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首页> 外文期刊>The Journal of investigative dermatology. >Differential activation profiles of multiple transcription factors during dendritic cell maturation.
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Differential activation profiles of multiple transcription factors during dendritic cell maturation.

机译:树突状细胞成熟过程中多个转录因子的差异激活谱。

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摘要

Immature dendritic cells (DC) at the environmental interfaces, such as the skin, constantly survey the tissue for the emergence of microbial products and pro-inflammatory mediators. Upon recognition of such "danger" signals, they undergo dynamic reprogramming of gene expression and functions, the process known as DC maturation, which plays critical roles in both innate and adaptive immune responses. Although DC have been shown to discriminate different maturation stimuli by expressing stimulus-specific signature genes and unique phenotypic and functional properties, underlying mechanisms for this extraordinary plasticity remain relatively unclear. We hypothesized that DC might activate unique sets of transcription factors (TF) upon sensing different stimuli. To test this hypothesis, we transduced a mouse epidermal-derived DC line XS106 to express the luciferase reporter gene under the control of each of 15 different cis-enhancer elements. The resulting DC panels were then exposed to 14 different microbial, endogenous, environmental, and pharmacological agents that produced unique maturational changes. This approach allowed systematic determination of TF activation profiles in DC. Our results revealed striking diversity, with different classes of stimuli triggering preferential activation of distinct sets of TF. We propose that differential TF usage represents a previously unrecognized mechanism regulating the direction of DC maturation.
机译:在环境界面(例如皮肤)上的未成熟树突状细胞(DC)不断调查组织中是否存在微生物产品和促炎性介质。在识别出此类“危险”信号后,它们会进行基因表达和功能的动态重编程,这一过程称为DC成熟,该过程在先天和适应性免疫应答中均起着关键作用。尽管已经证明DC通过表达刺激特异性的特征基因以及独特的表型和功能特性来区分不同的成熟刺激,但是这种非凡可塑性的潜在机制仍然相对不清楚。我们假设DC可能会在感知到不同的刺激后激活独特的转录因子(TF)集。为了验证该假设,我们转导了小鼠表皮来源的DC系XS106,以在15种不同的顺式增强子元件的控制下表达荧光素酶报道基因。然后将所得的DC面板暴露于14种不同的微生物,内源性,环境和药理作用剂中,这些作用剂会产生独特的成熟变化。这种方法允许系统地确定DC中的TF激活曲线。我们的结果显示了惊人的多样性,不同类别的刺激触发了TF不同组的优先激活。我们提出,差分TF用法代表了以前无法识别的调节DC成熟方向的机制。

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