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神经前体细胞表达的发育性下调蛋白4-2(Nedd4-2)/NEDD4L催化的多聚泛素链组装机制

The mechanism of neural precursor cell expressed developmentally down-regulated 4-2 (Nedd4-2)/NEDD4L-catalyzed polyubiquitin chain assembly.

作者信息

Todaro Dustin R, Augustus-Wallace Allison C, Klein Jennifer M, Haas Arthur L

机构信息

From the Department of Biochemistry and Molecular Biology and.

From the Department of Biochemistry and Molecular Biology and

出版信息

J Biol Chem. 2017 Nov 24;292(47):19521-19536. doi: 10.1074/jbc.M117.817882. Epub 2017 Sep 28.

Abstract

The mechanism of Nedd4-2 has been quantitatively explored for the first time using biochemically defined kinetic assays examining rates of I-polyubiquitin chain assembly as a functional readout. We demonstrate that Nedd4-2 exhibits broad specificity for E2 paralogs of the Ubc4/5 clade to assemble Lys-linked polyubiquitin chains. Full-length Nedd4-2 catalyzes free I-polyubiquitin chain assembly by hyperbolic Michaelis-Menten kinetics with respect to Ubc5B∼ubiquitin thioester concentration ( = 44 ± 6 nm; = 0.020 ± 0.007 s) and substrate inhibition above 0.5 μm ( = 2.5 ± 1.3 μm) that tends to zero velocity, requiring ordered binding at two functionally distinct E2∼ubiquitin-binding sites. The Ubc5BC85A product analog non-competitively inhibits Nedd4-2 ( = 2.0 ± 0.5 μm), consistent with the presence of the second E2-binding site. In contrast, the isosteric Ubc5BC85S-ubiquitin oxyester substrate analog exhibits competitive inhibition at the high-affinity Site 1 ( = 720 ± 340 nm) and non-essential activation at the lower-affinity Site 2 ( = 750 ± 260 nm). Additional studies utilizing Ubc5BF62A, defective in binding the canonical E2 site, demonstrate that the cryptic Site 1 is associated with thioester formation, whereas binding at the canonical site (Site 2) is associated with polyubiquitin chain elongation. Finally, previously described Ca-dependent C2 domain-mediated autoinhibition of Nedd4-2 is not observed under our reported experimental conditions. These studies collectively demonstrate that Nedd4-2 catalyzes polyubiquitin chain assembly by an ordered two-step mechanism requiring two dynamically linked E2∼ubiquitin-binding sites analogous to that recently reported for E6AP, the founding member of the Hect ligase family.

摘要

首次使用生物化学定义的动力学分析方法,以I型多聚泛素链组装速率作为功能读数,对Nedd4-2的机制进行了定量探索。我们证明,Nedd4-2对Ubc4/5进化枝的E2旁系同源物表现出广泛的特异性,以组装赖氨酸连接的多聚泛素链。全长Nedd4-2通过关于Ubc5B泛素硫酯浓度的双曲线米氏动力学催化游离I型多聚泛素链组装(Km = 44 ± 6 nM;kcat = 0.020 ± 0.007 s),并且在高于0.5 μM时存在底物抑制(Ki = 2.5 ± 1.3 μM),这趋于零速度,需要在两个功能不同的E2泛素结合位点进行有序结合。Ubc5BC85A产物类似物非竞争性抑制Nedd4-2(Ki = 2.0 ± 0.5 μM),这与第二个E2结合位点的存在一致。相比之下,等排的Ubc5BC85S-泛素氧酯底物类似物在高亲和力位点1表现出竞争性抑制(Ki = 720 ± 340 nM),在低亲和力位点2表现出非必需激活(Ki = 750 ± 260 nM)。利用在结合经典E2位点方面有缺陷的Ubc5BF62A进行的额外研究表明,隐秘位点1与硫酯形成相关,而在经典位点(位点2)的结合与多聚泛素链延伸相关。最后,在我们报道的实验条件下未观察到先前描述的钙依赖性C2结构域介导的Nedd4-2自抑制。这些研究共同证明,Nedd4-2通过有序的两步机制催化多聚泛素链组装,该机制需要两个动态连接的E2~泛素结合位点,类似于最近报道的Hect连接酶家族的创始成员E6AP。

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