Cargando…

Transcriptional evidence for the "Reverse Warburg Effect" in human breast cancer tumor stroma and metastasis: Similarities with oxidative stress, inflammation, Alzheimer's disease, and "Neuron-Glia Metabolic Coupling"

Caveolin-1 (-/-) null stromal cells are a novel genetic model for cancer-associated fibroblasts and myofibroblasts. Here, we used an unbiased informatics analysis of transcriptional gene profiling to show that Cav-1 (-/-) bone-marrow derived stromal cells bear a striking resemblance to the activated...

Descripción completa

Detalles Bibliográficos
Autores principales: Pavlides, Stephanos, Tsirigos, Aristotelis, Vera, Iset, Flomenberg, Neal, Frank, Philippe G., Casimiro, Mathew C., Wang, Chenguang, Pestell, Richard G., Martinez-Outschoorn, Ubaldo E., Howell, Anthony, Sotgia, Federica, Lisanti, Michael P.
Formato: Texto
Lenguaje:English
Publicado: Impact Journals LLC 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2881509/
https://www.ncbi.nlm.nih.gov/pubmed/20442453
_version_ 1782182126869807104
author Pavlides, Stephanos
Tsirigos, Aristotelis
Vera, Iset
Flomenberg, Neal
Frank, Philippe G.
Casimiro, Mathew C.
Wang, Chenguang
Pestell, Richard G.
Martinez-Outschoorn, Ubaldo E.
Howell, Anthony
Sotgia, Federica
Lisanti, Michael P.
author_facet Pavlides, Stephanos
Tsirigos, Aristotelis
Vera, Iset
Flomenberg, Neal
Frank, Philippe G.
Casimiro, Mathew C.
Wang, Chenguang
Pestell, Richard G.
Martinez-Outschoorn, Ubaldo E.
Howell, Anthony
Sotgia, Federica
Lisanti, Michael P.
author_sort Pavlides, Stephanos
collection PubMed
description Caveolin-1 (-/-) null stromal cells are a novel genetic model for cancer-associated fibroblasts and myofibroblasts. Here, we used an unbiased informatics analysis of transcriptional gene profiling to show that Cav-1 (-/-) bone-marrow derived stromal cells bear a striking resemblance to the activated tumor stroma of human breast cancers. More specifically, the transcriptional profiles of Cav-1 (-/-) stromal cells were most closely related to the primary tumor stroma of breast cancer patients that had undergone lymph-node (LN) metastasis. This is consistent with previous morphological data demonstrating that a loss of stromal Cav-1 protein (by immuno-histochemical staining in the fibroblast compartment) is significantly associated with increased LN-metastasis. We also provide evidence that the tumor stroma of human breast cancers shows a transcriptional shift towards oxidative stress, DNA damage/repair, inflammation, hypoxia, and aerobic glycolysis, consistent with the "Reverse Warburg Effect". Finally, the tumor stroma of "metastasis-prone" breast cancer patients was most closely related to the transcriptional profiles derived from the brains of patients with Alzheimer's disease. This suggests that certain fundamental biological processes are common to both an activated tumor stroma and neuro-degenerative stress. These processes may include oxidative stress, NO over-production (peroxynitrite formation), inflammation, hypoxia, and mitochondrial dysfunction, which are thought to occur in Alzheimer's disease pathology. Thus, a loss of Cav-1 expression in cancer-associated myofibroblasts may be a protein biomarker for oxidative stress, aerobic glycolysis, and inflammation, driving the "Reverse Warburg Effect" in the tumor micro-environment and cancer cell metastasis.
format Text
id pubmed-2881509
institution National Center for Biotechnology Information
language English
publishDate 2010
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-28815092010-06-07 Transcriptional evidence for the "Reverse Warburg Effect" in human breast cancer tumor stroma and metastasis: Similarities with oxidative stress, inflammation, Alzheimer's disease, and "Neuron-Glia Metabolic Coupling" Pavlides, Stephanos Tsirigos, Aristotelis Vera, Iset Flomenberg, Neal Frank, Philippe G. Casimiro, Mathew C. Wang, Chenguang Pestell, Richard G. Martinez-Outschoorn, Ubaldo E. Howell, Anthony Sotgia, Federica Lisanti, Michael P. Aging (Albany NY) Research Article Caveolin-1 (-/-) null stromal cells are a novel genetic model for cancer-associated fibroblasts and myofibroblasts. Here, we used an unbiased informatics analysis of transcriptional gene profiling to show that Cav-1 (-/-) bone-marrow derived stromal cells bear a striking resemblance to the activated tumor stroma of human breast cancers. More specifically, the transcriptional profiles of Cav-1 (-/-) stromal cells were most closely related to the primary tumor stroma of breast cancer patients that had undergone lymph-node (LN) metastasis. This is consistent with previous morphological data demonstrating that a loss of stromal Cav-1 protein (by immuno-histochemical staining in the fibroblast compartment) is significantly associated with increased LN-metastasis. We also provide evidence that the tumor stroma of human breast cancers shows a transcriptional shift towards oxidative stress, DNA damage/repair, inflammation, hypoxia, and aerobic glycolysis, consistent with the "Reverse Warburg Effect". Finally, the tumor stroma of "metastasis-prone" breast cancer patients was most closely related to the transcriptional profiles derived