4.7 Article

Arginase 1 is an innate lymphoid-cell-intrinsic metabolic checkpoint controlling type 2 inflammation

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NATURE IMMUNOLOGY
卷 17, 期 6, 页码 656-+

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NATURE PORTFOLIO
DOI: 10.1038/ni.3421

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资金

  1. National Institutes of Health (NIH) [AI061570, AI087990, AI074878, AI083480, AI095466, AI095608, AI102942, AI097333, T32-AI007532, CA181125, AI091965, HL087115, HL081619, HL096845, HL115354, HL114626, HL116656, HL090021, K23-HL121406]
  2. Burroughs Wellcome Fund
  3. Crohn's AMP
  4. Colitis Foundation of America
  5. Edmond J. Safra Foundation/Cancer Research Institute
  6. National Science Foundation [DGE-1143954]
  7. Robert Wood Johnson Foundation [AMFDP 70640]
  8. Thoracic Surgery Foundation
  9. German Research Foundation (DFG-project 11) [SFB 873]

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Group 2 innate lymphoid cells (ILC2s) regulate tissue inflammation and repair after activation by cell-extrinsic factors such as host-derived cytokines. However, the cell-intrinsic metabolic pathways that control ILC2 function are undefined. Here we demonstrate that expression of the enzyme arginase-1 (Arg1) during acute or chronic lung inflammation is a conserved trait of mouse and human ILC2s. Deletion of mouse ILC-intrinsic Arg1 abrogated type 2 lung inflammation by restraining ILC2 proliferation and dampening cytokine production. Mechanistically, inhibition of Arg1 enzymatic activity disrupted multiple components of ILC2 metabolic programming by altering arginine catabolism, impairing polyamine biosynthesis and reducing aerobic glycolysis. These data identify Arg1 as a key regulator of ILC2 bioenergetics that controls proliferative capacity and proinflammatory functions promoting type 2 inflammation.

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