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DePauw, T. A.

Publications and source records attributed to DePauw, T. A..

2 recordsLinked to original sources

Steady-state, therapeutic, and helminth-induced IL-4 compromise protective CD8 T cell bystander activation

Memory CD8 T cells (Tmem) can be activated into innate-like killers by cytokines like IL-12, IL-15, and/or IL-18; but mechanisms regulating this phenomenon (termed bystander activation) are not fully resolved. We found strain-intrinsic deficiencies in bystander activation using specific pathogen-free mice, whereby basal IL-4 signals antagonize IL-18 sensing. We show that therapeutic and helminth-induced IL-4 impairs protective bystander-mediated responses against pathogens. However, this IL-4/IL-18 axis does not completely abolish bystander activation but rather tunes the expression of direct versus indirect mediators of cytotoxicity (granzymes and interferon-{gamma}, respectively). We show that antigen-experience overrides strain-specific deficiencies in bystander activation, leading to uniform IL-18 receptor expression and enhanced capacity for bystander activation/cytotoxicity. Our data highlight that bystander activation is not a binary process but tuned/deregulated by other cytokines that are elevated by contemporaneous infections. Further, our findings underscore the importance of antigen-experienced Tmem to dissect the contributions of bystander Tmem in health and disease.

immunology↗

Collaboration between IL-7 and IL-15 enables adaptation of tissue-resident and circulating memory CD8+ T cells

Interleukin-7 (IL-7) is considered a critical regulator of memory CD8+ T cell homeostasis, but this is primarily based on analysis of circulating and not tissue-resident memory (TRM) subsets. Furthermore, the cell-intrinsic requirement for IL-7 signaling during memory homeostasis has not been directly tested. Using inducible deletion, we found that Il7ra loss had only a modest effect on persistence of circulating memory and TRM subsets and that IL-7R was primarily required for normal basal proliferation. Loss of IL-15 signaling imposed heightened IL-7R dependence on memory CD8+ T cells, including TRM populations previously described as IL-15-independent. In the absence of IL-15 signaling, IL-7R was upregulated, and loss of IL-7R signaling reduced proliferation in response to IL-15, suggesting cross-regulation in memory CD8+ T cells. Thus, across subsets and tissues, IL-7 and IL-15 act in concert to support memory CD8+ T cells, conferring resilience to altered availability of either cytokine. HighlightsTissue-resident and circulating memory CD8+ T cells modestly decline after loss of IL-7R IL-7R is required for normal self-renewal of memory CD8+ T cells Combined loss of IL-7 and IL-15 causes a profound defect across memory CD8+ T cell subsets Cross-regulation of IL-7 and IL-15 signaling occurs in memory CD8+ T cells O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=70 SRC="FIGDIR/small/596695v1_ufig1.gif" ALT="Figure 1"> View larger version (17K): org.highwire.dtl.DTLVardef@8e439corg.highwire.dtl.DTLVardef@1f8e42forg.highwire.dtl.DTLVardef@14cfceforg.highwire.dtl.DTLVardef@171e4eb_HPS_FORMAT_FIGEXP M_FIG C_FIG

immunology↗