Department of Orthopaedics, Emory University School of Medicine, Atlanta, GA, United States.
Department of Cell Biology, Emory University School of Medicine, Atlanta, GA, United States.
Front Immunol. 2022 Apr 22;13:789349. doi: 10.3389/fimmu.2022.789349. eCollection 2022.
SOX4 belongs to the group C of the SOX transcription factor family. It is a critical mediator of tumor necrosis factor alpha (TNF)-induced transformation of fibroblast-like s-ynoviocytes (FLS) in arthritis. In this study we investigated the genome wide association between the DNA binding and transcriptional activities of SOX4 and the NF-kappaB signaling transcription factor RELA/p65 downstream of TNF signaling. We used ChIP-seq assays in mouse FLS to compare the global DNA binding profiles of SOX4 and RELA. RNA-seq of TNF-induced wildtype and -knockout FLS was used to identify the SOX4-dependent and independent aspects of the TNF-regulated transcriptome. We found that SOX4 and RELA physically interact with each other on the chromatin. Interestingly, ChIP-seq assays revealed that 70.4% of SOX4 peak summits were within 50bp of the RELA peak summits suggesting that both proteins bind in close-proximity on regulatory sequences, enabling them to co-operatively regulate gene expression. By integrating the ChIP-seq results with RNA-seq from -knockout FLS we identified a set of TNF-responsive genes that are targets of the RELA-SOX4 transcriptional complex. These TNF-responsive and RELA-SOX4-depenedent genes included inflammation mediators, histone remodeling enzymes and components of the AP-1 signaling pathway. We also identified an autoregulatory mode of gene expression that involves a TNF-mediated switch from RELA binding to SOX4 binding in the 3' UTR of and genes. In conclusion, our results show that SOX4 and RELA together orchestrate a multimodal regulation of gene expression downstream of TNF signaling. Their interdependent activities play a pivotal role in the transformation of FLS in arthritis and in the inflammatory pathology of diverse tissues where RELA and SOX4 are co-expressed.
SOX4 属于 SOX 转录因子家族的 C 组。它是关节炎中肿瘤坏死因子 α(TNF)诱导成纤维细胞样滑膜细胞(FLS)转化的关键介质。在这项研究中,我们研究了 SOX4 的 DNA 结合和转录活性与 TNF 信号转导下游的 NF-κB 信号转录因子 RELA/p65 之间的全基因组关联。我们使用 ChIP-seq 测定法在小鼠 FLS 中比较了 SOX4 和 RELA 的全局 DNA 结合谱。使用 TNF 诱导的野生型和敲除 FLS 的 RNA-seq 来鉴定 TNF 调节转录组中 SOX4 依赖和独立的方面。我们发现 SOX4 和 RELA 在染色质上相互物理作用。有趣的是,ChIP-seq 测定法显示,SOX4 峰总和的 70.4%位于 RELA 峰总和的 50bp 内,这表明这两种蛋白质在调节序列上紧密结合,使它们能够合作调节基因表达。通过将 ChIP-seq 结果与敲除 FLS 的 RNA-seq 整合,我们鉴定了一组 TNF 反应基因,这些基因是 RELA-SOX4 转录复合物的靶基因。这些 TNF 反应基因和 RELA-SOX4 依赖的基因包括炎症介质、组蛋白重塑酶和 AP-1 信号通路的组成部分。我们还鉴定了一种基因表达的自调节模式,该模式涉及 TNF 介导的从 RELA 结合到 3'UTR 中 SOX4 结合的转换和 基因。总之,我们的结果表明,SOX4 和 RELA 共同协调 TNF 信号转导下游的基因表达的多模式调节。它们相互依赖的活性在关节炎中 FLS 的转化以及 RELA 和 SOX4 共表达的多种组织的炎症病理学中起着关键作用。