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树突状细胞和巨噬细胞中的胆固醇 25-羟化酶的产生受 I 型干扰素的调节。

Cholesterol 25-hydroxylase production by dendritic cells and macrophages is regulated by type I interferons.

机构信息

The W. Harry Feinstone Department of Molecular Microbiology and Immunology, Bloomberg School of Public Health, Johns Hopkins University, Baltimore, MD 21205, USA.

出版信息

J Leukoc Biol. 2010 Dec;88(6):1081-7. doi: 10.1189/jlb.0610318. Epub 2010 Aug 10.

Abstract

The oxysterol-producing enzyme CH25H plays an important role in regulating lipid metabolism, gene expression, and immune activation. In vitro experiments using a panel of TLR agonists to activate BMDCs and macrophages demonstrated that Ch25h expression is induced rapidly, selectively, and robustly by the TLR ligands poly I:C and LPS. The mechanism of TLR3- and TLR4-induced transcription levels of Ch25h relies on the TRIF-mediated production of type I IFNs and requires signaling through the IFNαR and JAK/STAT1 pathway. Treatment of BMDCs and macrophages with IFN-α or IFN-β induces Ch25h in a STAT1-dependent manner. IFN-γ also up-regulated Ch25h expression by signaling through STAT1, suggesting that multiple pathways regulate the production of this enzyme. In addition, we demonstrated that regulation of Ch25h expression in vivo in lung-derived DCs and macrophages is dependent on signaling through the IFNαR and STAT1. The results suggest that the rapid induction of Ch25h and subsequent oxysterol synthesis may represent a component of the regulatory network that modulates the magnitude of innate immune reactions and possibly the nature and intensity of subsequent adaptive responses.

摘要

氧化固醇生成酶 CH25H 在调节脂质代谢、基因表达和免疫激活方面发挥着重要作用。使用一组 TLR 激动剂激活 BMDC 和巨噬细胞的体外实验表明,Ch25h 的表达被 TLR 配体 poly I:C 和 LPS 快速、选择性和强烈地诱导。TLR3 和 TLR4 诱导 Ch25h 转录水平的机制依赖于 TRIF 介导的 I 型 IFNs 的产生,并需要通过 IFNαR 和 JAK/STAT1 途径进行信号转导。IFN-α或 IFN-β处理 BMDC 和巨噬细胞以依赖于 STAT1 的方式诱导 Ch25h。IFN-γ也通过 STAT1 信号转导上调 Ch25h 的表达,表明多种途径调节该酶的产生。此外,我们证明了体内肺源性 DC 和巨噬细胞中 Ch25h 表达的调节依赖于 IFNαR 和 STAT1 的信号转导。结果表明,Ch25h 的快速诱导及其随后的氧化固醇合成可能代表调节固有免疫反应幅度的调控网络的一部分,并且可能调节随后适应性反应的性质和强度。

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