Tumor microenvironment derived exosomes pleiotropically modulate cancer cell metabolism. 2016

Hongyun Zhao, and Lifeng Yang, and Joelle Baddour, and Abhinav Achreja, and Vincent Bernard, and Tyler Moss, and Juan C Marini, and Thavisha Tudawe, and Elena G Seviour, and F Anthony San Lucas, and Hector Alvarez, and Sonal Gupta, and Sourindra N Maiti, and Laurence Cooper, and Donna Peehl, and Prahlad T Ram, and Anirban Maitra, and Deepak Nagrath
Laboratory for Systems Biology of Human Diseases, Rice University, Houston, United States.

Cancer-associated fibroblasts (CAFs) are a major cellular component of tumor microenvironment in most solid cancers. Altered cellular metabolism is a hallmark of cancer, and much of the published literature has focused on neoplastic cell-autonomous processes for these adaptations. We demonstrate that exosomes secreted by patient-derived CAFs can strikingly reprogram the metabolic machinery following their uptake by cancer cells. We find that CAF-derived exosomes (CDEs) inhibit mitochondrial oxidative phosphorylation, thereby increasing glycolysis and glutamine-dependent reductive carboxylation in cancer cells. Through 13C-labeled isotope labeling experiments we elucidate that exosomes supply amino acids to nutrient-deprived cancer cells in a mechanism similar to macropinocytosis, albeit without the previously described dependence on oncogenic-Kras signaling. Using intra-exosomal metabolomics, we provide compelling evidence that CDEs contain intact metabolites, including amino acids, lipids, and TCA-cycle intermediates that are avidly utilized by cancer cells for central carbon metabolism and promoting tumor growth under nutrient deprivation or nutrient stressed conditions.

UI MeSH Term Description Entries
D009369 Neoplasms New abnormal growth of tissue. Malignant neoplasms show a greater degree of anaplasia and have the properties of invasion and metastasis, compared to benign neoplasms. Benign Neoplasm,Cancer,Malignant Neoplasm,Tumor,Tumors,Benign Neoplasms,Malignancy,Malignant Neoplasms,Neoplasia,Neoplasm,Neoplasms, Benign,Cancers,Malignancies,Neoplasias,Neoplasm, Benign,Neoplasm, Malignant,Neoplasms, Malignant
D010085 Oxidative Phosphorylation Electron transfer through the cytochrome system liberating free energy which is transformed into high-energy phosphate bonds. Phosphorylation, Oxidative,Oxidative Phosphorylations,Phosphorylations, Oxidative
D005285 Fermentation Anaerobic degradation of GLUCOSE or other organic nutrients to gain energy in the form of ATP. End products vary depending on organisms, substrates, and enzymatic pathways. Common fermentation products include ETHANOL and LACTIC ACID. Fermentations
D005347 Fibroblasts Connective tissue cells which secrete an extracellular matrix rich in collagen and other macromolecules. Fibroblast
D005947 Glucose A primary source of energy for living organisms. It is naturally occurring and is found in fruits and other parts of plants in its free state. It is used therapeutically in fluid and nutrient replacement. Dextrose,Anhydrous Dextrose,D-Glucose,Glucose Monohydrate,Glucose, (DL)-Isomer,Glucose, (alpha-D)-Isomer,Glucose, (beta-D)-Isomer,D Glucose,Dextrose, Anhydrous,Monohydrate, Glucose
D006019 Glycolysis A metabolic process that converts GLUCOSE into two molecules of PYRUVIC ACID through a series of enzymatic reactions. Energy generated by this process is conserved in two molecules of ATP. Glycolysis is the universal catabolic pathway for glucose, free glucose, or glucose derived from complex CARBOHYDRATES, such as GLYCOGEN and STARCH. Embden-Meyerhof Pathway,Embden-Meyerhof-Parnas Pathway,Embden Meyerhof Parnas Pathway,Embden Meyerhof Pathway,Embden-Meyerhof Pathways,Pathway, Embden-Meyerhof,Pathway, Embden-Meyerhof-Parnas,Pathways, Embden-Meyerhof
D055354 Exosomes A type of extracellular vesicle, containing RNA and proteins, that is secreted into the extracellular space by EXOCYTOSIS when MULTIVESICULAR BODIES fuse with the PLASMA MEMBRANE.
D059016 Tumor Microenvironment The milieu surrounding neoplasms consisting of cells, vessels, soluble factors, and molecules, that can influence and be influenced by, the neoplasm's growth. Cancer Microenvironment,Cancer Microenvironments,Microenvironment, Cancer,Microenvironment, Tumor,Microenvironments, Cancer,Microenvironments, Tumor,Tumor Microenvironments
D019344 Lactic Acid A normal intermediate in the fermentation (oxidation, metabolism) of sugar. The concentrated form is used internally to prevent gastrointestinal fermentation. (From Stedman, 26th ed) Lactate,2-Hydroxypropanoic Acid,2-Hydroxypropionic Acid,Ammonium Lactate,D-Lactic Acid,L-Lactic Acid,Propanoic Acid, 2-Hydroxy-, (2R)-,Propanoic Acid, 2-Hydroxy-, (2S)-,Sarcolactic Acid,2 Hydroxypropanoic Acid,2 Hydroxypropionic Acid,D Lactic Acid,L Lactic Acid,Lactate, Ammonium

