间质细胞
癌症研究
癌相关成纤维细胞
瓦博格效应
血管生成
生物
旁分泌信号
小窝蛋白1
厌氧糖酵解
癌症
乳腺癌
糖酵解
癌细胞
肿瘤微环境
转移
细胞生物学
内分泌学
受体
生物化学
新陈代谢
遗传学
肿瘤细胞
作者
Gloria Bonuccelli,Diana Whitaker‐Menezes,Remedios Castelló-Cros,Stephanos Pavlides,Richard G. Pestell,Alessandro Fatatis,Agnieszka K. Witkiewicz,Matthew G. Vander Heiden,G Migneco,Barbara Chiavarina,Philippe G. Frank,Franco Capozza,Neal Flomenberg,Ubaldo Martinez‐Outschoorn,Federica Sotgia,Michael P. Lisanti
出处
期刊:Cell Cycle
[Taylor & Francis]
日期:2010-05-15
卷期号:9 (10): 1960-1971
被引量:190
标识
DOI:10.4161/cc.9.10.11601
摘要
AbstractWe and others have previously identified a loss of stromal caveolin-1 (Cav-1) in cancer-associated fibroblasts (CAFs) as a powerful single independent predictor of breast cancer patient tumor recurrence, metastasis, tamoxifen-resistance, and poor clinical outcome. However, it remains unknown how loss of stromal Cav-1 mediates these effects clinically. To mechanistically address this issue, we have now generated a novel human tumor xenograft model. In this two-component system, nude mice are co-injected with i) human breast cancer cells (MDA-MB-231), and ii) stromal fibroblasts (wild-type (WT) versus Cav-1 (-/-) deficient). This allowed us to directly evaluate the effects of a Cav-1 deficiency solely in the tumor stromal compartment. Here, we show that Cav-1-deficient stromal fibroblasts are sufficient to promote both tumor growth and angiogenesis, and to recruit Cav-1 (+) micro-vascular cells. Proteomic analysis of Cav-1-deficient stromal fibroblasts indicates that these cells upregulate the expression of glycolytic enzymes, a hallmark of aerobic glycolysis (the Warburg effect). Thus, Cav-1-deficient stromal fibroblasts may contribute towards tumor growth and angiogenesis, by providing energy-rich metabolites in a paracrine fashion. We have previously termed this new idea the “Reverse Warburg Effect”. In direct support of this notion, treatment of this xenograft model with glycolysis inhibitors functionally blocks the positive effects of Cav-1-deficient stromal fibroblasts on breast cancer tumor growth. Thus, pharmacologically-induced metabolic restriction (via treatment with glycolysis inhibitors) may be a promising new therapeutic strategy for breast cancer patients that lack stromal Cav-1 expression. We also identify the stromal expression of PKM2 and LDH-B as new candidate biomarkers for the “Reverse Warburg Effect” or “Stromal-Epithelial Metabolic Coupling” in human breast cancers.
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