Institute of Immunology, Christian-Albrechts-University Kiel, Kiel, Germany.
Eur J Immunol. 2011 Jan;41(1):224-34. doi: 10.1002/eji.201040814. Epub 2010 Dec 3.
The inhibitor of κB kinase ε (IKKε) is pivotal for an efficient innate immune response to viral infections and has been recognized as breast cancer oncogene. The antiviral function of IKKε involves activation of the transcription factors IFN regulatory factor 3 (IRF3) and NF-κB, thus inducing the expression of type I IFN. Here, we have identified two novel splice variants of human IKKε, designated IKKε-sv1 and IKKε-sv2, respectively. Interestingly, RT-PCR revealed quantitatively different isoform expression in PBMC from different individuals. Moreover, we found cell type- and stimulus-specific protein expression of the various splice variants. Overexpression of full-length wt IKKε (IKKε-wt) leads to the activation of NF-κB- as well as IRF3-driven luciferase reporter genes. Although none of the splice variants activates IRF3, IKKε-sv1 still activates NF-κB, whereas IKKε-sv2 is also defective in NF-κB activation. Both splice variants form dimers with IKKε-wt and inhibit IKKε-wt-induced IRF3 signaling including the antiviral activity in a dominant-negative manner. The lack of IRF3 activation is likely caused by the failure of the splice variants to interact with the adapter proteins TANK, NAP1, and/or SINTBAD. Taken together, our data suggest alternative splicing as a novel regulatory mechanism suitable to shift the balance between different functions of IKKε.
κB 激酶 ε 抑制剂 (IKKε) 是病毒感染中有效先天免疫反应的关键,并且已被认为是乳腺癌致癌基因。IKKε 的抗病毒功能涉及转录因子 IFN 调节因子 3 (IRF3) 和 NF-κB 的激活,从而诱导 I 型 IFN 的表达。在这里,我们鉴定了人 IKKε 的两个新的剪接变体,分别命名为 IKKε-sv1 和 IKKε-sv2。有趣的是,RT-PCR 揭示了来自不同个体的 PBMC 中定量不同的同工型表达。此外,我们发现各种剪接变体的细胞类型和刺激特异性蛋白表达。全长 wt IKKε (IKKε-wt) 的过表达导致 NF-κB 以及 IRF3 驱动的荧光素酶报告基因的激活。尽管没有任何剪接变体激活 IRF3,但 IKKε-sv1 仍然激活 NF-κB,而 IKKε-sv2 在 NF-κB 激活中也存在缺陷。两种剪接变体都与 IKKε-wt 形成二聚体,并以显性负性方式抑制 IKKε-wt 诱导的 IRF3 信号传导,包括抗病毒活性。IRF3 激活的缺乏可能是由于剪接变体未能与衔接蛋白 TANK、NAP1 和/或 SINTBAD 相互作用所致。总之,我们的数据表明,选择性剪接是一种新的调节机制,适合于改变 IKKε 不同功能之间的平衡。