首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Distinct Activation Mechanisms of NF-κB Regulator Inhibitor of NF-κB Kinase (IKK) by Isoforms of the Cell Death Regulator Cellular FLICE-like Inhibitory Protein (cFLIP)
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Distinct Activation Mechanisms of NF-κB Regulator Inhibitor of NF-κB Kinase (IKK) by Isoforms of the Cell Death Regulator Cellular FLICE-like Inhibitory Protein (cFLIP)

机译:细胞死亡调节剂细胞FLICE样抑制蛋白(cFLIP)的同工型NF-κB激酶(IKK)的NF-κB调节剂抑制剂的不同激活机制

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摘要

The viral FLICE-like inhibitory protein (FLIP) protein from Kaposi sarcoma-associated herpesvirus activates the NF-κB pathway by forming a stable complex with a central region (amino acids 150–272) of the inhibitor of NF-κB kinase (IKK) γ subunits, thereby activating IKK. Cellular FLIP (cFLIP) forms are also known to activate the NF-κB pathway via IKK activation. Here we demonstrate that cFLIPL, cFLIPS, and their proteolytic product p22-FLIP all require the C-terminal region of NEMO/IKKγ (amino acids 272–419) and its ubiquitin binding function for activation of the IKK kinase (or kinase complex), but none form a stable complex with IKKγ. Our results further reveal that cFLIPL requires the linear ubiquitin chain assembly complex and the kinase TAK1 for activation of the IKK kinase. Similarly, cFLIPS and p22-FLIP also require TAK1 but do not require LUBAC. In contrast, these isoforms are both components of complexes that incorporate Fas-associated death domain and RIP1, which appear essential for kinase activation. This conservation of IKK activation among the cFLIP family using different mechanisms suggests that the mechanism plays a critical role in their function.
机译:来自卡波西氏肉瘤相关疱疹病毒的病毒FLICE样抑制蛋白(FLIP)蛋白通过与NF-κB激酶(IKK)抑制剂的中心区域(氨基酸150-272)形成稳定的复合物,从而激活NF-κB途径。 γ亚基,从而激活IKK。还已知细胞FLIP(cFLIP)形式可通过IKK激活来激活NF-κB途径。在这里,我们证明cFLIPL,cFLIPS及其蛋白水解产物p22-FLIP都需要NEMO /IKKγ(氨基酸272-419)的C端区域及其泛素结合功能来激活IKK激酶(或激酶复合体),但没有一个与IKKγ形成稳定的复合物。我们的结果进一步表明,cFLIPL需要线性泛素链装配复合体和TAK1激酶才能激活IKK激酶。同样,cFLIPS和p22-FLIP也需要TAK1,但不需要LUBAC。相反,这些同工型都是结合了Fas相关死亡域和RIP1的复合物的两个组成部分,而RIP1似乎是激酶激活所必需的。使用不同的机制在cFLIP家族中保护IKK激活表明该机制在其功能中起着关键作用。

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