Regulation of murine natural killer cell commitment
FRONTIERS IN IMMUNOLOGY
Authors: Huntington, Nicholas D.; Nutt, Stephen L.; Carotta, Sebastian
Abstract
Natural killer (NK) cells can derive from the same precursors as B and T cells, however, to achieve lineage specificity, several transcription factors need to be activated or annulled. While a few important transcription factors have been identified for NK genesis the mechanisms of how this is achieved is far from resolved. Adding to the complexity of this, NK cells are found and potentially develop in diverse locations in vivo and it remains to be addressed if a common NK cell precursor seeds diverse niches and how transcription factors may differentially regulate NK cell commitment in distinct microenvironments. Here we will summarize some recent findings in NK cell commitment and discuss how a NK cell transcriptional network might be organized, while addressing some misconceptions and anomalies along the way.
Type I Interferon Protects Antiviral CD8(+) T Cells from NK Cell Cytotoxicity
IMMUNITY
Authors: Xu, Haifeng C.; Grusdat, Melanie; Pandyra, Aleksandra A.; Polz, Robin; Huang, Jun; Sharma, Piyush; Deenen, Rene; Koehrer, Karl; Rahbar, Ramtin; Diefenbach, Andreas; Gibbert, Kathrin; Loehning, Max; Hoecker, Lena; Waibler, Zoe; Haeussinger, Dieter; Mak, Tak W.; Ohashi, Pamela S.; Lang, Karl S.; Lang, Philipp A.
Abstract
Despite development of new antiviral drugs, viral infections are still a major health problem. The most potent antiviral defense mechanism is the innate production of type I interferon (IFN-I), which not only limits virus replication but also promotes antiviral T cell immunity through mechanisms, which remain insufficiently studied. Using the murine lymphocytic choriomeningitis virus model system, we show here that IFN-I signaling on T cells prevented their rapid elimination in vivo. Microarray analyses uncovered that IFN-I triggered the expression of selected inhibitory NK-cell-receptor ligands. Consequently, T cell immunity of IFN-I receptor (IFNAR)-deficient T cells could be restored by NK cell depletion or in NK-cell-deficient hosts (Nfil3(-/-)).The elimination of Ifnar1(-/-) T cells was dependent on NK-cell-mediated perforin expression. In summary, we identified IFN-I as a key player regulating the protection of T cells against regulatory NK cell function.