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蛋白激酶C-α是U2OS细胞中从TPA信号转导途径到核因子κB的IκB激酶复合体的上游激活剂。

Protein kinase C-alpha is an upstream activator of the IkappaB kinase complex in the TPA signal transduction pathway to NF-kappaB in U2OS cells.

作者信息

Vertegaal A C, Kuiperij H B, Yamaoka S, Courtois G, van der Eb A J, Zantema A

机构信息

Laboratory for Molecular Carcinogenesis, MGC-Department of Molecular Cell Biology, Leiden University Medical Center, Wassenaarseweg 72, 2333 AL, Leiden, Netherlands.

出版信息

Cell Signal. 2000 Dec;12(11-12):759-68. doi: 10.1016/s0898-6568(00)00133-9.

Abstract

Inactive nuclear factor kappaB (NF-kappaB) complexes are retained in the cytoplasm by binding to inhibitory proteins, such as IkappaBalpha. Various stimuli lead to phosphorylation and subsequent processing of IkappaBalpha in the 26S proteasome and import of the active NF-kappaB transcription factor into the nucleus. In agreement with our previous finding that p90(rsk1) is essential for TPA-induced activation of NF-kappaB in Adenovirus 5E1-transformed Baby Rat Kidney cells, we now report that the MEK/ERK/p90(rsk1) inhibitor U0126 efficiently blocks TPA-induced IkappaBalpha processing in these cells. However, in U2OS cells, the cytokine-inducible IkappaB kinase complex (IKK) is the essential component of the TPA signal transduction pathway. Activation of the IKK complex in response to TPA is mediated by PKC-alpha, since both the PKC inhibitor GF109203 and a catalytically inactive PKC-alpha mutant inhibit activation of endogenous IKK by TPA, but not by tumor necrosis factor-alpha (TNF-alpha). We conclude that IKK is an integrator of TNF-alpha and TPA signal transduction pathways in U2OS cells.

摘要

无活性的核因子κB(NF-κB)复合物通过与抑制蛋白(如IκBα)结合而保留在细胞质中。各种刺激导致IκBα在26S蛋白酶体中磷酸化并随后被加工,以及活性NF-κB转录因子进入细胞核。与我们之前的发现一致,即p90(rsk1)对于腺病毒5E1转化的幼鼠肾细胞中TPA诱导的NF-κB激活至关重要,我们现在报告MEK/ERK/p90(rsk1)抑制剂U0126能有效阻断这些细胞中TPA诱导的IκBα加工。然而,在U2OS细胞中,细胞因子诱导的IκB激酶复合物(IKK)是TPA信号转导途径的关键组成部分。TPA刺激下IKK复合物的激活由PKC-α介导,因为PKC抑制剂GF109203和催化失活的PKC-α突变体都能抑制TPA而非肿瘤坏死因子-α(TNF-α)对内源性IKK的激活。我们得出结论,IKK是U2OS细胞中TNF-α和TPA信号转导途径的整合者。

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