from the brains of patients with Alzheimer's disease. This suggests that certain fundamental biological processes are common to both an activated tumor stroma and neuro-degenerative stress. These processes may include oxidative stress, NO over-production (peroxynitrite formation), inflammation, hypoxia, and mitochondrial dysfunction, which are thought to occur in Alzheimer's disease pathology. Thus, a loss of Cav-1 expression in cancer-associated myofibroblasts may be a protein biomarker for oxidative stress, aerobic glycolysis, and inflammation, driving the "Reverse Warburg Effect" in the tumor micro-environment and cancer cell metastasis. Impact Journals LLC 2010-03-31 /pmc/articles/PMC2881509/ /pubmed/20442453 Text en Copyright: ©2010 Pavlides et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Pavlides, Stephanos
Tsirigos, Aristotelis
Vera, Iset
Flomenberg, Neal
Frank, Philippe G.
Casimiro, Mathew C.
Wang, Chenguang
Pestell, Richard G.
Martinez-Outschoorn, Ubaldo E.
Howell, Anthony
Sotgia, Federica
Lisanti, Michael P.
Transcriptional evidence for the "Reverse Warburg Effect" in human breast cancer tumor stroma and metastasis: Similarities with oxidative stress, inflammation, Alzheimer's disease, and "Neuron-Glia Metabolic Coupling"
title Transcriptional evidence for the "Reverse Warburg Effect" in human breast cancer tumor stroma and metastasis: Similarities with oxidative stress, inflammation, Alzheimer's disease, and "Neuron-Glia Metabolic Coupling"
title_full Transcriptional evidence for the "Reverse Warburg Effect" in human breast cancer tumor stroma and metastasis: Similarities with oxidative stress, inflammation, Alzheimer's disease, and "Neuron-Glia Metabolic Coupling"
title_fullStr Transcriptional evidence for the "Reverse Warburg Effect" in human breast cancer tumor stroma and metastasis: Similarities with oxidative stress, inflammation, Alzheimer's disease, and "Neuron-Glia Metabolic Coupling"
title_full_unstemmed Transcriptional evidence for the "Reverse Warburg Effect" in human breast cancer tumor stroma and metastasis: Similarities with oxidative stress, inflammation, Alzheimer's disease, and "Neuron-Glia Metabolic Coupling"
title_short Transcriptional evidence for the "Reverse Warburg Effect" in human breast cancer tumor stroma and metastasis: Similarities with oxidative stress, inflammation, Alzheimer's disease, and "Neuron-Glia Metabolic Coupling"
title_sort transcriptional evidence for the "reverse warburg effect" in human breast cancer tumor stroma and metastasis: similarities with oxidative stress, inflammation, alzheimer's disease, and "neuron-glia metabolic coupling"
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2881509/
https://www.ncbi.nlm.nih.gov/pubmed/20442453
work_keys_str_mv AT pavlidesstephanos transcriptionalevidenceforthereversewarburgeffectinhumanbreastcancertumorstromaandmetastasissimilaritieswithoxidativestressinflammationalzheimersdiseaseandneurongliametaboliccoupling
AT tsirigosaristotelis transcriptionalevidenceforthereversewarburgeffectinhumanbreastcancertumorstromaandmetastasissimilaritieswithoxidativestressinflammationalzheimersdiseaseandneurongliametaboliccoupling
AT veraiset transcriptionalevidenceforthereversewarburgeffectinhumanbreastcancertumorstromaandmetastasissimilaritieswithoxidativestressinflammationalzheimersdiseaseandneurongliametaboliccoupling
AT flomenbergneal transcriptionalevidenceforthereversewarburgeffectinhumanbreastcancertumorstromaandmetastasissimilaritieswithoxidativestressinflammationalzheimersdiseaseandneurongliametaboliccoupling
AT frankphilippeg transcriptionalevidenceforthereversewarburgeffectinhumanbreastcancertumorstromaandmetastasissimilaritieswithoxidativestressinflammationalzheimersdiseaseandneurongliametaboliccoupling
AT casimiromathewc transcriptionalevidenceforthereversewarburgeffectinhumanbreastcancertumorstromaandmetastasissimilaritieswithoxidativestressinflammationalzheimersdiseaseandneurongliametaboliccoupling
AT wangchenguang transcriptionalevidenceforthereversewarburgeffectinhumanbreastcancertumorstromaandmetastasissimilaritieswithoxidativestressinflammationalzheimersdiseaseandneurongliametaboliccoupling
AT pestellrichardg transcriptionalevidenceforthereversewarburgeffectinhumanbreastcancertumorstromaandmetastasissimilaritieswithoxidativestressinflammationalzheimersdiseaseandneurongliametaboliccoupling
AT martinezoutschoornubaldoe transcriptionalevidenceforthereversewarburgeffectinhumanbreastcancertumorstromaandmetastasissimilaritieswithoxidativestressinflammationalzheimersdiseaseandneurongliametaboliccoupling
AT howellanthony transcriptionalevidenceforthereversewarburgeffectinhumanbreastcancertumorstromaandmetastasissimilaritieswithoxidativestressinflammationalzheimersdiseaseandneurongliametaboliccoupling
AT sotgiafederica transcriptionalevidenceforthereversewarburgeffectinhumanbreastcancertumorstromaandmetastasissimilaritieswithoxidativestressinflammationalzheimersdiseaseandneurongliametaboliccoupling
AT lisantimichaelp transcriptionalevidenceforthereversewarburgeffectinhumanbreastcancertumorstromaandmetastasissimilaritieswithoxidativestressinflammationalzheimersdiseaseandneurongliametaboliccoupling