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Metabolomic Dynamic Analysis of Hypoxia in MDA-MB-231 and the Comparison with Inferred Metabolites from Transcriptomics Data

机译:MDA-MB-231缺氧的代谢组学动力学分析及与转录组学数据推断的代谢物的比较

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Hypoxia affects the tumor microenvironment and is considered important to metastasis progression and therapy resistance. Thus far, the majority of global analyses of tumor hypoxia responses have been limited to just a single omics level. Combining multiple omics data can broaden our understanding of tumor hypoxia. Here, we investigate the temporal change of the metabolite composition with gene expression data from literature to provide a more comprehensive insight into the system level in response to hypoxia. Nuclear magnetic resonance spectroscopy was used to perform metabolomic profiling on the MDA-MB-231 breast cancer cell line under hypoxic conditions. Multivariate statistical analysis revealed that the metabolic difference between hypoxia and normoxia was similar over 24 h, but became distinct over 48 h. Time dependent microarray data from the same cell line in the literature displayed different gene expressions under hypoxic and normoxic conditions mostly at 12 h or earlier. The direct metabolomic profiles show a large overlap with theoretical metabolic profiles deduced from previous transcriptomic studies. Consistent pathways are glycolysis/gluconeogenesis, pyruvate, purine and arginine and proline metabolism. Ten metabolic pathways revealed by metabolomics were not covered by the downstream of the known transcriptomic profiles, suggesting new metabolic phenotypes. These results confirm previous transcriptomics understanding and expand the knowledge from existing models on correlation and co-regulation between transcriptomic and metabolomics profiles, which demonstrates the power of integrated omics analysis.
机译:缺氧会影响肿瘤的微环境,并被认为对转移进程和治疗耐药性很重要。迄今为止,大多数对肿瘤缺氧反应的全球分析仅限于单个组学水平。结合多种组学数据可以拓宽我们对肿瘤缺氧的了解。在这里,我们用文献中的基因表达数据研究代谢物组成的时间变化,以提供对缺氧反应系统水平的更全面的了解。在缺氧条件下,使用核磁共振波谱对MDA-MB-231乳腺癌细胞系进行代谢组学分析。多变量统计分析表明,低氧和常氧之间的代谢差异在24小时内相似,但在48小时内变得明显。来自文献中同一细胞系的时间依赖性微阵列数据显示了在缺氧和常氧条件下的基因表达差异,主要是在12小时或更早的时间。直接的代谢组学谱与从先前的转录组学研究推论的理论代谢谱有很大的重叠。一致的途径是糖酵解/糖异生,丙酮酸,嘌呤和精氨酸和脯氨酸代谢。代谢组学揭示的十个代谢途径未被已知的转录组谱的下游覆盖,表明新的代谢表型。这些结果证实了以前的转录组学理解,并扩展了现有模型中有关转录组和代谢组学谱之间的相关性和共调控的知识,这证明了整合组学分析的力量。

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