Two Phases of Inflammatory Mediator Production Defined by the Study of IRAK2 and IRAK1 Knock-in Mice
JOURNAL OF IMMUNOLOGY
Authors: Pauls, Eduardo; Nanda, Sambit K.; Smith, Hilary; Toth, Rachel; Arthur, J. Simon C.; Cohen, Philip
Abstract
The roles of IL-1R-associated kinase (IRAK) 2 and IRAK1 in cytokine production were investigated using immune cells from knock-in mice expressing the TNFR-associated factor 6 (TRAF6) binding-defective mutant IRAK2[E525A] or the catalytically inactive IRAK1[D359A] mutant. In bone marrow-derived macrophages (BMDMs), the IRAK2-TRAF6 interaction was required for the late (2-8 h) but not the early phase (0-2 h) of il6 and tnfa mRNA production, and hence for IL-6 and TNF-alpha secretion by TLR agonists that signal via MyD88. Loss of the IRAK2-TRAF6 interaction had little effect on the MyD88-dependent production of anti-inflammatory molecules produced during the early phase, such as Dual Specificity Phosphatase 1, and a modest effect on IL-10 secretion. The LPS/TLR4-stimulated production of il6 and tnfa mRNA and IL-6 and TNF-alpha secretion was hardly affected, because the Toll/IL-1R domain-containing adapter-inducing IFN-beta (TRIF) signaling pathway was used instead of the IRAK2-TRAF6 interaction to sustain late-phase mRNA production. IRAK1 catalytic activity was not rate limiting for il6, tnfa, or il10 mRNA production or the secretion of these cytokines by BMDMs, but IFN-beta mRNA induction by TLR7 and TLR9 agonists was greatly delayed in plasmacytoid dendritic cells (pDCs) from IRAK1[D359A] mice. In contrast, IFN-beta mRNA production was little affected in pDCs from IRAK2[E525A] mice, but subsequent IFN-alpha mRNA production and IFN-alpha secretion were reduced. IFN-beta and IFN-alpha production were abolished in pDCs from IRAK1[D359A] 3 IRAK2[E525A] double knock-in mice. Our results establish that the IRAK2-TRAF6 interaction is rate limiting for the late, but not the early phase of cytokine production in BMDM and pDCs, and that the IRAK2-TRAF6 interaction is needed to sustain I kappa B-inducing kinase beta activity during prolonged activation of the MyD88 signaling.
A frequent hypofunctional IRAK2 variant is associated with reduced spontaneous hepatitis C virus clearance
HEPATOLOGY
Authors: Wang, Hui; El Maadidi, Souhayla; Fischer, Janett; Grabski, Elena; Dickhoefer, Sabine; Klimosch, Sascha; Flannery, Sinead M.; Filomena, Angela; Wolz, Olaf-Oliver; Schneiderhan-Marra, Nicole; Loeffler, Markus W.; Wiese, Manfred; Pichulik, Tica; Muellhaupt, Beat; Semela, David; Dufour, Jean-Francois; Bochud, Pierre-Yves; Bowie, Andrew G.; Kalinke, Ulrich; Berg, Thomas; Weber, Alexander N. R.
Abstract
Patients carrying very rare loss-of-function mutations in interleukin-1 receptor-associated kinase 4 (IRAK4), a critical signaling mediator in Toll-like receptor signaling, are severely immunodeficient, highlighting the paramount role of IRAK kinases in innate immunity. We discovered a comparatively frequent coding variant of the enigmatic human IRAK2, L392V (rs3844283), which is found homozygously in approximate to 15% of Caucasians, to be associated with a reduced ability to induce interferon-alpha in primary human plasmacytoid dendritic cells in response to hepatitis C virus (HCV). Cytokine production in response to purified Toll-like receptor agonists was also impaired. Additionally, rs3844283 was epidemiologically associated with a chronic course of HCV infection in two independent HCV cohorts and emerged as an independent predictor of chronic HCV disease. Mechanistically, IRAK2 L392V showed intact binding to, but impaired ubiquitination of, tumor necrosis factor receptor-associated factor 6, a vital step in signal transduction. Conclusion: Our study highlights IRAK2 and its genetic variants as critical factors and potentially novel biomarkers for human antiviral innate immunity. (Hepatology 2015;62:1375-1387)