4.8 Article

MAIT cells protect against pulmonary Legionella longbeachae infection

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NATURE COMMUNICATIONS
卷 9, 期 -, 页码 -

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NATURE RESEARCH
DOI: 10.1038/s41467-018-05202-8

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资金

  1. National Health and Medical Research Council of Australia (NHMRC) Program [1113293, 1016629, 606788, 1120467]
  2. ARC Centre of Excellence [CE140100011]
  3. Merieux Research Grant
  4. Wellcome Trust Postdoctoral Research Fellowship [104553/z/14/z]
  5. ARC Future Fellowship
  6. ARC DECRA Fellowship
  7. NHMRC Senior Principal Research Fellowship [1117766]
  8. Australian ARC Laureate Fellowship
  9. NHMRC Senior Principal Research Fellowship
  10. Melbourne International Engagement Award (University of Melbourne)
  11. Melbourne International Research Scholarship
  12. Melbourne International Fee Remission Scholarship (University of Melbourne)
  13. National Health and Medical Research Council of Australia [1120467] Funding Source: NHMRC

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Mucosal associated invariant T (MAIT) cells recognise conserved microbial metabolites from riboflavin synthesis. Striking evolutionary conservation and pulmonary abundance implicate them in antibacterial host defence, yet their functions in protection against clinically important pathogens are unknown. Here we show that mouse Legionella longbeachae infection induces MR1-dependent MAIT cell activation and rapid pulmonary accumulation of MAIT cells associated with immune protection detectable in immunocompetent host animals. MAIT cell protection is more evident in mice lacking CD4(+) cells, and adoptive transfer of MAIT cells rescues immunodeficient Rag2(-/-)gamma C-/- mice from lethal Legionella infection. Protection is dependent on MR1, IFN-gamma and GM-CSF, but not IL-17A, TNF or perforin, and enhanced protection is detected earlier after infection of mice antigen-primed to boost MAIT cell numbers before infection. Our findings define a function for MAIT cells in protection against a major human pathogen and indicate a potential role for vaccination to enhance MAIT cell immunity.

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