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首页> 外文期刊>The Journal of biological chemistry >Quantitative Analysis of Purine Nucleotides Indicates That Purinosomes Increase de Novo Purine Biosynthesis
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Quantitative Analysis of Purine Nucleotides Indicates That Purinosomes Increase de Novo Purine Biosynthesis

机译:嘌呤核苷酸的定量分析表明嘌呤骨髓增加了Novo嘌呤生物合成

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摘要

Enzymes in the de novo purine biosynthesis pathway are recruited to form a dynamic metabolic complex referred to as the purinosome. Previous studies have demonstrated that purinosome assembly responds to purine levels in culture medium. Purine-depleted medium or 2-dimethylamino-4,5,6,7-tetrabromo-1H-benzimidazole (DMAT) treatment stimulates the purinosome assembly in HeLa cells. Here, several metabolomic technologies were applied to quantify the static cellular levels of purine nucleotides and measure the de novo biosynthesis rate of IMP, AMP, and GMP. Direct comparison of purinosome-rich cells (cultured in purine-depleted medium) and normal cells showed a 3-fold increase in IMP concentration in purinosome-rich cells and similar levels of AMP, GMP, and ratios of AMP/GMP and ATP/ADP for both. In addition, a higher level of IMP was also observed in HeLa cells treated with DMAT. Furthermore, increases in the de novo IMP/AMP/GMP biosynthetic flux rate under purine-depleted condition were observed. The synthetic enzymes, adenylosuccinate synthase (ADSS) and inosine monophosphate dehydrogenase (IMPDH), downstream of IMP were also shown to be part of the purinosome. Collectively, these results provide further evidence that purinosome assembly is directly related to activated de novo purine biosynthesis, consistent with the functionality of the purinosome.
机译:募集de novo嘌呤生物合成途径中的酶以形成称为嘌呤体的动态代谢复合物。以前的研究表明,嘌呤体组装对培养基的嘌呤水平作出反应。嘌呤耗尽的培养基或2-二甲基氨基-4,5,6,7-四溴-1H-苯并咪唑(DMAT)处理刺激HeLa细胞中的嘌呤体组件。这里,应用了几种代谢物技术来量化嘌呤核苷酸的静态细胞水平,并测量IMP,AMP和GMP的Novo生物合成率。直接比较富含嘌呤多肽的细胞(在嘌呤耗尽培养基中培养)和正常细胞显示出富含嘌呤细胞的细胞和相似水平的IMP,GMP和ATP / ADP比例的3倍的IMP浓度增加对彼此而言。此外,在用DMAT处理的HeLa细胞中也观察到更高水平的IMP。此外,观察到在嘌呤耗尽条件下的DE Novo IMP / AMP / GMP生物合成通量率的增加。在Imp的下游也显示为嘌呤体的一部分,合成酶,腺苷氨基琥珀酸合酶(Adss)和inoosine单磷酸脱氢酶(Imphdh)。总的来说,这些结果提供了进一步的证据,即嘌呤体组件与活化的de novo嘌呤生物合成直接相关,与嘌呤体的官能团一致。

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