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MADD, a Splice Variant of IG20, Is Indispensable for MAPK Activation and Protection against Apoptosis upon Tumor Necrosis Factor-α Treatment*

机译:IG20的剪接变体MADD对于MAPK来说是必不可少的 肿瘤坏死因子-α的激活和凋亡保护 治疗*

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摘要

We investigated the physiological role of endogenous MAPK-activating death domain-containing protein (MADD), a splice variant of the IG20 gene, that can interact with TNFR1 in tumor necrosis factor-α (TNFα)-induced activation of NF-κB, MAPK, ERK1/2, JNK, and p38. Using exon-specific short hairpin RNAs expressing lentiviruses, we knocked down the expression of all IG20 splice variants or MADD, which is overexpressed in cancer cells. Abrogation of MADD expression rendered cells highly susceptible to TNFα-induced apoptosis in the absence of cycloheximide. It also resulted in a dramatic loss in TNFα-induced activation of MAPK without any apparent effect on NF-κB activation. This observation was substantiated by an accompanying loss in the activation of p90RSK, a key downstream target of MAPK, whereas the NF-κB-regulated interleukin 6 levels remained unaffected. Endogenous MADD knockdown, however, did not affect epidermal growth factor-induced MAPK activation thereby demonstrating the specific requirement of MADD for TNF receptor-mediated MAPK activation. Re-expression of short hairpin RNA-resistant MADD in the absence of endogenous IG20 expression rescued the cells from TNFα-induced apoptosis. The requirement for MADD was highly specific for TNFα-induced activation of MAPK but not the related JNK and p38 kinases. Loss of MADD expression resulted in reduced Grb2 and Sos1/2 recruitment to the TNFR1 complex and decreased Ras and MEKK1/2 activation. These results demonstrate the essential role of MADD in protecting cancer cells from TNFα-induced apoptosis by specifically activating MAPKs through Grb2 and Sos1/2 recruitment, and its potential as a novel cancer therapeutic target.
机译:我们研究了内源性MAPK激活死亡域含蛋白(MADD)的生理作用,该蛋白是IG20基因的剪接变体,可以与TNFR1在肿瘤坏死因子-α(TNFα)诱导的NF-κB,MAPK激活中相互作用,ERK1 / 2,JNK和p38。使用表达慢病毒的外显子特异性短发夹RNA,我们敲低了在癌细胞中过度表达的所有IG20剪接变体或MADD的表达。在缺乏环己酰亚胺的情况下,MADD表达的废除使细胞高度敏感于TNFα诱导的凋亡。它也导致TNFα诱导的MAPK活化急剧减少,而对NF-κB活化没有任何明显影响。该观察结果被伴随的p90RSK(MAPK的关键下游靶标)活化丧失所证实,而NF-κB调节的白介素6水平仍然不受影响。但是,内源性MADD敲低并不影响表皮生长因子诱导的MAPK激活,从而证明了MADD对TNF受体介导的MAPK激活的特殊要求。在缺乏内源性IG20表达的情况下,短发夹RNA抗性MADD的重新表达使细胞摆脱了TNFα诱导的细胞凋亡。 MADD的需求对TNFα诱导的MAPK活化具有高度特异性,但对相关的JNK和p38激酶却没有特异性。 MADD表达的丧失导致Grb2和Sos1 / 2募集到TNFR1复合体减少,Ras和MEKK1 / 2激活减少。这些结果证明了MADD通过通过Grb2和Sos1 / 2募集特异性激活MAPKs在保护癌细胞免受TNFα诱导的凋亡中的重要作用,以及其作为新型癌症治疗靶标的潜力。

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