Literature DB >> 23172369

BRCA1 mutations drive oxidative stress and glycolysis in the tumor microenvironment: implications for breast cancer prevention with antioxidant therapies.

Ubaldo E Martinez-Outschoorn1, Renee Balliet, Zhao Lin, Diana Whitaker-Menezes, Ruth C Birbe, Alessandro Bombonati, Stephanos Pavlides, Rebecca Lamb, Sharon Sneddon, Anthony Howell, Federica Sotgia, Michael P Lisanti.   

Abstract

Mutations in the BRCA1 tumor suppressor gene are commonly found in hereditary breast cancer. Similarly, downregulation of BRCA1 protein expression is observed in the majority of basal-like breast cancers. Here, we set out to study the effects of BRCA1 mutations on oxidative stress in the tumor microenvironment. To mimic the breast tumor microenvironment, we utilized an in vitro co-culture model of human BRCA1-mutated HCC1937 breast cancer cells and hTERT-immortalized human fibroblasts. Notably, HCC1937 cells induce the generation of hydrogen peroxide in the fibroblast compartment during co-culture, which can be inhibited by genetic complementation with the wild-type BRCA1 gene. Importantly, treatment with powerful antioxidants, such as NAC and Tempol, induces apoptosis in HCC1937 cells, suggesting that microenvironmental oxidative stress supports cancer cell survival. In addition, Tempol treatment increases the apoptotic rates of MDA-MB-231 cells, which have wild-type BRCA1, but share a basal-like breast cancer phenotype with HCC1937 cells. MCT4 is the main exporter of L-lactate out of cells and is a marker for oxidative stress and glycolytic metabolism. Co-culture with HCC1937 cells dramatically induces MCT4 protein expression in fibroblasts, and this can be prevented by either BRCA1 overexpression or by pharmacological treatment with NAC. We next evaluated caveolin-1 (Cav-1) expression in stromal fibroblasts. Loss of Cav-1 is a marker of the cancer-associated fibroblast (CAF) phenotype, which is linked to high stromal glycolysis, and is associated with a poor prognosis in numerous types of human cancers, including breast cancers. Remarkably, HCC1937 cells induce a loss of Cav-1 in adjacent stromal cells during co-culture. Conversely, Cav-1 expression in fibroblasts can be rescued by administration of NAC or by overexpression of BRCA1 in HCC1937 cells. Notably, BRCA1-deficient human breast cancer samples (9 out of 10) also showed a glycolytic stromal phenotype, with intense mitochondrial staining specifically in BRCA1-deficient breast cancer cells. In summary, loss of BRCA1 function leads to hydrogen peroxide generation in both epithelial breast cancer cells and neighboring stromal fibroblasts, and promotes the onset of a reactive glycolytic stroma, with increased MCT4 and decreased Cav-1 expression. Importantly, these metabolic changes can be reversed by antioxidants, which potently induce cancer cell death. Thus, antioxidant therapy appears to be synthetically lethal with a BRCA1-deficiency in breast cancer cells and should be considered for future cancer prevention trials. In this regard, immunostaining with Cav-1 and MCT4 could be used as cost-effective biomarkers to monitor the response to antioxidant therapy.

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Year:  2012        PMID: 23172369      PMCID: PMC3552923          DOI: 10.4161/cc.22776

Source DB:  PubMed          Journal:  Cell Cycle        ISSN: 1551-4005            Impact factor:   4.534


  64 in total

1.  Autophagy in cancer associated fibroblasts promotes tumor cell survival: Role of hypoxia, HIF1 induction and NFκB activation in the tumor stromal microenvironment.

Authors:  Ubaldo E Martinez-Outschoorn; Casey Trimmer; Zhao Lin; Diana Whitaker-Menezes; Barbara Chiavarina; Jie Zhou; Chengwang Wang; Stephanos Pavlides; Maria P Martinez-Cantarin; Franco Capozza; Agnieszka K Witkiewicz; Neal Flomenberg; Anthony Howell; Richard G Pestell; Jaime Caro; Michael P Lisanti; Federica Sotgia
Journal:  Cell Cycle       Date:  2010-09-09       Impact factor: 4.534

2.  Loss of stromal caveolin-1 expression predicts poor clinical outcome in triple negative and basal-like breast cancers.