Related Publications

Hongyun Zhao, and Lifeng Yang, and Joelle Baddour, and Abhinav Achreja, and Vincent Bernard, and Tyler Moss, and Juan C Marini, and Thavisha Tudawe, and Elena G Seviour, and F Anthony San Lucas, and Hector Alvarez, and Sonal Gupta, and Sourindra N Maiti, and Laurence Cooper, and Donna Peehl, and Prahlad T Ram, and Anirban Maitra, and Deepak Nagrath
January 2022, Frontiers in cell and developmental biology,
Hongyun Zhao, and Lifeng Yang, and Joelle Baddour, and Abhinav Achreja, and Vincent Bernard, and Tyler Moss, and Juan C Marini, and Thavisha Tudawe, and Elena G Seviour, and F Anthony San Lucas, and Hector Alvarez, and Sonal Gupta, and Sourindra N Maiti, and Laurence Cooper, and Donna Peehl, and Prahlad T Ram, and Anirban Maitra, and Deepak Nagrath
November 2022, Cancer letters,
Hongyun Zhao, and Lifeng Yang, and Joelle Baddour, and Abhinav Achreja, and Vincent Bernard, and Tyler Moss, and Juan C Marini, and Thavisha Tudawe, and Elena G Seviour, and F Anthony San Lucas, and Hector Alvarez, and Sonal Gupta, and Sourindra N Maiti, and Laurence Cooper, and Donna Peehl, and Prahlad T Ram, and Anirban Maitra, and Deepak Nagrath
August 2019, Journal of hematology & oncology,
Hongyun Zhao, and Lifeng Yang, and Joelle Baddour, and Abhinav Achreja, and Vincent Bernard, and Tyler Moss, and Juan C Marini, and Thavisha Tudawe, and Elena G Seviour, and F Anthony San Lucas, and Hector Alvarez, and Sonal Gupta, and Sourindra N Maiti, and Laurence Cooper, and Donna Peehl, and Prahlad T Ram, and Anirban Maitra, and Deepak Nagrath
January 2024, Cancer immunology, immunotherapy : CII,
Hongyun Zhao, and Lifeng Yang, and Joelle Baddour, and Abhinav Achreja, and Vincent Bernard, and Tyler Moss, and Juan C Marini, and Thavisha Tudawe, and Elena G Seviour, and F Anthony San Lucas, and Hector Alvarez, and Sonal Gupta, and Sourindra N Maiti, and Laurence Cooper, and Donna Peehl, and Prahlad T Ram, and Anirban Maitra, and Deepak Nagrath
March 2018, The FEBS journal,
Hongyun Zhao, and Lifeng Yang, and Joelle Baddour, and Abhinav Achreja, and Vincent Bernard, and Tyler Moss, and Juan C Marini, and Thavisha Tudawe, and Elena G Seviour, and F Anthony San Lucas, and Hector Alvarez, and Sonal Gupta, and Sourindra N Maiti, and Laurence Cooper, and Donna Peehl, and Prahlad T Ram, and Anirban Maitra, and Deepak Nagrath
April 2024, Chinese journal of cancer research = Chung-kuo yen cheng yen chiu,
Hongyun Zhao, and Lifeng Yang, and Joelle Baddour, and Abhinav Achreja, and Vincent Bernard, and Tyler Moss, and Juan C Marini, and Thavisha Tudawe, and Elena G Seviour, and F Anthony San Lucas, and Hector Alvarez, and Sonal Gupta, and Sourindra N Maiti, and Laurence Cooper, and Donna Peehl, and Prahlad T Ram, and Anirban Maitra, and Deepak Nagrath
March 2023, Biomedicines,
Hongyun Zhao, and Lifeng Yang, and Joelle Baddour, and Abhinav Achreja, and Vincent Bernard, and Tyler Moss, and Juan C Marini, and Thavisha Tudawe, and Elena G Seviour, and F Anthony San Lucas, and Hector Alvarez, and Sonal Gupta, and Sourindra N Maiti, and Laurence Cooper, and Donna Peehl, and Prahlad T Ram, and Anirban Maitra, and Deepak Nagrath
June 2008, Journal of immunology (Baltimore, Md. : 1950),
Hongyun Zhao, and Lifeng Yang, and Joelle Baddour, and Abhinav Achreja, and Vincent Bernard, and Tyler Moss, and Juan C Marini, and Thavisha Tudawe, and Elena G Seviour, and F Anthony San Lucas, and Hector Alvarez, and Sonal Gupta, and Sourindra N Maiti, and Laurence Cooper, and Donna Peehl, and Prahlad T Ram, and Anirban Maitra, and Deepak Nagrath
December 2021, Nutrients,
Hongyun Zhao, and Lifeng Yang, and Joelle Baddour, and Abhinav Achreja, and Vincent Bernard, and Tyler Moss, and Juan C Marini, and Thavisha Tudawe, and Elena G Seviour, and F Anthony San Lucas, and Hector Alvarez, and Sonal Gupta, and Sourindra N Maiti, and Laurence Cooper, and Donna Peehl, and Prahlad T Ram, and Anirban Maitra, and Deepak Nagrath
July 2020, Carcinogenesis,
Copied contents to your clipboard!