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Impacts of NRF2 activation in non–small‐cell lung cancer cell lines on extracellular metabolites

机译:非小细胞肺癌细胞系中NRF2激活对细胞外代谢物的影响

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摘要

Aberrant activation of NRF2 is as a critical prognostic factor that drives the malignant progression of various cancers. Cancer cells with persistent NRF2 activation heavily rely on NRF2 activity for therapeutic resistance and aggressive tumorigenic capacity. To clarify the metabolic features of NRF2‐activated lung cancers, we conducted targeted metabolomic (T‐Met) and global metabolomic (G‐Met) analyses of non–small‐cell lung cancer (NSCLC) cell lines in combination with exome and transcriptome analyses. Exome analysis of 88 cell lines (49 adenocarcinoma, 14 large cell carcinoma, 15 squamous cell carcinoma and 10 others) identified non–synonymous mutations in the , and genes. Judging from the elevated expression of NRF2 target genes, these mutations are expected to result in the constitutive stabilization of NRF2. Out of the 88 cell lines, 52 NSCLC cell lines (29 adenocarcinoma, 10 large cell carcinoma, 9 squamous cell carcinoma and 4 others) were subjected to T‐Met analysis. Classification of the 52 cell lines into three groups according to the NRF2 target gene expression enabled us to draw typical metabolomic signatures induced by NRF2 activation. From the 52 cell lines, 18 NSCLC cell lines (14 adenocarcinoma, 2 large cell carcinoma, 1 squamous cell carcinoma and 1 others) were further chosen for G‐Met and detailed transcriptome analyses. G‐Met analysis of their culture supernatants revealed novel metabolites associated with NRF2 activity, which may be potential diagnostic biomarkers of NRF2 activation. This study also provides useful information for the exploration of new metabolic nodes for selective toxicity towards NRF2‐activated NSCLC.
机译:NRF2的异常激活是驱动各种癌症恶性进展的关键预后因素。具有持续NRF2活化作用的癌细胞在很大程度上依赖于NRF2活性来获得治疗抗性和积极的致瘤能力。为了阐明NRF2激活的肺癌的代谢特征,我们结合外显子组和转录组分析对非小细胞肺癌(NSCLC)细胞系进行了靶向代谢组学(T-Met)和整体代谢组学(G-Met)分析。对88个细胞系(49个腺癌,14个大细胞癌,15个鳞状细胞癌和10个其他细胞系)的外显子组分析确定了和基因中的非同义突变。从NRF2靶基因的表达升高来看,这些突变有望导致NRF2的组成稳定。在88个细胞系中,对52个NSCLC细胞系(29个腺癌,10个大细胞癌,9个鳞状细胞癌和其他4个)进行了T-Met分析。根据NRF2靶基因表达将52个细胞系分为三类,使我们能够绘制由NRF2激活诱导的典型的代谢组学特征。从52个细胞系中,进一步选择了18个NSCLC细胞系(14个腺癌,2个大细胞癌,1个鳞状细胞癌和另外1个)进行G-Met和详细的转录组分析。他们的培养物上清液的G‐Met分析揭示了与NRF2活性相关的新代谢产物,这可能是NRF2活化的潜在诊断生物标志物。这项研究还为探索新的代谢节点对NRF2活化的NSCLC的选择性毒性提供了有用的信息。

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