4.8 Article

Lactate inhibits ATP6V0d2 expression in tumor-associated macrophages to promote HIF-2α-mediated tumor progression

Journal

JOURNAL OF CLINICAL INVESTIGATION
Volume 129, Issue 2, Pages 631-646

Publisher

AMER SOC CLINICAL INVESTIGATION INC
DOI: 10.1172/JCI123027

Keywords

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Funding

  1. National Scientific Foundation of China (NSFC) [31470851, 81671539, 31870892]
  2. 973 Program [2013CB530505]
  3. NSFC [81725004]
  4. Integrated Innovative Team for Major Human Diseases Program of Tongji Medical College, HUST
  5. Crohn's and Colitis Foundation of America
  6. NATIONAL INSTITUTE OF ARTHRITIS AND MUSCULOSKELETAL AND SKIN DISEASES [ZIHAR041173] Funding Source: NIH RePORTER

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Macrophages perform key functions in tissue homeostasis that are influenced by the local tissue environment. Within the tumor microenvironment, tumor-associated macrophages can be altered to acquire properties that enhance tumor growth. Here, we found that lactate, a metabolite found in high concentration within the anaerobic tumor environment, activated mTORC1 that subsequently suppressed TFEB-mediated expression of the macrophage-specific vacuolar ATPase subunit ATP6V0d2. Atp6v0d2(-/-) mice were more susceptible to tumor growth, with enhanced HIF-2 alpha-mediated VEGF production in macrophages that display a more protumoral phenotype. We found that ATP6V0d2 targeted HIF-2 alpha but not HIF-1 alpha for lysosome-mediated degradation. Blockade of HIF-2 alpha transcriptional activity reversed the susceptibility of Atp6v0d2(-/-) mice to tumor development. Furthermore, in a cohort of patients with lung adenocarcinoma, expression of ATP6V0d2 and HIF-2 alpha was positively and negatively correlated with survival, respectively, suggesting a critical role of the macrophage lactate/ATP6V0d2/HIF-2 alpha axis in maintaining tumor growth in human patients. Together, our results highlight the ability of tumor cells to modify the function of tumor-infiltrating macrophages to optimize the microenvironment for tumor growth.

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