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泛素化诱导的构象控制调节体内的 Cullin-RING 连接酶活性。

Neddylation-induced conformational control regulates cullin RING ligase activity in vivo.

机构信息

NUS Graduate School for Integrative Sciences and Engineering (NGS), National University of Singapore, Singapore 117456, Singapore.

出版信息

J Mol Biol. 2011 Jun 3;409(2):136-45. doi: 10.1016/j.jmb.2011.03.023. Epub 2011 Apr 2.

Abstract

Cullin RING ligases (CRLs) constitute the largest family of ubiquitin ligases with diverse cellular functions. Conjugation of the ubiquitin-like molecule Nedd8 to a conserved lysine residue on the cullin scaffold is essential for the activity of CRLs. Using structural studies and in vitro assays, it has been demonstrated that neddylation stimulates CRL activity through conformational rearrangement of the cullin C-terminal winged-helix B domain and Rbx1 RING subdomain from a closed architecture to an open and dynamic structure, thus promoting ubiquitin transfer onto the substrate. Here, we tested whether the proposed mechanism operates in vivo in intact cells and applies to other CRL family members. To inhibit cellular neddylation, we used a cell line with tetracycline-inducible expression of a dominant-negative form of the Nedd8 E2 enzyme or treatment of cells with the Nedd8 E1 inhibitor MLN4924. Using these cellular systems, we show that different mutants of Cul2 and Cul3 and of Rbx1 that confer increased Rbx1 flexibility mimic neddylation and rescue CRL activity in intact cells. Our findings indicate that in vivo neddylation functions by inducing conformational changes in the C-terminal domain of Cul2 and Cul3 that free the RING domain of Rbx1 and bridge the gap for ubiquitin transfer onto the substrate.

摘要

Cullin RING 连接酶(CRLs)构成了泛素连接酶家族中最大的家族,具有多种细胞功能。将类泛素分子 Nedd8 缀合到连接酶骨架上的保守赖氨酸残基上对于 CRL 的活性是必不可少的。通过结构研究和体外测定,已经证明 neddylation 通过 Cullin C 端翼状螺旋 B 结构域和 Rbx1 RING 亚结构域的构象重排从封闭结构到开放和动态结构来刺激 CRL 活性,从而促进泛素转移到底物上。在这里,我们测试了所提出的机制是否在完整细胞中体内起作用,并适用于其他 CRL 家族成员。为了抑制细胞内的 neddylation,我们使用了一种带有四环素诱导表达的 Nedd8 E2 酶显性负形式的细胞系,或用 Nedd8 E1 抑制剂 MLN4924 处理细胞。使用这些细胞系统,我们表明,赋予 Rbx1 更大灵活性的 Cul2 和 Cul3 的不同突变体以及 Rbx1 模拟 neddylation 并在完整细胞中挽救 CRL 活性。我们的研究结果表明,体内的 neddylation 通过诱导 Cul2 和 Cul3 的 C 端结构域发生构象变化来发挥作用,从而释放 Rbx1 的 RING 结构域并为泛素转移到底物上搭桥。

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