内毒素诱导的骨骼肌IL-6启动子激活需要NF-κB位点。

David Yeagley, Charles H Lang
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引用次数: 3

摘要

先前对单核细胞和其他细胞类型的研究已经提供了NF-κB通路在IL-6诱导中的作用的证据。本研究的目的是研究NF-κB在内毒素(LPS)、TNFα或IL-1α诱导骨骼肌细胞中IL-6启动子的作用。在IL-6启动子的控制下,用荧光素酶报告基因转染C2C12小鼠肌细胞表明,每种免疫调节剂都增强了IL-6启动子的活性。突变和抑制剂研究表明,这种反应依赖于IL-6 NF-κB结合位点,但不依赖于NF- il 6、AP-1、CREB或C/EBP。用组成性激活RelA通路的表达载体共转染后,IL-6启动子活性增加,而细胞因子或LPS不能进一步增强IL-6启动子活性。然而,共转染各种优势的上游负NF-κB激酶表达载体,单独或联合抑制RelA或RelB途径,对lps诱导的IL-6启动子的激活没有影响,但可以消除NF-κB启动子的诱导。这种效应的缺乏不是由于C2C12肌细胞中NF-κB通路激活的缺乏,因为Western分析和EMSA超移都显示lps诱导的核RelA和RelA磷酸化的增加。然而,另一种蛋白被观察到与IL-6 NF-κB位点结合,而不与共识的NF-κB位点结合。目前的研究结果为骨骼肌中IL-6启动子活性的炎症诱导刺激提供了新的见解,骨骼肌是先天免疫系统的一个重要但非传统的组成部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Endotoxin-Induced IL-6 Promoter Activation in Skeletal Muscle Requires an NF-κB Site.

Endotoxin-Induced IL-6 Promoter Activation in Skeletal Muscle Requires an NF-κB Site.

Endotoxin-Induced IL-6 Promoter Activation in Skeletal Muscle Requires an NF-κB Site.

Endotoxin-Induced IL-6 Promoter Activation in Skeletal Muscle Requires an NF-κB Site.

Previous studies in monocytes and other cell types have provided evidence of a role for the NF-κB pathway in IL-6 induction. The purpose of the present study was to examine the involvement of NF-κB in the induction of the IL-6 promoter in skeletal muscle cells by endotoxin (LPS), TNFα or IL-1α. Transfection of C2C12 mouse myocytes with a luciferase reporter under the control of the IL-6 promoter indicated each immunomodulator enhanced IL-6 promoter activity. Mutation and inhibitor studies indicate this response was dependent on the IL-6 NF-κB binding site, but independent of NF-IL6, AP-1, CREB or C/EBP. Cotransfection with an expression vector which constitutively activates the RelA pathway increased IL-6 promoter activity, and activity could not be further enhanced by cytokines or LPS. However, cotransfecting various dominant negative upstream NF-κB kinase expression vectors which inhibited RelA or RelB pathways either individually or in combination had no effect on LPS-induced activation of the IL-6 promoter, but abolished induction from a NF-κB-based promoter. This lack of effect was not due to a lack of NF-κB pathway activation in C2C12 myocytes because both Western analysis and EMSA supershifting showed an LPS-induced increase in nuclear RelA and RelA phosphorylation. However, another protein was observed bound to the IL-6 NF-κB site that does not bind to a consensus NF-κB site. The present findings provide novel insights regarding inflammation-induced stimulation of IL-6 promoter activity in skeletal muscle which is an important but non-traditional component of the innate immune system.

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