Department of Chemistry, College of Science, Shanghai University, Shanghai, 200444, China; State Key Laboratory of Chemical Biology, Shanghai Institute of Organic Chemistry, University of Chinese Academy of Sciences, Chinese Academy of Sciences, Shanghai, 200032, China.
State Key Laboratory of Chemical Biology, Shanghai Institute of Organic Chemistry, University of Chinese Academy of Sciences, Chinese Academy of Sciences, Shanghai, 200032, China.
Biochem Biophys Res Commun. 2023 Dec 31;689:149239. doi: 10.1016/j.bbrc.2023.149239. Epub 2023 Nov 11.
HOIL-1L and SHARPIN are two essential regulatory subunits of the linear ubiquitin chain assembly complex (LUBAC), which is the only known E3 ligase complex generating linear ubiquitin chains. In addition to their LUBAC-dependent functions, HOIL-1L and SHARPIN alone play crucial roles in many LUBAC-independent cellular processes. Importantly, deficiency of HOIL-1L or SHARPIN leads to severe disorders in humans or mice. However, the mechanistic bases underlying the multi-functions of HOIL-1L and SHARPIN are still largely unknown. Here, we uncover that HOIL-1L and SHARPIN alone can form homo-dimers through their LTM motifs. We solve two crystal structures of the dimeric LTM motifs of HOIL-1L and SHARPIN, which not only elucidate the detailed molecular mechanism underpinning the dimer formations of HOIL-1L and SHARPIN, but also reveal a general mode shared by the LTM motifs of HOIL-1L and SHARPIN for forming homo-dimer or hetero-dimer. Furthermore, we elucidate that the polyglucosan body myopathy-associated HOIL-1L A18P mutation disturbs the structural folding of HOIL-1L LTM, and disrupts the dimer formation of HOIL-1L. In summary, our study provides mechanistic insights into the homo-dimerization of HOIL-1L and SHARPIN mediated by their LTM motifs, and expands our understandings of the multi-functions of HOIL-1L and SHARPIN as well as the etiology of relevant human disease caused by defective HOIL-1L.
HOIL-1L 和 SHARPIN 是线性泛素链组装复合物(LUBAC)的两个必需调节亚基,LUBAC 是唯一已知的产生线性泛素链的 E3 连接酶复合物。除了它们的 LUBAC 依赖性功能外,HOIL-1L 和 SHARPIN 单独在许多 LUBAC 非依赖性细胞过程中发挥关键作用。重要的是,HOIL-1L 或 SHARPIN 的缺乏会导致人类或小鼠出现严重疾病。然而,HOIL-1L 和 SHARPIN 的多功能性的机制基础在很大程度上仍然未知。在这里,我们发现 HOIL-1L 和 SHARPIN 单独可以通过其 LTM 基序形成同源二聚体。我们解决了 HOIL-1L 和 SHARPIN 的二聚体 LTM 基序的两个晶体结构,不仅阐明了 HOIL-1L 和 SHARPIN 二聚体形成的详细分子机制,还揭示了 HOIL-1L 和 SHARPIN 的 LTM 基序共享的一般模式,用于形成同源二聚体或异源二聚体。此外,我们阐明了多聚糖体肌病相关的 HOIL-1L A18P 突变扰乱了 HOIL-1L LTM 的结构折叠,并破坏了 HOIL-1L 的二聚体形成。总之,我们的研究为 HOIL-1L 和 SHARPIN 通过其 LTM 基序介导的同源二聚化提供了机制见解,并扩展了我们对 HOIL-1L 和 SHARPIN 的多功能性以及由缺陷 HOIL-1L 引起的相关人类疾病的病因的理解。