首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Biomechanical signals suppress TAK1 activation to inhibit NF-kappaB transcriptional activation in fibrochondrocytes.
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Biomechanical signals suppress TAK1 activation to inhibit NF-kappaB transcriptional activation in fibrochondrocytes.

机译:生物力学信号抑制TAK1激活以抑制纤维软骨细胞中的NF-κB转录激活。

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摘要

Exercise/joint mobilization is therapeutic for inflammatory joint diseases like rheumatoid and osteoarthritis, but the mechanisms underlying its actions remain poorly understood. We report that biomechanical signals at low/physiological magnitudes are potent inhibitors of inflammation induced by diverse proinflammatory activators like IL-1beta, TNF-alpha, and lipopolysaccharides, in fibrochondrocytes. These signals exert their anti-inflammatory effects by inhibiting phosphorylation of TAK1, a critical point where signals generated by IL-1beta, TNF-alpha, and LPS converge to initiate NF-kappaB signaling cascade and proinflammatory gene induction. Additionally, biomechanical signals inhibit multiple steps in the IL-1beta-induced proinflammatory cascade downstream of IkappaB kinase activation to regulate IkappaBalpha and IkappaBbeta degradation and synthesis, and promote IkappaBalpha shuttling to export nuclear NF-kappaB and terminate its transcriptional activity. The findings demonstrate that biomechanical forces are but another important signal that uses NF-kappaB pathway to regulate inflammation by switching the molecular activation of discrete molecules involved in proinflammatory gene transcription.
机译:运动/关节动员可以治疗类风湿性关节炎和骨关节炎等炎症性关节疾病,但其作用机理尚不清楚。我们报告说,低/生理幅度的生物力学信号是炎症的有效抑制剂,由多种促炎性激活剂(如IL-1beta,TNF-α和脂多糖)在纤维软骨细胞中诱导。这些信号通过抑制TAK1的磷酸化发挥其抗炎作用,而TAK1的磷酸化是IL-1beta,TNF-α和LPS产生的信号汇合以启动NF-κB信号级联和促炎基因诱导的关键点。此外,生物力学信号抑制IL-1beta诱导的IkappaB激酶激活下游的促炎级联反应中的多个步骤,以调节IkappaBalpha和IkappaBbeta降解和合成,并促进IkappaB穿梭以输出核NF-kappaB并终止其转录活性。研究结果表明,生物力学力是另一个重要信号,它通过切换参与促炎基因转录的离散分子的分子活化来使用NF-κB途径来调节炎症。

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