Integrated omics-based pathway analyses uncover CYP epoxygenase-associated networks as theranostic targets for metastatic triple negative breast cancer

被引:19
作者
Apaya, Maria Karmella [1 ,2 ,3 ,4 ]
Shiau, Jeng-Yuan [3 ]
Liao, Guo-Shiou [5 ]
Liang, Yu-Jen [6 ]
Chen, Chia-Wei [6 ]
Yang, Hsin-Chou [6 ]
Chu, Chi-Hong [5 ]
Yu, Jyh-Cherng [5 ]
Shyur, Lie-Fen [1 ,2 ,3 ,7 ,8 ]
机构
[1] Acad Sinica, Taiwan Int Grad Program, Mol & Biol Agr Sci Program, Taipei 115, Taiwan
[2] Natl Chung Hsing Univ, Taichung 402, Taiwan
[3] Acad Sinica, Agr Biotechnol Res Ctr, Taipei 115, Taiwan
[4] Natl Chung Hsing Univ, Grad Inst Biotechnol, Taichung 402, Taiwan
[5] Natl Def Med Ctr, Triserv Gen Hosp, Taipei 114, Taiwan
[6] Acad Sinica, Inst Stat Sci, Taipei 115, Taiwan
[7] Natl Chung Hsing Univ, Ctr Biotechnol, Taichung 402, Taiwan
[8] Kaohsiung Med Univ, Coll Med, PhD Program Translat Med, Kaohsiung 807, Taiwan
关键词
CYP450; epoxygenase; Epoxyeicosatrienoic acid; Metastasis; Oxylipin metabolome; Triple negative breast cancer; COMPREHENSIVE MOLECULAR PORTRAITS; 14,15-EPOXYEICOSATRIENOIC ACID; CYTOCHROME-P450; 2J2; GROWTH; OPPORTUNITIES; METABOLISM; PROMOTES; MEDIATOR; SUBTYPES; CELLS;
D O I
10.1186/s13046-019-1187-y
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
BackgroundCurrent prognostic tools and targeted therapeutic approaches have limited value for metastatic triple negative breast cancer (TNBC). Building upon current knowledge, we hypothesized that epoxyeicosatrienoic acids (EETs) and related CYP450 epoxygenases may have differential roles in breast cancer signaling, and better understanding of which may uncover potential directions for molecular stratification and personalized therapy for TNBC patients.MethodsWe analyzed the oxylipin metabolome of paired tumors and adjacent normal mammary tissues from patients with pathologically confirmed breast cancer (N=62). We used multivariate statistical analysis to identify important metabolite contributors and to determine the predictive power of tumor tissue metabolite clustering. In vitro functional assays using a panel of breast cancer cell lines were carried out to further confirm the crucial roles of endogenous and exogenous EETs in the metastasis transformation of TNBC cells. Deregulation of associated downstream signaling networks associated with EETs/CYPs was established using transcriptomics datasets from The Cancer Genome Atlas (TCGA) and Molecular Taxonomy of Breast Cancer International Consortium (METABRIC). Comparative TNBC proteomics using the same tissue specimens subjected to oxylipin metabolomics analysis was used as validation set.ResultsMetabolite-by-metabolite comparison, tumor immunoreactivity, and gene expression analyses showed that CYP epoxygenases and arachidonic acid-epoxygenation products, EET metabolites, are strongly associated with TNBC metastasis. Notably, all the 4 EET isomers (5,6-, 8,9-, 11,12-, and 14,15-EET) was observed to profoundly drive the metastasis transformation of mesenchymal-like TNBC cells among the TNBC (basal- and mesenchymal-like), HER2-overexpressing and luminal breast cancer cell lines examined. Our pathway analysis revealed that, in hormone-positive breast cancer subtype, CYP epoxygenase overexpression is more related to immune cell-associated signaling, while EET-mediated Myc, Ras, MAPK, EGFR, HIF-1, and NOD1/2 signaling are the molecular vulnerabilities of metastatic CYP epoxygenase-overexpressing TNBC tumors.ConclusionsThis study suggests that categorizing breast tumors according to their EET metabolite ratio classifiers and CYP epoxygenase profiles may be useful for prognostic and therapeutic assessment. Modulation of CYP epoxygenase and EET-mediated signaling networks may offer an effective approach for personalized treatment of breast cancer, and may be an effective intervention option for metastatic TNBC patients.
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页数:22
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