Gene Regulatory Strategies that Decode the Duration of NFκB Dynamics Contribute to LPS- versus TNF-Specific Gene Expression

Gene Regulatory Strategies that Decode the Duration of NFκB Dynamics Contribute to LPS- versus TNF-Specific Gene Expression
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DOI:
10.1016/j.cels.2019.12.004
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发表时间:
2020-02-26
期刊:
影响因子:
9.3
通讯作者:
Hoffmann, Alexander
Hoffmann, Alexander
中科院分区:
生物学1区
文献类型:
--
作者:
Sen, Supriya;Cheng, Zhang;Hoffmann, Alexander

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病原体衍生的脂多糖(LPS)和细胞因子肿瘤坏死因子(TNF)激活NF κ B B具有不同的持续时间动力学,但免疫应答基因如何解码NF κ B B持续时间以产生刺激特异性表达仍不清楚。在这里,详细的转录组分析的组合和时间控制突变体确定了81个基因,依赖于刺激特异性NF κ B持续时间为他们的刺激特异性。将定量实验与数学建模相结合,我们发现对于某些基因,长的mRNA半衰期允许有效解码,但对于许多基因,这不足以解释数据;相反,我们发现染色质机制,例如非活性和RelA结合增强子状态之间的缓慢转换速率,也可以解码NF κ B B动力学。染色质介导的解码受到作为免疫效应物的基因的青睐(例如,组织重塑剂和T细胞募集剂)而不是免疫调节剂(例如,信号蛋白和单核细胞募集物)。总体而言,我们的研究结果描绘了两个基因调控策略,解码刺激特异性NF κ B动力学和确定不同的生物学功能。
Pathogen-derived lipopolysaccharide (LPS) and cytokine tumor necrosis factor (TNF) activate NF kappa B with distinct duration dynamics, but how immune response genes decode NF kappa B duration to produce stimulus-specific expression remains unclear. Here, detailed transcriptomic profiling of combinatorial and temporal control mutants identified 81 genes that depend on stimulus-specific NF kappa B duration for their stimulus-specificity. Combining quantitative experimentation with mathematical modeling, we found that for some genes a long mRNA half-life allowed effective decoding, but for many genes this was insufficient to account for the data; instead, we found that chromatin mechanisms, such as a slow transition rate between inactive and RelA-bound enhancer states, could also decode NF kappa B dynamics. Chromatin-mediated decoding is favored by genes acting as immune effectors (e.g., tissue remodelers and T cell recruiters) rather than immune regulators (e.g., signaling proteins and monocyte recruiters). Overall, our results delineate two gene regulatory strategies that decode stimulus-specific NF kappa B dynamics and determine distinct biological functions.