4.8 Article

Treg Cells Promote the SREBP1-Dependent Metabolic Fitness of Tumor-Promoting Macrophages via Repression of CD8+ T Cell-Derived Interferon-γ

Journal

IMMUNITY
Volume 51, Issue 2, Pages 381-+

Publisher

CELL PRESS
DOI: 10.1016/j.immuni.2019.06.017

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Funding

  1. NIH [CA203689]
  2. NCI Comprehensive Cancer Center Support CORE grant [CA047904]
  3. UPSOM Unified Flow Core [1S10 ERR019142 01]

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Regulatory T (Treg) cells are crucial for immune homeostasis, but they also contribute to tumor immune evasion by promoting a suppressive tumor microenvironment (TME). Mice with Treg cell-restricted Neuropilin-1 deficiency show tumor resistance while maintaining peripheral immune homeostasis, thereby providing a controlled system to interrogate the impact of intratumoral Treg cells on the TME. Using this and other genetic models, we showed that Treg cells shaped the transcriptional landscape across multiple tumor-infiltrating immune cell types. Treg cells suppressed CD8(+) T cell secretion of interferon-gamma (IFN gamma), which would otherwise block the activation of sterol regulatory element-binding protein 1 (SREBP1)mediated fatty acid synthesis in immunosuppressive (M2-like) tumor-associated macrophages (TAMs). Thus, Treg cells indirectly but selectively sustained M2-like TAM metabolic fitness, mitochondria! integrity, and survival. SREBP1 inhibition augmented the efficacy of immune checkpoint blockade, suggesting that targeting Treg cells or their modulation of lipid metabolism in M2-like TAMs could improve cancer immunotherapy.

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