Th1 Cells Alter the Inflammatory Signature of IL-6 by Channeling STAT Transcription Factors to Alu-like Retroelements

David Millrine, Ana Cardus Figueras, J. U. Fernandez, R. Andrews, Barbara Szomolay, Benjamin C. Cossins, C. Rice, Jasmine Li, V. Tyrrell, L. McLeod, P. Holmans, V. O’Donnell, P. Taylor, S. Turner, B. Jenkins, G. Jones, N. Topley, N. Williams, Simon A. Jones
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引用次数: 1

Abstract

Cytokines that signal via STAT1 and STAT3 transcription factors instruct decisions affecting tissue homeostasis, anti-microbial host defense, and inflammation-induced tissue injury. To understand the coordination of these activities, we applied RNA-seq, ChIP-seq, and ATAC-seq to identify the transcriptional output of STAT1 and STAT3 in peritoneal tissues during acute resolving inflammation and inflammation primed to drive fibrosis. Bioinformatics focussed on the transcriptional signature of the immuno-modulatory cytokine IL-6 in both settings and examined how pro-fibrotic IFNγ-secreting CD4+ T-cells altered the interpretation of STAT1 and STAT3 cytokine cues. In resolving inflammation, STAT1 and STAT3 cooperated to drive stromal gene expression affecting anti-microbial immunity and tissue homeostasis. The introduction of IFNγ-secreting CD4+ T-cells altered this transcriptional program and channeled STAT1 and STAT3 to a previously latent GAS motif in Alu-like elements. STAT1 and STAT3 binding to this conserved sequence revealed evidence of reciprocal cross-regulation and gene signatures relevant to pathophysiology. Thus, we propose that effector T-cells re-tune the transcriptional output of IL-6 by shaping a regulatory interplay between STAT1 and STAT3 in inflammation.
Th1细胞通过引导STAT转录因子到alu样逆转录因子改变IL-6的炎症特征
细胞因子通过STAT1和STAT3转录因子发出信号,指导影响组织稳态、抗微生物宿主防御和炎症诱导的组织损伤的决策。为了了解这些活动的协调,我们应用RNA-seq、ChIP-seq和ATAC-seq来鉴定急性消退炎症和炎症引发纤维化期间腹膜组织中STAT1和STAT3的转录输出。生物信息学聚焦于两种情况下免疫调节细胞因子IL-6的转录特征,并研究促纤维化ifn γ分泌CD4+ t细胞如何改变STAT1和STAT3细胞因子信号的解释。在消炎过程中,STAT1和STAT3共同驱动基质基因表达,影响抗微生物免疫和组织稳态。分泌ifn γ的CD4+ t细胞的引入改变了这种转录程序,并将STAT1和STAT3引导到Alu-like元件中先前潜在的GAS基序。STAT1和STAT3结合到这个保守序列显示了相互交叉调控和与病理生理相关的基因特征的证据。因此,我们提出效应t细胞通过在炎症中形成STAT1和STAT3之间的调节相互作用来重新调节IL-6的转录输出。
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