Authors:  Agnieszka K Witkiewicz; Abhijit Dasgupta; Sara Sammons; Ozlem Er; Magdalena B Potoczek; Fran Guiles; Federica Sotgia; Jonathan R Brody; Edith P Mitchell; Michael P Lisanti
Journal:  Cancer Biol Ther       Date:  2010-07-07       Impact factor: 4.742

3.  BRCA1 negatively regulates formation of autophagic vacuoles in MCF-7 breast cancer cells.

Authors:  Juan M Esteve; María Eugenia Armengod; Erwin Knecht
Journal:  Exp Cell Res       Date:  2010-07-01       Impact factor: 3.905

4.  HIF1-alpha functions as a tumor promoter in cancer associated fibroblasts, and as a tumor suppressor in breast cancer cells: Autophagy drives compartment-specific oncogenesis.

Authors:  Barbara Chiavarina; Diana Whitaker-Menezes; Gemma Migneco; Ubaldo E Martinez-Outschoorn; Stephanos Pavlides; Anthony Howell; Herbert B Tanowitz; Mathew C Casimiro; Chenguang Wang; Richard G Pestell; Philip Grieshaber; Jaime Caro; Federica Sotgia; Michael P Lisanti
Journal:  Cell Cycle       Date:  2010-09-04       Impact factor: 4.534

5.  Glycolytic cancer associated fibroblasts promote breast cancer tumor growth, without a measurable increase in angiogenesis: evidence for stromal-epithelial metabolic coupling.

Authors:  Gemma Migneco; Diana Whitaker-Menezes; Barbara Chiavarina; Remedios Castello-Cros; Stephanos Pavlides; Richard G Pestell; Alessandro Fatatis; Neal Flomenberg; Aristotelis Tsirigos; Anthony Howell; Ubaldo E Martinez-Outschoorn; Federica Sotgia; Michael P Lisanti
Journal:  Cell Cycle       Date:  2010-06-15       Impact factor: 4.534

6.  Tumor cells induce the cancer associated fibroblast phenotype via caveolin-1 degradation: implications for breast cancer and DCIS therapy with autophagy inhibitors.

Authors:  Ubaldo E Martinez-Outschoorn; Stephanos Pavlides; Diana Whitaker-Menezes; Kristin M Daumer; Janet N Milliman; Barbara Chiavarina; Gemma Migneco; Agnieszka K Witkiewicz; Maria P Martinez-Cantarin; Neal Flomenberg; Anthony Howell; Richard G Pestell; Michael P Lisanti; Federica Sotgia
Journal:  Cell Cycle       Date:  2010-06-15       Impact factor: 4.534

7.  Evidence for a stromal-epithelial "lactate shuttle" in human tumors: MCT4 is a marker of oxidative stress in cancer-associated fibroblasts.

Authors:  Diana Whitaker-Menezes; Ubaldo E Martinez-Outschoorn; Zhao Lin; Adam Ertel; Neal Flomenberg; Agnieszka K Witkiewicz; Ruth C Birbe; Anthony Howell; Stephanos Pavlides; Ricardo Gandara; Richard G Pestell; Federica Sotgia; Nancy J Philp; Michael P Lisanti
Journal:  Cell Cycle       Date:  2011-06-01       Impact factor: 4.534

8.  Cancer cells metabolically "fertilize" the tumor microenvironment with hydrogen peroxide, driving the Warburg effect: implications for PET imaging of human tumors.

Authors:  Ubaldo E Martinez-Outschoorn; Zhao Lin; Casey Trimmer; Neal Flomenberg; Chenguang Wang; Stephanos Pavlides; Richard G Pestell; Anthony Howell; Federica Sotgia; Michael P Lisanti
Journal:  Cell Cycle       Date:  2011-08-01       Impact factor: 4.534

9.  Methylation of the tumor suppressor protein, BRCA1, influences its transcriptional cofactor function.

Authors:  Irene Guendel; Lawrence Carpio; Caitlin Pedati; Arnold Schwartz; Christine Teal; Fatah Kashanchi; Kylene Kehn-Hall
Journal:  PLoS One       Date:  2010-06-29       Impact factor: 3.240

10.  CpG island hypermethylation of BRCA1 and loss of pRb as co-occurring events in basal/triple-negative breast cancer.

Authors:  Olafur Andri Stefansson; Jon Gunnlaugur Jonasson; Kristrun Olafsdottir; Holmfridur Hilmarsdottir; Gudridur Olafsdottir; Manel Esteller; Oskar Thor Johannsson; Jorunn Erla Eyfjord
Journal:  Epigenetics       Date:  2011-05       Impact factor: 4.528

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  36 in total

1.  Inhibition of GSK-3β activity can result in drug and hormonal resistance and alter sensitivity to targeted therapy in MCF-7 breast cancer cells.

