Tumour Immunology Unit, Department of Medicine, Imperial College London, London W12 0NN, UK.
Sci Signal. 2011 Dec 20;4(204):re5. doi: 10.1126/scisignal.2002187.
The covalent attachment of ubiquitin molecules to target proteins is a posttranslational modification that is involved not only in signaling processes leading to protein degradation but also in those resulting in activation, proliferation, and cell death. Ubiquitination is a versatile regulation mechanism: In addition to single ubiquitin molecules, chains consisting of several ubiquitin moieties can also be attached to target proteins. The functional outcome of polyubiquitination depends on the lysine residue within ubiquitin that is used for chain elongation. The reason for this is that the particular linkage between two ubiquitin moieties through a specific lysine residue of one ubiquitin and the C terminus of the other ubiquitin creates a unique binding surface that is specifically recognized by specialized ubiquitin-binding domains. New evidence indicates that besides the seven internal lysine residues of ubiquitin, the N terminus of ubiquitin can also be used as an attachment point, thereby generating linear or M1-linked polyubiquitin chains. An E3 complex consisting of HOIL-1, HOIP, and Sharpin specifically generates such M1-linked ubiquitin chains in the context of various cellular signaling pathways that regulate cell activation and death, and it was named linear ubiquitin chain assembly complex (LUBAC). In this Review, we focus on the biochemistry and physiological role of linear ubiquitin chains generated by LUBAC. We summarize the function of linear ubiquitin chains in signaling pathways downstream of diverse cellular signaling events and provide an outlook on promising future directions of research.
泛素分子与靶蛋白的共价连接是一种翻译后修饰,不仅参与导致蛋白质降解的信号过程,也参与导致蛋白质激活、增殖和细胞死亡的信号过程。泛素化是一种多功能的调节机制:除了单个泛素分子外,由几个泛素部分组成的链也可以连接到靶蛋白上。多泛素化的功能结果取决于用于链延伸的泛素内的赖氨酸残基。原因是通过一个泛素的特定赖氨酸和另一个泛素的 C 末端之间的特定赖氨酸残基,两个泛素部分之间的特殊连接创建了一个独特的结合表面,该表面被专门的泛素结合结构域特异性识别。新的证据表明,除了泛素的七个内部赖氨酸残基外,泛素的 N 末端也可以用作附着点,从而产生线性或 M1 连接的多泛素链。由 HOIL-1、HOIP 和 Sharpin 组成的 E3 复合物在调节细胞激活和死亡的各种细胞信号通路中特异性地产生这种 M1 连接的泛素链,并被命名为线性泛素链组装复合物(LUBAC)。在这篇综述中,我们重点介绍 LUBAC 产生的线性泛素链的生物化学和生理作用。我们总结了线性泛素链在各种细胞信号事件下游信号通路中的功能,并对未来有希望的研究方向进行了展望。