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The effects of near optimal growth solutions in genome-scale human cancer metabolic model

机译:近最优生长溶液在基因组规律的人癌代谢模型中的影响

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Cancer cells inefficiently produce energy through glycolysis even in ample oxygen, a phenomenon known as “aerobic glycolysis”. A characteristic of the rapid and incomplete catabolism of glucose is the secretion of lactate. Genome-scale metabolic models have been recently employed to describe the glycolytic phenotype of highly proliferating human cancer cells. Genome-scale models describe genotype-phenotype relations revealing the full extent of metabolic capabilities of genotypes under various environmental conditions. The importance of these approaches in understanding some aspects of cancer complexity, as well as in cancer diagnostics and individualized therapeutic schemes related to metabolism is evident. Based on previous metabolic models, we explore the metabolic capabilities and rerouting that occur in cancer metabolism when we apply a strategy that allows near optimal growth solution while maximizing lactate secretion. The simulations show that slight deviations around the optimal growth are sufficient for adequate lactate release and that glucose uptake and lactate secretion are correlated at high proliferation rates as it has been observed. Inhibition of lactate dehydrogenase-A, an enzyme involved in the conversion of pyruvate to lactate, substantially reduces lactate release. We also observe that activating specific reactions associated with the migration-related PLCγ enzyme, the proliferation rate decreases. Furthermore, we incorporate flux constraints related to differentially expressed genes in Glioblastoma Multiforme in an attempt to construct a Glioblastoma-specific metabolic model and investigate its metabolic capabilities across different glucose uptake bounds.
机译:癌细胞即使在充足的氧气中,癌细胞也通过糖溶解而效率低下,称为&#x201c的现象;有氧糖酵解”葡萄糖的快速和不完全分解代谢的特征是乳酸的分泌。最近用于描述高增殖人癌细胞的糖酵解表型的基因组级代谢模型。基因组规模模型描述了基因型 - 表型关系,揭示了各种环境条件下基因型的新代谢能力的全部程度。这些方法在了解癌症复杂性的某些方面以及与新陈代谢相关的癌症诊断和个体化治疗计划的重要性是显而易见的。基于以前的代谢模型,我们探讨当我们应用允许近最佳生长溶液附近的策略时癌代谢在癌症代谢中发生的代谢能力和重新排出,同时最大化乳酸分泌。仿真表明,围绕最佳生长的微小偏差足以足以使乳酸释放,并且在观察到的高增殖速率下葡萄糖摄取和乳酸分泌。抑制乳酸脱氢酶-A,一种参与丙酮酸转化为乳酸的酶,基本上减少了乳酸释放。我们还观察到激活与迁移相关的PLC&#x03b3相关的特定反应;酶,增殖率降低。此外,我们将与差异表达基因相关的助熔剂约束掺入胶质母细胞瘤多形形,以试图构建胶质母细胞瘤特异性代谢模型,并在不同葡萄糖摄取界面调查其代谢能力。

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