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p62的泛素相关结构域对泛素的识别涉及一种新型构象转换。

Ubiquitin recognition by the ubiquitin-associated domain of p62 involves a novel conformational switch.

作者信息

Long Jed, Gallagher Thomas R A, Cavey James R, Sheppard Paul W, Ralston Stuart H, Layfield Robert, Searle Mark S

机构信息

School of Chemistry, Centre for Biomolecular Sciences, University of Nottingham, Nottingham NG7 2RD, United Kingdom.

出版信息

J Biol Chem. 2008 Feb 29;283(9):5427-40. doi: 10.1074/jbc.M704973200. Epub 2007 Dec 14.

Abstract

The p62 protein functions as a scaffold in signaling pathways that lead to activation of NF-kappaB and is an important regulator of osteoclastogenesis. Mutations affecting the receptor activator of NF-kappaB signaling axis can result in human skeletal disorders, including those identified in the C-terminal ubiquitin-associated (UBA) domain of p62 in patients with Paget disease of bone. These observations suggest that the disease may involve a common mechanism related to alterations in the ubiquitin-binding properties of p62. The structural basis for ubiquitin recognition by the UBA domain of p62 has been investigated using NMR and reveals a novel binding mechanism involving a slow exchange structural reorganization of the UBA domain to a "bound" non-canonical UBA conformation that is not significantly populated in the absence of ubiquitin. The repacking of the three-helix bundle generates a binding surface localized around the conserved Xaa-Gly-Phe-Xaa loop that appears to optimize both hydrophobic and electrostatic surface complementarity with ubiquitin. NMR titration analysis shows that the p62-UBA binds to Lys 48-linked di-ubiquitin with approximately 4-fold lower affinity than to mono-ubiquitin, suggesting preferential binding of the p62-UBA to single ubiquitin units, consistent with the apparent in vivo preference of the p62 protein for Lys 63-linked polyubiquitin chains (which adopt a more open and extended structure). The conformational switch observed on binding may represent a novel mechanism that underlies specificity in regulating signalinduced protein recognition events.

摘要

p62蛋白在导致核因子κB(NF-κB)激活的信号通路中起支架作用,是破骨细胞生成的重要调节因子。影响NF-κB信号轴受体激活剂的突变可导致人类骨骼疾病,包括在骨Paget病患者中p62的C末端泛素相关(UBA)结构域中发现的那些突变。这些观察结果表明,该疾病可能涉及与p62泛素结合特性改变相关的共同机制。已使用核磁共振(NMR)研究了p62的UBA结构域识别泛素的结构基础,结果揭示了一种新的结合机制,该机制涉及UBA结构域缓慢交换重排为“结合”的非经典UBA构象,在没有泛素的情况下该构象的丰度不高。三螺旋束的重新排列产生了一个围绕保守的Xaa-Gly-Phe-Xaa环定位的结合表面,该表面似乎优化了与泛素的疏水和静电表面互补性。NMR滴定分析表明,p62-UBA与赖氨酸48连接的双泛素结合的亲和力比与单泛素结合的亲和力低约4倍,这表明p62-UBA对单个泛素单元具有优先结合,这与p62蛋白在体内对赖氨酸63连接的多泛素链(其采用更开放和伸展的结构)的明显偏好一致。结合时观察到的构象转换可能代表了一种新机制,该机制是调节信号诱导的蛋白质识别事件特异性的基础。

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