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A validated regulatory network for Th17 cell specification

机译:经过验证的Th17细胞规范监管网络

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Th17 cells have critical roles in mucosal defense and are major contributors to inflammatory disease. Their differentiation requires the nuclear hormone receptor RORγt working with multiple other essential transcription factors (TFs). We have used an iterative systems approach, combining genome-wide TF occupancy, expression profiling of TF mutants, and expression time series to delineate the Th17 global transcriptional regulatory network. We find that cooperatively bound BATF and IRF4 contribute to initial chromatin accessibility and, with STAT3, initiate a transcriptional program that is then globally tuned by the lineage-specifying TF RORγt, which plays a focal deterministic role at key loci. Integration of multiple data sets allowed inference of an accurate predictive model that we computationally and experimentally validated, identifying multiple new Th17 regulators, including Fosl2, a key determinant of cellular plasticity. This interconnected network can be used to investigate new therapeutic approaches to manipulate Th17 functions in the setting of inflammatory disease.
机译:Th17细胞在粘膜防御中起关键作用,是炎性疾病的主要贡献者。它们的分化需要核激素受体RORγt与其他多种必需转录因子(TFs)共同作用。我们使用了一种迭代系统方法,结合了全基因组TF占用率,TF突变体的表达谱以及表达时间序列,以描绘Th17全球转录调控网络。我们发现,协同结合的BATF和IRF4有助于初始染色质的可及性,并与STAT3一起启动一个转录程序,然后由沿袭指定的TFRORγt对其进行全局调节,后者在关键基因座上起着确定性作用。多个数据集的整合可以推断出一个准确的预测模型,我们通过计算和实验验证了这一模型,从而确定了多个新的Th17调节剂,其中包括Fosl2,这是决定细胞可塑性的关键因素。这种相互联系的网络可用于研究在炎症性疾病中操纵Th17功能的新治疗方法。

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