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Modelling metabolic rewiring during melanoma progression using flux balance analysis

机译:使用助焊剂平衡分析模拟黑色素瘤进展期间的代谢再次灌注

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Improvements in melanoma diagnosis, treatment and prognosis are urgently warranted, given that it causes 3 out of 4 skin cancer deaths. A large amount of genomic and molecular data indicate that alterations occur at multiple scales in different stages of melanoma. Metabolic rewiring is a characteristic feature of progressive cancers that facilitates sustenance of tumors, and caters to the changing energy requirements. Since such rewiring involves multiple variations in the metabolic network that are orchestrated, a systems perspective is necessary to understand the nature, significance, mechanisms and identification of the key steps. To address this, we integrate patient transcriptome data with a prior human reference metabolic model and construct stage-specific genome-scale metabolic models. Using flux balance analysis, we simulate the metabolic flows and compute the reaction fluxes specific to normal skin, primary melanoma and metastatic melanoma, from which the reactions with flux differences between conditions were identified. Reactions related to Warburg effect, as anticipated and in addition, ROS detoxification and tyrosine metabolism were largely altered in all stages of melanoma. Vitamin A and vitamin C sub-systems are identified to be involved in different stages, consistent with experimental studies from literature that indicate their support to cancer progression. Gene essentiality studies using the melanoma model identified 5 important genes NME2, CMPK1, HSD17B4, DTYMK and PRODH for the proliferation of melanoma cells, which can be explored as potential drug targets.
机译:紧急保证黑色素瘤诊断,治疗和预后的改善,因为它导致4种皮肤癌症死亡。大量基因组和分子数据表明改变在黑色素瘤的不同阶段的多个尺度处发生。代谢重新挤出是渐进式癌症的特征,促进肿瘤的寄托,并迎合不断变化的能量要求。由于这种重新灌注涉及编程的代谢网络中的多种变化,因此有必要透视系统透视来理解关键步骤的性质,意义,机制和识别。为了解决这一点,我们将患者转录组数据与先前的人参考代谢模型进行整合并构建特异性阶段的基因组代谢模型。使用助焊剂平衡分析,我们模拟了代谢流,并计算了正常皮肤,初生黑素瘤和转移性黑素瘤特异的反应助熔剂,鉴定了条件之间的助焊剂差异的反应。与Warburg效应有关的反应,预期和另外,ROS解毒和酪氨酸代谢在很大程度上改变了黑色素瘤的所有阶段。鉴定维生素A和维生素C子系统涉及不同阶段,与文献的实验研究一致,表明他们对癌症进展的支持。使用黑色素瘤模型的基因生物研究鉴定了5个重要的基因NME2,CMPK1,HSD17B4,DTYMK和PRODH用于黑素瘤细胞的增殖,可以探索为潜在的药物靶标。

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