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首页> 外文期刊>Nature immunology >Function of C/EBPdelta in a regulatory circuit that discriminates between transient and persistent TLR4-induced signals.
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Function of C/EBPdelta in a regulatory circuit that discriminates between transient and persistent TLR4-induced signals.

机译:C / EBPdelta在区分瞬态和持久性TLR4感应信号的调节电路中的功能。

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摘要

The innate immune system is like a double-edged sword: it is absolutely required for host defense against infection, but when uncontrolled, it can trigger a plethora of inflammatory diseases. Here we use systems-biology approaches to predict and confirm the existence of a gene-regulatory network involving dynamic interaction among the transcription factors NF-kappaB, C/EBPdelta and ATF3 that controls inflammatory responses. We mathematically modeled transcriptional regulation of the genes encoding interleukin 6 and C/EBPdelta and experimentally confirmed the prediction that the combination of an initiator (NF-kappaB), an amplifier (C/EBPdelta) and an attenuator (ATF3) forms a regulatory circuit that discriminates between transient and persistent Toll-like receptor 4-induced signals. Our results suggest a mechanism that enables the innate immune system to detect the duration of infection and to respond appropriately.
机译:先天的免疫系统就像一把双刃剑:它是宿主防御感染的绝对必要条件,但是如果不受控制,它会引发过多的炎症性疾病。在这里,我们使用系统生物学方法来预测和确认基因调控网络的存在,该网络涉及控制炎症反应的转录因子NF-κB,C / EBPdelta和ATF3之间的动态相互作用。我们对编码白介素6和C / EBPdelta的基因的转录调控进行数学建模,并通过实验证实了以下预测:启动子(NF-kappaB),放大器(C / EBPdelta)和衰减器(ATF3)的组合形成了一个调节电路,区分瞬时和持续性Toll样受体4诱导的信号。我们的结果提出了一种机制,使先天免疫系统能够检测感染的持续时间并做出适当的反应。

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