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Molecular Architecture of the Ankyrin SOCS Box Family of Cul5-Dependent E3 Ubiquitin Ligases

机译:Cul5依赖的E3泛素Ligas的锚蛋白SOCS盒家族的分子结构。

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摘要

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.
机译:Cullin-RING E3多亚基连接酶通常使用重复域蛋白作为底物特异性衔接子。这些大分子装配体的结构是针对富含F-box的富含亮氨酸的重复序列和WD40重复序列家族确定的,而不是针对细胞因子信号转导(SOCS)-box的锚蛋白重复蛋白(ASB1-18)的抑制子确定的, Elongins B,C和Cul5。我们确定了ASB9–Elongin B / C三元复合物的晶体结构以及Cul5的相互作用N末端结构域,并使用结构比较建立了基于Cul5的完整E3连接酶的模型。这些结构揭示了ASB9复合物的独特结构,该结构将锚蛋白域定位在与SOCS盒-Elongin B / C复合物同轴且垂直于其他重复蛋白复合物的位置。这种替代结构似乎有利于将锚蛋白结构域底物结合位点呈现给E2-泛素,同时还提供适合于庞大的ASB9底物(例如肌酸激酶)的间隔。呈现的Cul5结构也与以前的模型不同,并且通过Cullin重复序列之间的刚体旋转而偏离了其他Cullins。这项工作突出了重复结构域蛋白作为支架在底物识别中的适应性,并为这个重要的E3家族的未来结构功能研究奠定了基础。

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