Authors:  Melissa Sokolosky; William H Chappell; Kristin Stadelman; Stephen L Abrams; Nicole M Davis; Linda S Steelman; James A McCubrey
Journal:  Cell Cycle       Date:  2014-01-09       Impact factor: 4.534

2.  Perspective: Do Fasting, Caloric Restriction, and Diets Increase Sensitivity to Radiotherapy? A Literature Review.

Authors:  Philippe Icard; Luc Ollivier; Patricia Forgez; Joelle Otz; Marco Alifano; Ludovic Fournel; Mauro Loi; Juliette Thariat
Journal:  Adv Nutr       Date:  2020-09-01       Impact factor: 8.701

Review 3.  Breast Cancer Metabolism.

Authors:  Jessica Tan; Anne Le
Journal:  Adv Exp Med Biol       Date:  2018       Impact factor: 2.622

4.  BRCA1 Attenuates Progesterone Effects on Proliferation and NFκB Activation in Normal Human Mammary Epithelial Cells.

Authors:  H N Hilton; L J Patterson McDonald; N Santucci; F R van der Bent; A Silvestri; J D Graham; C L Clarke
Journal:  J Mammary Gland Biol Neoplasia       Date:  2019-05-18       Impact factor: 2.673

5.  Cigarette smoke metabolically promotes cancer, via autophagy and premature aging in the host stromal microenvironment.

Authors:  Ahmed F Salem; Mazhar Salim Al-Zoubi; Diana Whitaker-Menezes; Ubaldo E Martinez-Outschoorn; Rebecca Lamb; James Hulit; Anthony Howell; Ricardo Gandara; Marina Sartini; Ferruccio Galbiati; Generoso Bevilacqua; Federica Sotgia; Michael P Lisanti
Journal:  Cell Cycle       Date:  2013-02-06       Impact factor: 4.534

Review 6.  Oncogenes induce the cancer-associated fibroblast phenotype: metabolic symbiosis and "fibroblast addiction" are new therapeutic targets for drug discovery.

Authors:  Michael P Lisanti; Ubaldo E Martinez-Outschoorn; Federica Sotgia
Journal:  Cell Cycle       Date:  2013-07-30       Impact factor: 4.534

Review 7.  Deregulation of the EGFR/PI3K/PTEN/Akt/mTORC1 pathway in breast cancer: possibilities for therapeutic intervention.

Authors:  Nicole M Davis; Melissa Sokolosky; Kristin Stadelman; Steve L Abrams; Massimo Libra; Saverio Candido; Ferdinando Nicoletti; Jerry Polesel; Roberta Maestro; Antonino D'Assoro; Lyudmyla Drobot; Dariusz Rakus; Agnieszka Gizak; Piotr Laidler; Joanna Dulińska-Litewka; Joerg Basecke; Sanja Mijatovic; Danijela Maksimovic-Ivanic; Giuseppe Montalto; Melchiorre Cervello; Timothy L Fitzgerald; Zoya Demidenko; Alberto M Martelli; Lucio Cocco; Linda S Steelman; James A McCubrey
Journal:  Oncotarget       Date:  2014-07-15

Review 8.  Molecular mechanisms underlying chronic inflammation-associated cancers.

Authors:  Yongzhong Wu; Smitha Antony; Jennifer L Meitzler; James H Doroshow
Journal:  Cancer Lett       Date:  2013-08-26       Impact factor: 8.679

9.  CAF-like state in primary skin fibroblasts with constitutional BRCA1 epimutation sheds new light on tumor suppressor deficiency-related changes in healthy tissue.

Authors:  Anna Etzold; Danuta Galetzka; Eva Weis; Oliver Bartsch; Thomas Haaf; Claudia Spix; Timo Itzel; Susann Schweiger; Dennis Strand; Susanne Strand; Ulrich Zechner
Journal:  Epigenetics       Date:  2016-03-07       Impact factor: 4.528

10.  BRCA1 downregulates the kinase activity of Polo-like kinase 1 in response to replication stress.

Authors:  Jianqiu Zou; Khosrow Rezvani; Hongmin Wang; Kyung S Lee; Dong Zhang
Journal:  Cell Cycle       Date:  2013-07-15       Impact factor: 4.534

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