首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Bovine Lactoferricin-induced Anti-inflammation Is in Part via Up-regulation of Interleukin-11 by Secondary Activation of STAT3 in Human Articular Cartilage
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Bovine Lactoferricin-induced Anti-inflammation Is in Part via Up-regulation of Interleukin-11 by Secondary Activation of STAT3 in Human Articular Cartilage

机译:牛乳铁蛋白诱导的抗炎作用部分是通过人软骨中的STAT3的二次激活来上调白细胞介素11。

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摘要

Bovine lactoferricin (LfcinB), a multifunctional peptide, was recently demonstrated to be anti-catabolic and anti-inflammatory in human articular cartilage. LfcinB blocks IL-1-mediated proteoglycan depletion, matrix-degrading enzyme expression, and pro-inflammatory mediator induction. LfcinB selectively activates ERK1/2, p38 (but not JNK), and Akt signaling. However, the relationship between these pathways and LfcinB target genes has never been explored. In this study, we uncovered the remarkable ability of LfcinB in the induction of an anti-inflammatory cytokine, IL-11. LfcinB binds to cell surface heparan sulfate to initiate ERK1/2 signaling and activate AP-1 complexes composed of c-Fos and JunD, which transactivate the IL-11 gene. The induced IL-11 functions as an anti-inflammatory and chondroprotective cytokine in articular chondrocytes. Our data show that IL-11 directly attenuates IL-1-mediated catabolic and inflammatory processes ex vivo and in vitro. Moreover, IL-11 activates STAT3 signaling pathway to critically up-regulate TIMP-1 expression, as a consecutive secondary cellular response after IL-11 induction by LfcinB-ERK-AP-1 axis in human adult articular chondrocytes. The pathological relevance of IL-11 signaling to osteoarthritis is evidenced by significant down-regulation of its cognate receptor expression in osteoarthritic chondrocytes. Together, our results suggest a two-step mechanism, whereby LfcinB induces TIMP-1 through an IL-11-dependent pathway involving transcription factor AP-1 and STAT3.
机译:牛乳铁蛋白(LfcinB),一种多功能肽,最近被证明在人类关节软骨中具有抗分解代谢和抗炎作用。 LfcinB阻断IL-1介导的蛋白聚糖消耗,基质降解酶表达和促炎性介质诱导。 LfcinB选择性激活ERK1 / 2,p38(但不激活JNK)和Akt信号传导。但是,从未探讨过这些途径与LfcinB靶基因之间的关系。在这项研究中,我们发现了LfcinB在诱导抗炎细胞因子IL-11中的非凡能力。 LfcinB与细胞表面硫酸乙酰肝素结合以启动ERK1 / 2信号传导并激活由c-Fos和JunD组成的AP-1复合物,后者可激活IL-11基因。诱导的IL-11在关节软骨细胞中起抗炎和软骨保护性细胞因子的作用。我们的数据表明,IL-11可以在体内和体外直接减弱IL-1介导的分解代谢和炎症过程。此外,IL-11激活STAT3信号通路以严重上调TIMP-1表达,作为LfcinB-ERK-AP-1轴在人成年关节软骨细胞IL-11诱导后的连续继发性细胞应答。 IL-11信号传导与骨关节炎的病理相关性可通过其在骨关节炎软骨细胞中同源受体表达的显着下调来证明。在一起,我们的结果提出了一个两步机制,即LfcinB通过涉及转录因子AP-1和STAT3的IL-11-依赖性途径诱导TIMP-1。

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