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Systems biology analysis of drivers underlying hallmarks of cancer cell metabolism

机译:癌细胞代谢标志标志标志性标志的系统生物学分析

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Malignant transformation is often accompanied by significant metabolic changes. To identify drivers underlying these changes, we calculated metabolic flux states for the NCI60 cell line collection and correlated the variance between metabolic states of these lines with their other properties. The analysis revealed a remarkably consistent structure underlying high flux metabolism. The three primary uptake pathways, glucose, glutamine and serine, are each characterized by three features: (1) metabolite uptake sufficient for the stoichiometric requirement to sustain observed growth, (2) overflow metabolism, which scales with excess nutrient uptake over the basal growth requirement, and (3) redox production, which also scales with nutrient uptake but greatly exceeds the requirement for growth. We discovered that resistance to chemotherapeutic drugs in these lines broadly correlates with the amount of glucose uptake. These results support an interpretation of the Warburg effect and glutamine addiction as features of a growth state that provides resistance to metabolic stress through excess redox and energy production. Furthermore, overflow metabolism observed may indicate that mitochondrial catabolic capacity is a key constraint setting an upper limit on the rate of cofactor production possible. These results provide a greater context within which the metabolic alterations in cancer can be understood.
机译:恶性转化往往伴有显着的代谢变化。为了识别这些变化的基础,我们计算了NCI60细胞系列收集的代谢通量状态,并将这些线的代谢状态与其他属性相关联。该分析揭示了高通量代谢的显着一致的结构。三种主要摄取途径,葡萄糖,谷氨酰胺和丝氨酸,各自具有三个特征:(1)代谢物摄取足以维持观察到的生长的化学计量要求,(2)溢流代谢,其在基础生长上具有过量的营养吸收量要求,(3)氧化还原产量,也具有营养吸收的尺度,但大大超过了增长的要求。我们发现这些系列中的化学治疗药物的抵抗力与葡萄糖摄取量大致相关。这些结果支持对Warburg效应和谷氨酰胺成瘾的解释,作为通过过量的氧化还原和能量产生来提供对代谢应力的抵抗力的生长状态的特征。此外,观察到的溢流新陈代谢可能表明线粒体分解代谢容量是一个关键约束,其可以实现辅助因子生产速率的上限。这些结果提供了更大的上下文,可以理解癌症的代谢改变。

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