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Krüppel-like factor 5 regulates wound repair and the innate immune response in human airway epithelial cells

机译:Krüppel样系数5调节人类气道上皮细胞中的伤口修复和先天免疫应答

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摘要

A complex network of transcription factors regulates genes involved in establishing and maintaining key biological properties of the human airway epithelium. However, detailed knowledge of the contributing factors is incomplete. Here we characterize the role of Krüppel-like factor 5 (KLF5), in controlling essential pathways of epithelial cell identity and function in the human lung. RNA-seq following siRNA-mediated depletion of KLF5 in the Calu-3 lung epithelial cell line identified significant enrichment of genes encoding chemokines and cytokines involved in the proinflammatory response and also components of the junctional complexes mediating cell adhesion. To determine direct gene targets of KLF5, we defined the cistrome of KLF5 using ChIP-seq in both Calu-3 and 16HBE14o− lung epithelial cell lines. Occupancy site concordance analysis revealed that KLF5 colocalized with the active histone modification H3K27ac and also with binding sites for the transcription factor CCAAT enhancer-binding protein beta (C/EBPβ). Depletion of KLF5 increased both the expression and secretion of cytokines including IL-1β, a response that was enhanced following exposure to Pseudomonas aeruginosa lipopolysaccharide. Calu-3 cells exhibited faster rates of repair after KLF5 depletion compared with negative controls in wound scratch assays. Similarly, CRISPR-mediated KLF5-null 16HBE14o− cells also showed enhanced wound closure. These data reveal a pivotal role for KLF5 in coordinating epithelial functions relevant to human lung disease.
机译:复杂的转录因子网络调节参与建立和维持人气道上皮的关键生物学性质的基因。但是,对贡献因素的详细了解是不完整的。在这里,我们表征了Krüppel样因子5(KLF5)的作用,控制在人肺的上皮细胞标识和功能的基本途径中。在Calu-3肺上皮细胞系中的k1F5后的RNA-SEQ耗尽KLF5鉴定了编码趋化因子和细胞因子的基因的显着富集,以及介导细胞粘附的结络合物的组分。为了确定KLF5的直接基因靶标,我们使用Calu-3和16HBE14O-肺的上皮细胞系中使用芯片SEQ定义KLF5的车肌。占用位点的一致性分析显示,随着活性组蛋白改性H3K27Ac和转录因子CCAAT增强剂结合蛋白β(C /EBPβ)的结合位点,KLF5也具有结合。 KLF5的耗尽增加了细胞因子的表达和分泌,包括IL-1β,这是在暴露于假单胞菌铜绿假青糖后提高的反应。与伤口划痕测定中的阴性对照相比,Calu-3细胞显示出KLF5耗尽后的更快的修复率。类似地,Crispr介导的KLF5-NULL 16HBE14O-细胞也显示出增强的伤口闭合。这些数据揭示了KLF5在协调与人肺病相关的上皮函数方面的枢转作用。

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