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RIPK3 contributes to TNFR1-mediated RIPK1 kinase-dependent apoptosis in conditions of cIAP1/2 depletion or TAK1 kinase inhibition

机译:RIPK3在cIAP1 / 2耗尽或TAK1激酶抑制的条件下有助于TNFR1介导的RIPK1激酶依赖性细胞凋亡

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Receptor-interacting protein kinase (RIPK) 1 and RIPK3 have emerged as essential kinases mediating a regulated form of necrosis, known as necroptosis, that can be induced by tumor necrosis factor (TNF) signaling. As a consequence, inhibiting RIPK1 kinase activity and repressing RIPK3 expression levels have become commonly used approaches to estimate the contribution of necroptosis to specific phenotypes. Here, we report that RIPK1 kinase activity and RIPK3 also contribute to TNF-induced apoptosis in conditions of cellular inhibitor of apoptosis 1 and 2 (cIAP1/2) depletion or TGF-β-activated kinase 1 (TAK1) kinase inhibition, implying that inhibition of RIPK1 kinase activity or depletion of RIPK3 under cell death conditions is not always a prerequisite to conclude on the involvement of necroptosis. Moreover, we found that, contrary to cIAP1/2 depletion, TAK1 kinase inhibition induces assembly of the cytosolic RIPK1/Fas-associated protein with death domain/caspase-8 apoptotic TNF receptor 1 (TNFR1) complex IIb without affecting the RIPK1 ubiquitylation status at the level of TNFR1 complex I. These results indicate that the recruitment of TAK1 to the ubiquitin (Ub) chains, and not the Ub chains per se, regulates the contribution of RIPK1 to the apoptotic death trigger. In line with this, we found that cylindromatosis repression only provided protection to TNF-mediated RIPK1-dependent apoptosis in condition of reduced RIPK1 ubiquitylation obtained by cIAP1/2 depletion but not upon TAK1 kinase inhibition, again arguing for a role of TAK1 in preventing RIPK1-dependent apoptosis downstream of RIPK1 ubiquitylation. Importantly, we found that this function of TAK1 was independent of its known role in canonical nuclear factor-κB (NF-κB) activation. Our study therefore reports a new function of TAK1 in regulating an early NF-κB-independent cell death checkpoint in the TNFR1 apoptotic pathway. In both TNF-induced RIPK1 kinase-dependent apoptotic models, we found that RIPK3 contributes to full caspase-8 activation independently of its kinase activity or intact RHIM domain. In contrast, RIPK3 participates in caspase-8 activation by acting downstream of the cytosolic death complex assembly, possibly via reactive oxygen species generation.
机译:受体相互作用蛋白激酶(RIPK)1和RIPK3已作为介导调节型坏死(称为坏死性坏死)的必需激酶出现,这种坏死可通过肿瘤坏死因子(TNF)信号传导来诱导。结果,抑制RIPK1激酶活性和抑制RIPK3表达水平已成为评估坏死病对特定表型的贡献的常用方法。在这里,我们报道在细胞凋亡的凋亡抑制剂1和2(cIAP1 / 2)耗尽或TGF-β激活的激酶1(TAK1)激酶抑制的条件下,RIPK1激酶活性和RIPK3也有助于TNF诱导的凋亡。细胞死亡条件下RIPK1激酶活性或RIPK3的耗竭并不总是得出坏死性坏死的结论的先决条件。此外,我们发现,与cIAP1 / 2耗竭相反,TAK1激酶抑制作用诱导具有死亡域/ caspase-8凋亡TNF受体1(TNFR1)复合物IIb的胞浆RIPK1 / Fas相关蛋白的组装,而不会影响RIPK1的泛素化状态这些结果表明,将TAK1募集到泛素(Ub)链而不是Ub链本身,调节了RIPK1对凋亡死亡触发器的贡献。与此相符,我们发现圆筒状细胞增生抑制仅在通过cIAP1 / 2耗尽获得的RIPK1泛素化降低的条件下为TNF介导的RIPK1依赖性细胞凋亡提供了保护,但没有在TAK1激酶抑制后提供保护,这再次证明了TAK1在预防RIPK1中的作用RIPK1泛素化下游的依赖细胞凋亡。重要的是,我们发现TAK1的功能独立于其在规范核因子-κB(NF-κB)激活中的已知作用。因此,我们的研究报告了TAK1在调节TNFR1凋亡途径中早期NF-κB独立细胞死亡检查点的新功能。在这两种TNF诱导的RIPK1激酶依赖性细胞凋亡模型中,我们发现RIPK3完全独立于其激酶活性或完整的RHIM结构域,促进了caspase-8的完全活化。相反,RIPK3通过在胞质死亡复合体装配体的下游起作用而参与caspase-8激活,可能是通过活性氧的产生。

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