<p>CD4<sup>+</sup>IFN-γ<sup>+</sup>IL-17<sup>+</sup> T cells and their secreted cytokines play a critical role in the anti-mycobacterial response. However, the underlying synergistic mechanism of IFN-γ and IL-17 is little known. This study demonstrates that the downregulation of coronin-1A retention on the phagosome is a synergistic pathway for IFN-γ and IL-17 that kills <i>Mycobacterium tuberculosis</i> (Mtb) in macrophages. IL-17 alone does not play a role in intracellular Mtb killing but potentiates the anti-mycobactericidal pathway of IFN-γ. Co-treatment of IFN-γ/IL-17 inhibited phosphorylation of STAT3, induced LRG47 expression, and reduced retention of coronin-1A on phagosome, thereby eliciting phagolysosomal fusion and bacterial killing, which was proved through response analysis of IFN-γ/IL-17 in Mtb-infected macrophages transfected with small interfering RNA of <i>coro1a</i>, <i>lrg47</i>, or <i>stat1</i>. Determination of adjunctive therapeutic effect of IFN-γ, IL-17, or both with anti-mycobacterial drugs showed that the bacterial load in the tissue of mice co-treated with IFN-γ/IL-17, even at 1 ng/mL concentration each, was more rapidly reduced compared to those of IFN-γ injection or chemotherapy alone. It inhibited the re-growth after treatment termination. Our results shed new light on the synergistic mechanisms of IFN-γ/IL-17 for anti-mycobacterial responses, which might be targeted as an adjunctive chemotherapeutic method against tuberculosis.</p>

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IFN-γ and IL-17 elicit synergistic anti-mycobacterial responses by inhibiting coronin-1A retention

  • Hye-Soo Park,
  • Thuy An Pham,
  • ZongYou Jiang,
  • Seunga Choi,
  • Yong Woo Back,
  • In-Taek Jang,
  • Ki Won Shin,
  • Yeo-Jin Son,
  • Han-Gyu Choi,
  • Hwa-Jung Kim

摘要

CD4+IFN-γ+IL-17+ T cells and their secreted cytokines play a critical role in the anti-mycobacterial response. However, the underlying synergistic mechanism of IFN-γ and IL-17 is little known. This study demonstrates that the downregulation of coronin-1A retention on the phagosome is a synergistic pathway for IFN-γ and IL-17 that kills Mycobacterium tuberculosis (Mtb) in macrophages. IL-17 alone does not play a role in intracellular Mtb killing but potentiates the anti-mycobactericidal pathway of IFN-γ. Co-treatment of IFN-γ/IL-17 inhibited phosphorylation of STAT3, induced LRG47 expression, and reduced retention of coronin-1A on phagosome, thereby eliciting phagolysosomal fusion and bacterial killing, which was proved through response analysis of IFN-γ/IL-17 in Mtb-infected macrophages transfected with small interfering RNA of coro1a, lrg47, or stat1. Determination of adjunctive therapeutic effect of IFN-γ, IL-17, or both with anti-mycobacterial drugs showed that the bacterial load in the tissue of mice co-treated with IFN-γ/IL-17, even at 1 ng/mL concentration each, was more rapidly reduced compared to those of IFN-γ injection or chemotherapy alone. It inhibited the re-growth after treatment termination. Our results shed new light on the synergistic mechanisms of IFN-γ/IL-17 for anti-mycobacterial responses, which might be targeted as an adjunctive chemotherapeutic method against tuberculosis.