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Model of the Ankyrin and SOCS Box Protein, ASB9, E3 Ligase Reveals a Mechanism for Dynamic Ubiquitin Transfer

机译:锚蛋白和sOCs盒蛋白,asB9,E3连接酶的模型揭示了动态泛素转移的机制。

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摘要

Cullin-RING E3 ligases (CRLs) are elongated and bowed protein complexes that transfer ubiquitin over 60 angstrom to proteins targeted for proteasome degradation. One such CRL contains the ankyrin repeat and SOCS box protein 9 (ASB9), which binds to and partially inhibits creatine kinase (CK). While current models for the ASB9-CK complex contain some known interface residues, the overall structure and precise interface of the ASB9-CK complex remains unknown. Through an integrative modeling approach, we report a third-generation model that reveals precisely the interface interactions and also fits the shape of the ASB9-CK complex as determined by small-angle X-ray scattering. We constructed an atomic model for the entire CK-targeting CRL to uncover dominant modes of motion that could permit ubiquitin transfer. Remarkably, only the correctly docked CK-containing E3 ligase and not incorrectly docked structures permitted close approach of ubiquitin to the CK substrate.
机译:Cullin-ring E3连接酶(CRL)是细长的且弯曲的蛋白复合物,可将超过60埃的泛素转移至靶向蛋白酶体降解的蛋白。一种这样的CRL包含锚蛋白重复序列​​和SOCS框蛋白9(ASB9),该蛋白结合并部分抑制肌酸激酶(CK)。尽管当前的ASB9-CK复合物模型包含一些已知的界面残基,但ASB9-CK复合物的整体结构和精确界面仍然未知。通过集成建模方法,我们报告了第三代模型,该模型精确揭示了界面相互作用,并且也适合由小角度X射线散射确定的ASB9-CK复合物的形状。我们为整个靶向CK的CRL构建了原子模型,以揭示可能允许泛素转移的主要运动模式。值得注意的是,只有正确对接的含CK的E3连接酶和不正确对接的结构才允许泛素接近CK底物。

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