The autophagic tumor stroma model of cancer Role of oxidative stress and ketone production in fueling tumor cell metabolism

被引:199
作者
Pavlides, Stephanos [1 ,2 ,3 ]
Tsirigos, Aristotelis [5 ]
Migneco, Gemma [1 ,2 ,3 ]
Whitaker-Menezes, Diana [1 ,2 ,3 ]
Chiavarina, Barbara [1 ,2 ,3 ]
Flomenberg, Neal [4 ]
Frank, Philippe G. [1 ,2 ,3 ]
Casimiro, Mathew C. [1 ,2 ,3 ]
Wang, Chenguang [1 ,2 ,3 ]
Pestell, Richard G. [1 ,2 ,3 ]
Martinez-Outschoorn, Ubaldo E. [3 ,4 ]
Howell, Anthony [6 ,7 ]
Sotgia, Federica [1 ,2 ,3 ,6 ,7 ]
Lisanti, Michael P. [1 ,2 ,3 ,4 ,6 ,7 ]
机构
[1] Thomas Jefferson Univ, Dept Stem Cell Biol & Regenerat Med, Philadelphia, PA 19107 USA
[2] Thomas Jefferson Univ, Dept Canc Biol, Philadelphia, PA 19107 USA
[3] Thomas Jefferson Univ, Jefferson Stem Cell Biol & Regenerat Med Ctr, Philadelphia, PA 19107 USA
[4] Thomas Jefferson Univ, Dept Med Oncol, Kimmel Canc Ctr, Philadelphia, PA 19107 USA
[5] IBM Thomas J Watson Res Ctr, Computat Genom Grp, Yorktown Hts, NY USA
[6] Univ Manchester, Manchester Breast Ctr, Manchester M13 9PL, Lancs, England
[7] Univ Manchester, Breakthrough Breast Canc Res Unit, Sch Canc Enabling Sci & Technol, Paterson Inst Canc Res,Manchester Acad Hlth Sci C, Manchester M13 9PL, Lancs, England
基金
欧洲研究理事会;
关键词
caveolin-1; autophagy; mitophagy; the Warburg effect; tumor stroma; metabolomics; ADMA (asymmetric dimethyl arginine); 3-hydroxybutyrate (ketone bodies); miR-31; miR-34c; AMYOTROPHIC-LATERAL-SCLEROSIS; BREAST-CANCER; SYSTEMIC-SCLEROSIS; ASYMMETRIC DIMETHYLARGININE; EXPRESSION; FIBROBLASTS; CAVEOLIN-1; DISEASE; INDUCTION; HYPOXIA;
D O I
10.4161/cc.9.17.12721
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
A loss of stromal caveolin-1 (Cav-1) in the tumor fibroblast compartment is associated with early tumor recurrence, lymphnode metastasis and tamoxifen-resistance, resulting in poor clinical outcome in breast cancer patients. Here, we have used Cav-1 (-/-) null mice as a pre-clinical model for this "lethal tumor micro-environment". Metabolic profiling of Cav-1 (-/-) mammary fat pads revealed the upregulation of numerous metabolites (nearly 100), indicative of a major catabolic phenotype. Our results are consistent with the induction of oxidative stress, mitochondrial dysfunction and autophagy/mitophagy. The two most prominent metabolites that emerged from this analysis were ADMA (asymmetric dimethyl arginine) and BHB (beta-hydroxybutyrate; a ketone body), which are markers of oxidative stress and mitochondrial dysfunction, respectively. Transcriptional profiling of Cav-1 (-/-) stromal cells and human tumor stroma from breast cancer patients directly supported an association with oxidative stress, mitochondrial dysfunction and autophagy/mitophagy, as well as ADMA and ketone production. MircoRNA profiling of Cav-1 (-/-) stromal cells revealed the upregulation of two key cancer-related miR's, namely miR-31 and miR-34c. Consistent with our metabolic findings, these miR's are associated with oxidative stress (miR-34c) or activation of the hypoxic response/HIF1a (miR-31), which is sufficient to drive authophagy/mitophagy. Thus, via an unbiased comprehensive analysis of a lethal tumor micro-environment, we have identified a number of candidate biomarkers (ADMA, ketones and miR-31/34c) that could be used to identify high-risk cancer patients at diagnosis, for treatment stratification and/or for evaluating therapeutic efficacy during anti-cancer therapy. We propose that the levels of these key biomarkers (ADMA, ketones/BHB, miR-31 and miR-34c) could be (i) assayed using serum or plasma from cancer patients or (ii) performed directly on excised tumor tissue. Importantly, induction of oxidative stress and autophagy/mitophagy in the tumor stromal compartment provides a means by which epithelial cancer cells can directly "feed off" of stromal-derived essential nutrients, chemical building blocks (amino acids, nucleotides) and energy-rich metabolites (glutamine, pyruvate, ketones/BHB), driving tumor progression and metastasis. Essentially, aggressive cancer cells are "eating" the cancer-associated fibroblasts via autophagy/mitophagy in the tumor micro-environment. Lastly, we discuss that this "Autophagic Tumor Stroma Model of Cancer Metabolism" provides a viable solution to the "Autophagy Paradox" in cancer etiology and chemo-therapy.
引用
收藏
页码:3485 / 3505
页数:21
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