首页> 外文期刊>American Journal of Physiology >RhoA regulation of NF-kappaB activation is mediated by COX-2-dependent feedback inhibition of IKK in kidney epithelial cells.
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RhoA regulation of NF-kappaB activation is mediated by COX-2-dependent feedback inhibition of IKK in kidney epithelial cells.

机译:RhoA调节NF-κB的活化是由肾上皮细胞中IKK的COX-2依赖性反馈抑制介导的。

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摘要

Numerous studies have demonstrated a central role of renal tubular epithelial cells in the etiology of kidney injury and disease through the elaboration of inflammatory mediators. However, little is known about the cellular signaling mechanisms involved in this process. In this study we employed normal rat kidney epithelial (NRK52E) cells to identify a novel LPS-induced signaling pathway in which RhoA-mediated AP-1 activity promotes expression of cyclooxygenase-2 (COX-2) with consequent feedback inhibition of NF-kappaB activation through IKKbeta. Inhibition of RhoA signaling using either the RhoA kinase inhibitor Y-27632 or a dominant negative mutant of RhoA (RhoA-DN) dramatically extended the duration of p65-DNA binding, IkappaBalpha phosphorylation, and IKKbeta activity following LPS treatment. Prolongation of events associated with NF-kappaB activation was also observed in cells pretreated and/or cotransfected with the JNK inhibitor SP600125 or deletion mutants of MEKK1 (MEKK1-KD) or Jun (Jun-DN). Conversely, constitutive expression of RhoA prevented NF-kappaB activation by LPS, and this effect was reversed by cotransfection with MEKK1-KD. In addition, we found that the RhoA/AP-1 signaling axis plays a necessary role in COX-2 expression by LPS and that this effect is independent of NF-kappaB activation. Moreover, inhibition of COX-2 activity results in persistent p65-DNA binding, IkappaBalpha phosphorylation, and IKKbeta activity, similar to that observed after prevention of RhoA/AP-1 axis signaling. These findings suggest that COX-2 links the RhoA/AP-1 signaling cascade to NF-kappaB activation, thereby defining a novel integrated model for regulation of the inflammatory response of kidney epithelial cells to LPS and potentially other external stimuli.
机译:大量研究表明,通过精心设计炎症介质,肾小管上皮细胞在肾损伤和疾病的病因学中起着核心作用。然而,关于该过程中涉及的细胞信号传导机制知之甚少。在这项研究中,我们使用正常的大鼠肾上皮细胞(NRK52E)来识别LPS诱导的新型信号通路,其中RhoA介导的AP-1活性促进了环氧合酶2(COX-2)的表达,并因此抑制了NF-κB的反馈。通过IKKbeta激活。使用RhoA激酶抑制剂Y-27632或RhoA的显性负突变体(RhoA-DN)抑制RhoA信号传导,可大大延长LPS治疗后p65-DNA结合,IkappaBalpha磷酸化和IKKbeta活性的持续时间。在用JNK抑制剂SP600125或MEKK1(MEKK1-KD)或Jun(Jun-DN)缺失突变体预处理和/或共转染的细胞中,也观察到与NF-kappaB激活相关的事件延长。相反,RhoA的组成型表达阻止了LPS激活NF-kappaB,并通过与MEKK1-KD共转染逆转了这一效应。此外,我们发现RhoA / AP-1信号轴在LPS的COX-2表达中起着必要的作用,并且这种作用与NF-κB的激活无关。此外,对COX-2活性的抑制导致持久的p65-DNA结合,IkappaBalpha磷酸化和IKKbeta活性,与预防RhoA / AP-1轴信号传导后观察到的相似。这些发现表明,COX-2将RhoA / AP-1信号级联与NF-κB激活联系起来,从而定义了一种新型的整合模型,用于调节肾脏上皮细胞对LPS和潜在的其他外部刺激的炎症反应。

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