4.7 Article

PERK is a critical metabolic hub for immunosuppressive function in macrophages

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NATURE IMMUNOLOGY
卷 23, 期 3, 页码 431-+

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NATURE PORTFOLIO
DOI: 10.1038/s41590-022-01145-x

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资金

  1. Immunology T32 Training Program [AI089474]
  2. Ministry of Science and Technology, Taiwan
  3. National Institutes of Health's National Cancer Institute K22 award [K22CA241290]
  4. Department of Microbial Infection and Immunity at Ohio State University
  5. Pelotonia Institute of Immuno-oncology at Ohio State University
  6. UNIL interdisciplinary grant
  7. European Research Council [802773-MitoGuide]
  8. SNSF [31003A_182470]
  9. Cancer Research Institute (CLIP investigator award)
  10. Cancer Research Institute (Lloyd J. Old STAR award)
  11. University of Lausanne (UNIL) interdisciplinary grant
  12. Cancer Research Institute CLIP Investigator Award
  13. VeloSano Pilot Award
  14. Case Comprehensive Cancer Center American Cancer Society pilot grants [IRG-91-022-19, IRG-16-186-21]
  15. Case GI SPORE DRP grant [5P50CA150964-08]
  16. Cleveland Digestive Research Core Center pilot grant [1P30DK097948]

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This study reveals the importance of PERK signaling and PSAT1-mediated serine metabolism in promoting the immunosuppressive function of M2 macrophages, providing new insights into the molecular mechanisms of immune cell suppressive phenotype.
Raines et al. examine the role of the PERK-mediated ER stress response in promoting and sustaining M2-like macrophages in type 2 immune response and in tumor immunity. Chronic inflammation triggers compensatory immunosuppression to stop inflammation and minimize tissue damage. Studies have demonstrated that endoplasmic reticulum (ER) stress augments the suppressive phenotypes of immune cells; however, the molecular mechanisms underpinning this process and how it links to the metabolic reprogramming of immunosuppressive macrophages remain elusive. In the present study, we report that the helper T cell 2 cytokine interleukin-4 and the tumor microenvironment increase the activity of a protein kinase RNA-like ER kinase (PERK)-signaling cascade in macrophages and promote immunosuppressive M2 activation and proliferation. Loss of PERK signaling impeded mitochondrial respiration and lipid oxidation critical for M2 macrophages. PERK activation mediated the upregulation of phosphoserine aminotransferase 1 (PSAT1) and serine biosynthesis via the downstream transcription factor ATF-4. Increased serine biosynthesis resulted in enhanced mitochondrial function and alpha-ketoglutarate production required for JMJD3-dependent epigenetic modification. Inhibition of PERK suppressed macrophage immunosuppressive activity and could enhance the efficacy of immune checkpoint programmed cell death protein 1 inhibition in melanoma. Our findings delineate a previously undescribed connection between PERK signaling and PSAT1-mediated serine metabolism critical for promoting immunosuppressive function in M2 macrophages.

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