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p62(SQSTM1)泛素相关结构域的结构及其对导致骨佩吉特病的突变的影响。

Structure of the ubiquitin-associated domain of p62 (SQSTM1) and implications for mutations that cause Paget's disease of bone.

作者信息

Ciani Barbara, Layfield Robert, Cavey James R, Sheppard Paul W, Searle Mark S

机构信息

School of Chemistry, University Park, Nottingham NG7 2RD, United Kingdom.

出版信息

J Biol Chem. 2003 Sep 26;278(39):37409-12. doi: 10.1074/jbc.M307416200. Epub 2003 Jul 11.

Abstract

The p62 protein (also known as SQSTM1) mediates diverse cellular functions including control of NFkappaB signaling and transcriptional activation. p62 binds non-covalently to ubiquitin and co-localizes with ubiquitylated inclusions in a number of human protein aggregation diseases. Mutations in the gene encoding p62 cause Paget's disease of bone (PDB), a common disorder of the elderly characterized by excessive bone resorption and formation. All of the p62 PDB mutations identified to date cluster within the C-terminal region of the protein, which shows low sequence identity to previously characterized ubiquitin-associated (UBA) domains. We report the first NMR structure of a recombinant polypeptide that contains the C-terminal UBA domain of the human p62 protein (residues 387-436). This sequence, which confers multiubiquitin chain binding, forms a compact three-helix bundle with a structure analogous to the UBA domains of HHR23A but with differences in the loop regions connecting helices that may be involved in binding accessory proteins. We show that the Pro392 --> Leu PDB substitution mutation modifies the structure of the UBA domain by extending the N terminus of helix 1. In contrast to the p62 PDB deletion mutations that remove the UBA domain and ablate multiubiquitin chain binding, the Pro392 --> Leu substitution does not affect interaction of the UBA domain with multiubiquitin chains. Thus, phenotypically identical substitution and deletion mutations do not appear to predispose to PDB through a mechanism dependent on a common loss of ubiquitin chain binding by p62.

摘要

p62蛋白(也称为SQSTM1)介导多种细胞功能,包括对NFκB信号传导的控制和转录激活。p62与泛素非共价结合,并在多种人类蛋白质聚集疾病中与泛素化包涵体共定位。编码p62的基因突变会导致佩吉特骨病(PDB),这是一种常见的老年疾病,其特征是骨吸收和形成过多。迄今为止鉴定出的所有p62 PDB突变都集中在该蛋白的C末端区域,该区域与先前表征的泛素相关(UBA)结构域的序列同一性较低。我们报道了一种重组多肽的首个核磁共振结构,该多肽包含人p62蛋白的C末端UBA结构域(第387 - 436位氨基酸残基)。这个赋予多聚泛素链结合能力的序列形成了一个紧密的三螺旋束,其结构类似于HHR23A的UBA结构域,但连接螺旋的环区域存在差异,这些差异可能与结合辅助蛋白有关。我们表明,Pro392→Leu PDB替代突变通过延伸螺旋1的N末端改变了UBA结构域的结构。与去除UBA结构域并消除多聚泛素链结合的p62 PDB缺失突变不同,Pro392→Leu替代并不影响UBA结构域与多聚泛素链的相互作用。因此,表型相同的替代和缺失突变似乎并非通过依赖p62泛素链结合共同丧失的机制而导致PDB。

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