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Activation of the canonical IKK complex by K63/M1-linked hybrid ubiquitin chains

机译:通过K63 / M1连接的杂合泛素链激活经典IKK复合物

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摘要

Polyubiquitin (pUb) chains formed between the C terminus of ubiquitin and lysine 63 (K63) or methionine 1 (M1) of another ubiquitin have been implicated in the activation of the canonical IκB kinase (IKK) complex. Here, we demonstrate that nearly all of the M1-pUb chains formed in response to interleukin-1, or the Toll-Like Receptors 1/2 agonist Pam3CSK4, are covalently attached to K63-pUb chains either directly as K63-pUb/M1-pUb hybrids or indirectly by attachment to the same protein. Interleukin-1 receptor (IL-1R)-associated kinase (IRAK) 1 is modified first by K63-pUb chains to which M1-pUb linkages are added subsequently, and myeloid differentiation primary response gene 88 (MyD88) and IRAK4 are also modified by both K63-pUb and M1-pUb chains. We show that the heme-oxidized IRP2 ubiquitin ligase 1 interacting protein (HOIP) component of the linear ubiquitin assembly complex catalyzes the formation of M1-pUb chains in response to interleukin-1, that the formation of K63-pUb chains is a prerequisite for the formation of M1-pUb chains, and that HOIP interacts with K63-pUb but not M1-pUb linkages. These findings identify K63-Ub oligomers as a major substrate of HOIP in cells where the MyD88-dependent signaling network is activated. The TGF-beta–activated kinase 1 (TAK1)-binding protein (TAB) 2 and TAB3 components of the TAK1 complex and the NFκB Essential Modifier (NEMO) component of the canonical IKK complex bind to K63-pUb chains and M1-pUb chains, respectively. The formation of K63/M1-pUb hybrids may therefore provide an elegant mechanism for colocalizing both complexes to the same pUb chain, facilitating the TAK1-catalyzed activation of IKKα and IKKβ. Our study may help to resolve the debate about the relative importance of K63-pUb and M1-pUb chains in activating the canonical IKK complex.
机译:泛素C末端与另一泛素的赖氨酸63(K63)或蛋氨酸1(M1)之间形成的聚泛素(pUb)链与经典IκB激酶(IKK)复合物的活化有关。在这里,我们证明了几乎所有对白介素1或Toll样受体1/2激动剂Pam3CSK4形成的M1-pUb链都直接与K63-pUb / M1-共价连接到K63-pUb链上pUb杂种或通过附着到同一蛋白质间接产生。首先通过K63-pUb链修饰白介素-1受体(IL-1R)相关激酶(IRAK)1,随后在其上添加M1-pUb链接,并通过以下方式修饰髓样分化初级应答基因88(MyD88)和IRAK4: K63-pUb和M1-pUb链。我们显示,线性泛素装配复合物的血红素氧化的IRP2泛素连接酶1相互作用蛋白(HOIP)组件可响应白细胞介素1催化M1-pUb链的形成,K63-pUb链的形成是M1-pUb链的形成,以及HOIP与K63-pUb相互作用但与M1-pUb链接不相互作用。这些发现确定了K63-Ub低聚物是激活MyD88依赖性信号网络的细胞中HOIP的主要底物。 TAK1复合物的TGF-β活化激酶1(TAK1)结合蛋白(TAB1)2和TAB3组件以及规范IKK复合物的NFκB基本修饰剂(NEMO)组件与K63-pUb链和M1-pUb链结合, 分别。因此,K63 / M1-pUb杂合体的形成可以提供一种优雅的机制,将两个复合物共定位到同一pUb链,从而促进TAK1催化的IKKα和IKKβ活化。我们的研究可能有助于解决有关K63-pUb和M1-pUb链在激活经典IKK复合物中的相对重要性的争论。

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