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Structural insights into NEDD8 activation of Cullin-RING ligases: Conformational control of conjugation

机译:Cullin环形连接酶的NEDD8激活的结构见解:共轭的构象控制

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摘要

Cullin-RING ligases (CRLs) comprise the largest ubiquitin E3 subclass, in which a central cullin subunit links a substrate-binding adaptor with an E2-binding RING. Covalent attachment of the ubiquitin-like protein NEDD8 to a conserved C-terminal domain (ctd) lysine stimulates CRL ubiquitination activity and prevents binding of the inhibitor CAND1. Here we report striking conformational rearrangements in the crystal structure of NEDD8 similar to CuI5(ctd)-Rbx1 and SAXS analysis of NEDD8 similar to CuI1(ctd)-Rbx1 relative to their unmodified counterparts. In NEDD8ylated CRL structures, the cullin WHB and Rbx1 RING subdomains are dramatically reoriented, eliminating a CAND1-binding site and imparting multiple potential catalytic geometries to an associated E2. Biochemical analyses indicate that the structural malleability is important for both CRL NEDD8ylation and subsequent ubiquitination activities. Thus, our results point to a conformational control of CRL activity, with ligation of NEDD8 shifting equilibria to disfavor inactive CAND1-bound closed architectures, and favor dynamic, open forms that promote polyubiquitination.
机译:Cullin-环形连接酶(CRL)包含最大的泛素E3亚类,其中中心Cullin亚基将底物结合衔接子与E2结合环联系起来。将遍突蛋白样蛋白NEDD8与保守的C末端结构域(CTD)赖氨酸的共价附着刺激CRL泛素化活性并防止抑制剂CAND1的结合。在这里,我们在类似于Cul5(CTD)-RBX1的NEDD8的晶体结构中报告略微的构象重排,以及相对于其未修饰的对应物类似于CUI1(CTD)-RBX1的NEDD8的SAXS分析。在NEDD8化的CRL结构中,CULLIN WHB和RBX1环亚域被显着重新定向,消除了CAND1结合位点并赋予相关E2的多个电位催化几何。生物化学分析表明,结构性术术对CRL NEDDα和随后的泛素化活性很重要。因此,我们的结果指出了CRL活性的一致性控制,并结扎了NEDD8转换平衡,以涉及不活跃的烛光封闭的架构,并有利于促进泛温的动态,打开形式。

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