Structural Genomics Consortium, University of Oxford, Old Road Campus Research Building, Roosevelt Drive, Oxford OX3 7DQ, United Kingdom.
J Mol Biol. 2013 Sep 9;425(17):3166-77. doi: 10.1016/j.jmb.2013.06.015. Epub 2013 Jun 25.
Multi-subunit Cullin-RING E3 ligases often use repeat domain proteins as substrate-specific adaptors. Structures of these macromolecular assemblies are determined for the F-box-containing leucine-rich repeat and WD40 repeat families, but not for the suppressor of cytokine signaling (SOCS)-box-containing ankyrin repeat proteins (ASB1-18), which assemble with Elongins B and C and Cul5. We determined the crystal structures of the ternary complex of ASB9-Elongin B/C as well as the interacting N-terminal domain of Cul5 and used structural comparisons to establish a model for the complete Cul5-based E3 ligase. The structures reveal a distinct architecture of the ASB9 complex that positions the ankyrin domain coaxial to the SOCS box-Elongin B/C complex and perpendicular to other repeat protein complexes. This alternative architecture appears favorable to present the ankyrin domain substrate-binding site to the E2-ubiquitin, while also providing spacing suitable for bulky ASB9 substrates, such as the creatine kinases. The presented Cul5 structure also differs from previous models and deviates from other Cullins via a rigid-body rotation between Cullin repeats. This work highlights the adaptability of repeat domain proteins as scaffolds in substrate recognition and lays the foundation for future structure-function studies of this important E3 family.
多亚基 Cullin-RING E3 连接酶通常使用重复结构域蛋白作为底物特异性衔接蛋白。这些大分子组装体的结构已确定为含有 F-box 的富含亮氨酸重复和 WD40 重复家族,但不包括含有细胞因子信号转导抑制因子(SOCS)框的锚蛋白重复蛋白(ASB1-18),后者与 Elongin B 和 C 和 Cul5 组装。我们确定了 ASB9-Elongin B/C 三元复合物以及 Cul5 相互作用的 N 端结构域的晶体结构,并通过结构比较建立了完整基于 Cul5 的 E3 连接酶模型。结构揭示了 ASB9 复合物的独特结构,使锚蛋白结构域与 SOCS 框-Elongin B/C 复合物同轴,并与其他重复蛋白复合物垂直。这种替代结构似乎有利于将锚蛋白结构域的底物结合位点呈现给 E2-泛素,同时也为 ASB9 等大体积底物提供合适的间隔。所呈现的 Cul5 结构也与之前的模型不同,并且通过 Cullin 重复之间的刚体旋转与其他 Cullins 偏离。这项工作强调了重复结构域蛋白作为底物识别支架的适应性,并为该重要 E3 家族的未来结构功能研究奠定了基础。