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内源性危险信号 tenascin-C 的转录调控:炎症中的新型自分泌环。

Transcriptional regulation of the endogenous danger signal tenascin-C: a novel autocrine loop in inflammation.

机构信息

Kennedy Institute of Rheumatology Division, Imperial College of Science, Technology, and Medicine, London W6 8LH, United Kingdom.

出版信息

J Immunol. 2010 Mar 1;184(5):2655-62. doi: 10.4049/jimmunol.0903359. Epub 2010 Jan 27.

Abstract

Inappropriate expression of proinflammatory mediators underpins the pathogenesis of autoimmune disease and tumor metastasis. The extracellular matrix glycoprotein tenascin-C is an endogenous activator of innate immunity that promotes the synthesis of inflammatory cytokines via activation of TLR4. Little tenascin-C is observed in most healthy adult tissues, but expression is specifically upregulated at sites of inflammation. Moreover, high levels of tenascin-C are associated with chronic inflammation and found in the tumor stroma. In this study, we show that the expression of tenascin-C is induced in immune myeloid cells activated by a variety of inflammatory stimuli, including specific TLR ligands. Its synthesis is transcriptionally regulated and requires the specific activation of AKT/PI3K and NF-kappaB signaling pathways. Using a bioinformatic approach, we identified a large number of conserved noncoding regions throughout the tenascin-C genomic locus that may contribute to its transcriptional regulation during inflammation. We also demonstrate that tenascin-C expression is transient during acute inflammation. In contrast, persistently high levels of expression occur in the inflamed synovium of joints from rheumatoid arthritis patients. Thus, misregulated expression of this endogenous danger signal may promote an autocrine loop of inflammation and contribute to the persistence of inflammation in autoimmune diseases or to tumor egress and invasion during metastasis.

摘要

促炎介质的异常表达是自身免疫性疾病和肿瘤转移的发病机制。细胞外基质糖蛋白 tenascin-C 是先天免疫的内源性激活物,通过激活 TLR4 促进炎症细胞因子的合成。大多数健康成年组织中观察到的 tenascin-C 很少,但在炎症部位特异性地上调表达。此外,tenascin-C 的高水平与慢性炎症有关,并存在于肿瘤基质中。在这项研究中,我们表明,tenascin-C 的表达在多种炎症刺激物激活的免疫髓样细胞中被诱导,包括特定的 TLR 配体。其合成受转录调控,需要 AKT/PI3K 和 NF-κB 信号通路的特异性激活。通过生物信息学方法,我们在整个 tenascin-C 基因组座中鉴定出大量保守的非编码区域,这些区域可能有助于其在炎症过程中的转录调控。我们还证明,tenascin-C 的表达在急性炎症期间是短暂的。相比之下,在类风湿关节炎患者关节的炎症滑膜中持续存在高水平的表达。因此,这种内源性危险信号的失调表达可能促进炎症的自分泌循环,并有助于自身免疫性疾病中的炎症持续存在,或有助于转移过程中肿瘤的逃逸和侵袭。

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