previous modeling studies predicted that either feedback inhibition or compartmentation of glycolysis can protect cells from accumulation of intermediates. The deadly parasite Trypanosoma brucei lacks feedback regulation of early steps in glycolysis yet sequesters the relevant enzymes within organelles called glycosomes, leading to the proposal that compartmentation prevents toxic accumulation of intermediates. Here, we show that glucose 6-phosphate indeed accumulates upon glucose addition to PEX14 deficient trypanosomes, which are impaired in glycosomal protein import. With glycerol catabolism, both in silico and in vivo, loss of glycosomal compartmentation led to dramatic increases of glycerol 3-phosphate upon addition of glycerol. As predicted by the model, depletion of glycerol kinase rescued PEX14-deficient cells of glycerol toxicity. This provides the first experimental support for our hypothesis that pathway compartmentation is an alternative to allosteric regulation.
机译:通过糖酵解和甘油分解代谢产生的ATP是自催化的,因为这些途径的第一个激酶由下游产生的ATP推动。先前的建模研究预测,反馈抑制或糖酵解的区室化可以保护细胞免于中间体的积聚。致命的寄生虫布氏锥虫缺乏对糖酵解早期步骤的反馈调节,但将细胞内的相关酶隔离在称为糖体的细胞内,从而导致有人提出,分隔可防止中间体的毒性积累。在这里,我们显示葡萄糖添加到PEX14缺陷型锥虫中时确实会积累6-磷酸葡萄糖,这会削弱糖体蛋白的导入。在计算机和体内甘油分解代谢中,糖体区室的丧失导致添加甘油后3-磷酸甘油的急剧增加。如该模型所预测的,甘油激酶的消耗可挽救PEX14缺陷细胞的甘油毒性。这为我们的假设提供了第一个实验支持,该假设认为通路分隔是变构调节的替代方法。

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