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A New IRF-1–Driven Apoptotic Pathway Triggered by IL-4/IL-13 Kills Neonatal Th1 Cells and Weakens Protection against Viral Infection

Mindy M. Miller, Subhasis Barik, Alexis N. Cattin-Roy, Tobechukwu K. Ukah, Christine M. Hoeman and Habib Zaghouani
J Immunol April 17, 2019, ji1800943; DOI: https://doi.org/10.4049/jimmunol.1800943
Mindy M. Miller
*Department of Molecular Microbiology and Immunology, University of Missouri School of Medicine, Columbia MO 65212;
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Subhasis Barik
*Department of Molecular Microbiology and Immunology, University of Missouri School of Medicine, Columbia MO 65212;
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Alexis N. Cattin-Roy
*Department of Molecular Microbiology and Immunology, University of Missouri School of Medicine, Columbia MO 65212;
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Tobechukwu K. Ukah
*Department of Molecular Microbiology and Immunology, University of Missouri School of Medicine, Columbia MO 65212;
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Christine M. Hoeman
*Department of Molecular Microbiology and Immunology, University of Missouri School of Medicine, Columbia MO 65212;
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Habib Zaghouani
*Department of Molecular Microbiology and Immunology, University of Missouri School of Medicine, Columbia MO 65212;
†Department of Child Health, University of Missouri School of Medicine, Columbia MO 65212; and
‡Department of Neurology, University of Missouri School of Medicine, Columbia MO 65212
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Abstract

Early life immune responses are deficient in Th1 lymphocytes that compromise neonatal vaccination. We found that IL-4 and IL-13 engage a developmentally expressed IL-4Rα/IL-13Rα1 heteroreceptor to endow IFN regulatory factor 1 (IRF-1) with apoptotic functions, which redirect murine neonatal Th1 reactivation to cell death. IL-4/IL-13–induced STAT6 phosphorylation serves to enhance IRF-1 transcription and promotes its egress from the nucleus. In the cytoplasm, IRF-1 can no longer serve as an anti-viral transcription factor but, instead, colocalizes with Bim and instigates the mitochondrial, or intrinsic, death pathway. The new pivotal function of IRF-1 in the death of neonatal Th1 cells stems from the ability of its gene to bind STAT6 for enhanced transcription and the proficiency of its protein to precipitate Bim-driven apoptosis. This cytokine-induced, IRF-1–mediated developmental death network weakens neonatal Th1 responses during early life vaccination and increases susceptibility to viral infection.

Footnotes

  • This work was supported by Grants RO1 AI048541 and R21 HD060089 from the National Institutes of Health (to H.Z.), funds from the Leda J. Sears Trust, and the J. Lavenia Edwards Endowment. M.M.M. was supported by T32 Training Grant GM008396 from the National Institute of General Medical Sciences and by a Research Board grant from the University of Missouri.

  • The online version of this article contains supplemental material.

  • Received July 5, 2018.
  • Accepted March 21, 2019.
  • Copyright © 2019 by The American Association of Immunologists, Inc.
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The Journal of Immunology: 206 (5)
The Journal of Immunology
Vol. 206, Issue 5
1 Mar 2021
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A New IRF-1–Driven Apoptotic Pathway Triggered by IL-4/IL-13 Kills Neonatal Th1 Cells and Weakens Protection against Viral Infection
Mindy M. Miller, Subhasis Barik, Alexis N. Cattin-Roy, Tobechukwu K. Ukah, Christine M. Hoeman, Habib Zaghouani
The Journal of Immunology April 17, 2019, ji1800943; DOI: 10.4049/jimmunol.1800943

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A New IRF-1–Driven Apoptotic Pathway Triggered by IL-4/IL-13 Kills Neonatal Th1 Cells and Weakens Protection against Viral Infection
Mindy M. Miller, Subhasis Barik, Alexis N. Cattin-Roy, Tobechukwu K. Ukah, Christine M. Hoeman, Habib Zaghouani
The Journal of Immunology April 17, 2019, ji1800943; DOI: 10.4049/jimmunol.1800943
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Print ISSN 0022-1767        Online ISSN 1550-6606