Circulating NK cells establish tissue residency upon acute infection of skin and mediate accelerated effector responses to secondary infection

Tommaso Torcellan(University of Würzburg), Christin Friedrich(University of Würzburg), Rémi Doucet-Ladevèze(University of Würzburg), Thomas Ossner(Max Planck Institute of Immunobiology and Epigenetics), Virgínia Visaconill Solé(University of Würzburg), Sofie Riedmann(University of Würzburg), Milas Ugur(University of Würzburg), Fabian Imdahl(Helmholtz Institute for RNA-based Infection Research), Stephan P. Rosshart(Universitätsklinikum Erlangen), Sebastian J. Arnold(University of Freiburg), Mercedes Gomez de Agüero(University of Würzburg), Nicola Gagliani(University Medical Center Hamburg-Eppendorf), Richard A. Flavell(Howard Hughes Medical Institute), Simone Backes(University of Würzburg), Wolfgang Kastenmüller(University of Würzburg), Georg Gasteiger(University of Würzburg)
Immunity
December 28, 2023
Cited by 84Open Access
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Abstract

Natural killer (NK) cells are present in the circulation and can also be found residing in tissues, and these populations exhibit distinct developmental requirements and are thought to differ in terms of ontogeny. Here, we investigate whether circulating conventional NK (cNK) cells can develop into long-lived tissue-resident NK (trNK) cells following acute infections. We found that viral and bacterial infections of the skin triggered the recruitment of cNK cells and their differentiation into Tcf1hiCD69hi trNK cells that share transcriptional similarity with CD56brightTCF1hi NK cells in human tissues. Skin trNK cells arose from interferon (IFN)-γ-producing effector cells and required restricted expression of the transcriptional regulator Blimp1 to optimize Tcf1-dependent trNK cell formation. Upon secondary infection, trNK cells rapidly gained effector function and mediated an accelerated NK cell response. Thus, cNK cells redistribute and permanently position at sites of previous infection via a mechanism promoting tissue residency that is distinct from Hobit-dependent developmental paths of NK cells and ILC1 seeding tissues during ontogeny.


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