IFITM1 differentially regulates antibacterial immunity and immunopathology but is dispensable for antiparasitic responses
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Sibongiseni KL Poswayo Mumin Ozturk Rudranil Hazra Tony Fearns Christophe Queval Narjis Thawer Julius E Chia Agnes Malobela Reto Guler Ramona Hurdayal Frank Brombacher Maximiliano Gutierrez Suraj P PariharAbstract
Interferon-induced transmembrane (IFITM) proteins underpin antiviral responses, yet their role in bacterial infections remains underexplored, particularly for parasites. We probed the role of IFITM1 in Mycobacterium tuberculosis (Mtb), Listeria monocytogenes (Lm), and Leishmania major infection using IFITM1 knockout mice. Notably, IFITM1 was upregulated in murine and human macrophages, as well as in PBMCs during active tuberculosis (TB), subsiding with therapy. IFITM1 also accumulated in the lungs of outbred mice and macaques that progressed to TB. IFITM1-deficient mice displayed no differences in the acute phase; however, chronic Mtb infection revealed lower bacterial loads, mitigated lung pathology, dampened inflammatory cell recruitment, and decreased cytokines. IFITM1-/- macrophages curbed intracellular H37RV and HN878 growth, skewing proinflammatory cytokine (IL-1α, IL-1β, IL-6, and nitric oxide) production while phagosome maturation and autophagy remained unaffected. Furthermore, HN878-infected IFITM1-/- mice exhibited increased lung cell death by TUNEL staining, driving enhanced mortality. Lm similarly increased IFITM1 expression in macrophages, liver, and spleen. IFITM1-/- mice exhibited reduced early tissue burdens and serum IFN-γ, TNF, and IL-6, yet liver pathology escalated, driving mortality and suggesting dysregulated inflammation. These macrophages also limited intracellular Lm growth, with increased necrosis. By contrast, L. major footpad swelling and parasitic loads remained unaffected in knockout animals. Together, IFITM1 exacerbates TB and listeriosis pathology by calibrating inflammation against bacterial control, but plays no role in cutaneous leishmaniasis. These findings reveal IFITM1-specific contributions to bacterial but not parasitic infections, favoring disease tolerance.
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Journal of Immunology
Volume
215
Issue number
6
Pages
vkag122
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10.1093/jimmun/vkag122
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42252123
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42252123
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