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Linear ubiquitination in immunity

机译:免疫中的线性泛素化

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Linear ubiquitination is a post-translational protein modification recently discovered to be crucial for innate and adaptive immune signaling. The function of linear ubiquitin chains is regulated at multiple levels: generation, recognition, and removal. These chains are generated by the linear ubiquitin chain assembly complex (LUBAC), the only known ubiquitin E3 capable of forming the linear ubiquitin linkage de novo. LUBAC is not only relevant for activation of nuclear factor-B (NF-B) and mitogen-activated protein kinases (MAPKs) in various signaling pathways, but importantly, it also regulates cell death downstream of immune receptors capable of inducing this response. Recognition of the linear ubiquitin linkage is specifically mediated by certain ubiquitin receptors, which is crucial for translation into the intended signaling outputs. LUBAC deficiency results in attenuated gene activation and increased cell death, causing pathologic conditions in both, mice, and humans. Removal of ubiquitin chains is mediated by deubiquitinases (DUBs). Two of them, OTULIN and CYLD, are constitutively associated with LUBAC. Here, we review the current knowledge on linear ubiquitination in immune signaling pathways and the biochemical mechanisms as to how linear polyubiquitin exerts its functions distinctly from those of other ubiquitin linkage types.
机译:线性泛素化是翻译后蛋白质修饰,最近被发现对于先天和适应性免疫信号传导至关重要。线性泛素链的功能在多个水平上调节:生成,识别和去除。这些链是由线性泛素链组装复合物(LUBAC)生成的,LUBAC是唯一已知的能够从头形成线性泛素键的泛素E3。 LUBAC不仅与各种信号通路中核因子-B(NF-B)和有丝分裂原活化的蛋白激酶(MAPK)的激活有关,而且重要的是,它还调节能够诱导这种反应的免疫受体下游的细胞死亡。线性泛素键的识别是由某些泛素受体特异性介导的,这对于翻译成预期的信号输出至关重要。 LUBAC缺乏导致基因激活减弱和细胞死亡增加,从而在小鼠和人类中引起病理状况。泛素链的去除是由去泛素酶(DUB)介导的。 OTULIN和CYLD这两个是与LUBAC组成性相关的。在这里,我们回顾了有关免疫信号传导途径中线性泛素化的当前知识以及有关线性聚泛素如何如何发挥其功能与其他泛素连接类型的功能的生化机制。

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