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血红素加氧酶-1 通过直接结合 STAT3 控制中性粒细胞气道炎症中致病性 Th17 细胞的产生。

Heme oxygenase-1 directly binds STAT3 to control the generation of pathogenic Th17 cells during neutrophilic airway inflammation.

机构信息

Department of Pediatrics, Ruijin Hospital affiliated to Shanghai Jiao Tong University School of Medicine, Shanghai, China.

Department of Pediatrics, Xinhua Hospital affiliated to Shanghai Jiao Tong University School of Medicine, Shanghai, China.

出版信息

Allergy. 2017 Dec;72(12):1972-1987. doi: 10.1111/all.13216. Epub 2017 Jul 3.

Abstract

BACKGROUND

Specific JAK/STAT pathways play a critical role in the functional differentiation of distinct Th subsets. Previously, we showed that HO-1, a stress-inducible protein, inhibits Th17 cell differentiation and alleviates neutrophilic airway inflammation, but the responsible molecular basis remains unclear.

METHODS

We employed Th17-skewing differentiation and NEA mouse models to study the role of HO-1 in regulating IL-6-STAT3-RORγt/SOCS3 signaling pathway to control Th17 cell-mediated neutrophilic airway inflammation. The levels of cytokines and expressions of relative signaling molecules were measured by ELISA, western blot, and qPCR, respectively. Frequency of CD4 IL-17A , CD4 IL-6R , and CD4 IL-23R cells was analyzed by FCM. The interaction between HO-1 and signaling pathway-related proteins was determined by co-immunoprecipitation and western blot.

RESULTS

Here, we show that hemin-induced HO-1 overexpression is required to mediate this process. Specifically, HO-1 decreased STAT3 phosphorylation but not IL-6R/IL-23R expression or JAK1/JAK2 activation in CD4 T cells. The effect was accompanied by co-inhibition of SOCS3, a negative feedback factor of STAT3 activation. HO-1 bound to three domains on STAT3 (DNA-binding, linker, and transactivation domains) to directly regulate STAT3 activation. Conversely, either forced expression of a constitutively active STAT3 mutant or application of small-interfering RNA (siRNA) for HO-1 reversed these effects.

CONCLUSIONS

Our data suggest that HO-1 exerts its inhibitory effect on Th17 cell differentiation by directly associating and blocking STAT3 phosphorylation. We speculate that hemin may be a potential therapeutic candidate for the treatment of other types of immune and pulmonary inflammatory-related diseases.

摘要

背景

特定的 JAK/STAT 途径在不同 Th 亚群的功能分化中起着关键作用。以前,我们发现应激诱导蛋白 HO-1 抑制 Th17 细胞分化并减轻中性粒细胞性气道炎症,但负责的分子基础尚不清楚。

方法

我们采用 Th17 偏向分化和 NEA 小鼠模型来研究 HO-1 在调节 IL-6-STAT3-RORγt/SOCS3 信号通路以控制 Th17 细胞介导的中性粒细胞性气道炎症中所起的作用。通过 ELISA、western blot 和 qPCR 分别测量细胞因子的水平和相关信号分子的表达。通过 FCM 分析 CD4 IL-17A 、CD4 IL-6R 和 CD4 IL-23R 细胞的频率。通过共免疫沉淀和 western blot 确定 HO-1 与信号通路相关蛋白之间的相互作用。

结果

在这里,我们表明血红素诱导的 HO-1 过表达是介导这一过程所必需的。具体而言,HO-1 降低了 STAT3 的磷酸化,但不影响 IL-6R/IL-23R 的表达或 JAK1/JAK2 的激活。这种效应伴随着 SOCS3 的共同抑制,SOCS3 是 STAT3 激活的负反馈因子。HO-1 与 STAT3 的三个结构域(DNA 结合、连接和转录激活结构域)结合,直接调节 STAT3 的激活。相反,强制表达组成型激活的 STAT3 突变体或应用 HO-1 的小干扰 RNA(siRNA)逆转了这些效应。

结论

我们的数据表明,HO-1 通过直接结合和阻断 STAT3 磷酸化对 Th17 细胞分化发挥抑制作用。我们推测,血红素可能是治疗其他类型的免疫和肺部炎症相关疾病的潜在治疗候选物。

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