Majoros Andrea, Platanitis Ekaterini, Szappanos Daniel, Cheon HyeonJoo, Vogl Claus, Shukla Priyank, Stark George R, Sexl Veronika, Schreiber Robert, Schindler Christian, Müller Mathias, Decker Thomas
Max F. Perutz Laboratories, University of Vienna, Vienna, Austria.
Department of Molecular Genetics and Proteomics Core, Lerner Research Institute Cleveland Clinic, Cleveland, OH, USA.
EMBO Rep. 2016 Mar;17(3):367-82. doi: 10.15252/embr.201540726. Epub 2016 Feb 12.
Signal transducer and activator of transcription 1 (STAT1) plays a pivotal role in the innate immune system by directing the transcriptional response to interferons (IFNs). STAT1 is activated by Janus kinase (JAK)-mediated phosphorylation of Y701. To determine whether STAT1 contributes to cellular responses without this phosphorylation event, we generated mice with Y701 mutated to a phenylalanine (Stat1(Y701F)). We show that heterozygous mice do not exhibit a dominant-negative phenotype. Homozygous Stat1(Y701F) mice show a profound reduction in Stat1 expression, highlighting an important role for basal IFN-dependent signaling. The rapid transcriptional response to type I IFN (IFN-I) and type II IFN (IFNγ) was absent in Stat1(Y701F) cells. Intriguingly, STAT1Y701F suppresses the delayed expression of IFN-I-stimulated genes (ISG) observed in Stat1(-/-) cells, mediated by the STAT2/IRF9 complex. Thus, Stat1(Y701F) macrophages are more susceptible to Legionella pneumophila infection than Stat1(-/-) macrophages. Listeria monocytogenes grew less robustly in Stat1(Y701F) macrophages and mice compared to Stat1(-/-) counterparts, but STAT1Y701F is not sufficient to rescue the animals. Our studies are consistent with a potential contribution of Y701-unphosphorylated STAT1 to innate antibacterial immunity.
信号转导和转录激活因子1(STAT1)通过引导对干扰素(IFN)的转录反应,在先天免疫系统中发挥关键作用。STAT1通过Janus激酶(JAK)介导的Y701位点磷酸化而被激活。为了确定STAT1在没有这种磷酸化事件的情况下是否对细胞反应有贡献,我们构建了Y701突变为苯丙氨酸的小鼠(Stat1(Y701F))。我们发现杂合子小鼠没有表现出显性负性表型。纯合子Stat1(Y701F)小鼠的Stat1表达显著降低,突出了基础IFN依赖性信号传导的重要作用。Stat1(Y701F)细胞对I型干扰素(IFN-I)和II型干扰素(IFNγ)没有快速的转录反应。有趣的是,STAT1Y701F抑制了在Stat1(-/-)细胞中观察到的由STAT2/IRF9复合物介导的IFN-I刺激基因(ISG)的延迟表达。因此,Stat1(Y701F)巨噬细胞比Stat1(-/-)巨噬细胞更容易受到嗜肺军团菌感染。与Stat1(-/-)小鼠相比,单核细胞增生李斯特菌在Stat1(Y701F)巨噬细胞和小鼠中的生长不那么旺盛,但STAT1Y701F不足以挽救这些动物。我们的研究结果与未磷酸化的Y701 STAT1对先天抗菌免疫的潜在贡献一致。