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Characterisation of SHARPIN as a third component of the linear ubiquitin chain assembly complex (LUBAC)

机译:表征sHaRpIN作为线性遍在蛋白链组装复合物(LUBaC)的第三个组成部分

摘要

Tumour necrosis factor (TNF) is an important cytokine with great physiological relevance and effects ranging from pro-inflammatory to immuno-regulatory functions. On a cellular level, it induces signalling processes by crosslinking its receptors and by initiating the formation of an intracellular, multi-protein receptor-signalling complex (RSC). Investigation of the TNF-RSC by modified tandem affinity purification (moTAP) and mass spectrometry revealed the presence of three novel components in this complex: heme-oxidised IRP2 ubiquitin ligase-1 (HOIL-1), HOIL-1-interacting protein (HOIP) and SHANK-associated RH-domain-interacting protein (SHARPIN). Previous studies showed that HOIL-1 and HOIP form an E3-complex that mediates the generation of linearly linked ubiquitin chains and is hence referred to as linear ubiquitin chain assembly complex (LUBAC). Identification of peptides specific for SHARPIN in the mass spectrometric analysis of the native TNF-RSC together with its sequence similarity to HOIL-1 raised the questions whether SHARPIN contributes functionally to TNF-signalling and/or the E3-activity of LUBAC.udIn this thesis, it could be shown that all three proteins are specifically recruited to the TNF-RSC in a cIAP1/2-dependent manner. As SHARPIN, HOIL-1 and HOIP can bind ubiquitin chains this suggests that the three proteins are recruited via cIAP1/2-generated ubiquitin chains. In addition, HOIP is required for presence of SHARPIN and HOIL-1 in the TNF-RSC. This, together with the finding that these three factors form a stimulation-independent protein complex in the cytosol, indicates that LUBAC is recruited to the TNF-RSC as a tripartite complex via its central component HOIP.udIn-vitro ubiquitination assays showed that SHARPIN is not only a physical but also a functional component of LUBAC. HOIP can generate ubiquitin chains when combined with either SHARPIN, HOIL-1 or both and was shown to exclusively generate linear linkages via a HECT-like mechanism. NEMO was identified as a common target of all possible LUBAC-combinations in vitro and, in line with this, the activity of LUBAC is required for full activation of NF-B following TNF stimulation.udThe results obtained in this thesis identify SHARPIN as a third component of LUBAC, an E3-complex that is specifically recruited to the TNF-RSC and regulates TNF signalling by modifying specific target proteins with linearly linked ubiquitin chains.
机译:肿瘤坏死因子(TNF)是一种重要的细胞因子,具有重要的生理意义,其作用范围从促炎到免疫调节功能不等。在细胞水平上,它通过交联其受体并启动细胞内多蛋白受体信号复合物(RSC)的形成来诱导信号传导过程。通过修饰的串联亲和纯化(moTAP)和质谱对TNF-RSC的研究揭示了该复合物中存在三种新成分:血红素氧化的IRP2泛素连接酶1(HOIL-1),HOIL-1相互作用蛋白(HOIP )和SHANK相关的RH域相互作用蛋白(SHARPIN)。先前的研究表明,HOIL-1和HOIP形成一个E3复合物,该复合物介导线性连接的泛素链的生成,因此被称为线性泛素链组装复合物(LUBAC)。在天然TNF-RSC的质谱分析中对SHARPIN特异的肽的鉴定及其与HOIL-1的序列相似性提出了一个问题,即SHARPIN是否在功能上有助于TNF信号和/或LUBAC的E3活性。论文表明,这三种蛋白都以依赖cIAP1 / 2的方式特异性地募集到TNF-RSC中。由于SHARPIN,HOIL-1和HOIP可以结合泛素链,这表明这三种蛋白是通过cIAP1 / 2产生的泛素链募集的。此外,TNF-RSC中存在SHARPIN和HOIL-1时需要HOIP。这以及发现这三个因素在胞质溶胶中形成非刺激性蛋白复合物的发现,表明LUBAC通过其中心成分HOIP作为三重复合物被募集到TNF-RSC中。 udin体外泛素化试验表明SHARPIN它不仅是LUBAC的物理组件,还是功能组件。当与SHARPIN,HOIL-1或两者结合使用时,HOIP可以产生泛素链,并被证明可以通过类似HECT的机制专门产生线性连接。 NEMO被确定为体外所有可能的LUBAC组合的共同靶标,因此,LUBAC的活性是TNF刺激后NF-B完全活化所必需的。 ud本文的结果将SHARPIN确定为LUBAC的第三个成分,一种E3复合物,被特异性地募集到TNF-RSC,并通过用线性连接的泛素链修饰特定的靶蛋白来调节TNF信号传导。

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    Schmukle Anna;

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  • 年度 2012
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  • 正文语种 eng
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