首页> 美国卫生研究院文献>Molecular and Cellular Biology >Hereditary Inclusion Body Myopathy-Linked p97/VCP Mutations in the NH2 Domain and the D1 Ring Modulate p97/VCP ATPase Activity and D2 Ring Conformation
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Hereditary Inclusion Body Myopathy-Linked p97/VCP Mutations in the NH2 Domain and the D1 Ring Modulate p97/VCP ATPase Activity and D2 Ring Conformation

机译:NH2域和D1环的遗传性包涵体肌病相关的p97 / VCP突变调节p97 / VCP ATPase活性和D2环构型

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摘要

Hereditary inclusion body myopathy associated with early-onset Paget disease of bone and frontotemporal dementia (hIBMPFTD) is a degenerative disorder caused by single substitutions in highly conserved residues of p97/VCP. All mutations identified thus far cluster within the NH2 domain or the D1 ring, which are both required for communicating conformational changes to adaptor protein complexes. In this study, biochemical approaches were used to identify the consequences of the mutations R155P and A232E on p97/VCP structure. Assessment of p97/VCP oligomerization revealed that p97R155P and p97A232E formed hexameric ring-shaped structures of ∼600 kDa. p97R155P and p97A232E exhibited an ∼3-fold increase in ATPase activity compared to wild-type p97 (p97WT) and displayed increased sensitivity to heat-induced upregulation of ATPase activity. Protein fluorescence analysis provided evidence for conformational differences in the D2 rings of both hIBMPFTD mutants. Furthermore, both mutations increased the proteolytic susceptibility of the D2 ring. The solution structures of all p97/VCP proteins revealed a didispersed distribution of a predominant hexameric population and a minor population of large-diameter complexes. ATP binding significantly increased the abundance of large-diameter complexes for p97R155P and p97A232E, but not p97WT or the ATP-binding mutant p97K524A. Therefore, we propose that hIBMPFTD p97/VCP mutants p97R155P and p97A232E possess structural defects that may compromise the mechanism of p97/VCP activity within large multiprotein complexes.
机译:与骨骼的早期发作Paget病和额颞叶痴呆(hIBMPFTD)相关的遗传性包涵体肌病是由高度保守的p97 / VCP残基的单取代引起的变性疾病。到目前为止,鉴定出的所有突变都聚集在NH2结构域或D1环内,这都是将构象变化传达给衔接子蛋白复合物所必需的。在这项研究中,使用生化方法来鉴定突变R155P和A232E对p97 / VCP结构的影响。对p97 / VCP低聚的评估表明,p97 R155P 和p97 A232E 形成了约600 kDa的六聚环结构。与野生型p97(p97 WT )相比,p97 R155P 和p97 A232E 的ATPase活性提高了约3倍。热诱导的ATPase活性上调。蛋白荧光分析提供了两个hIBMPFTD突变体的D2环构象差异的证据。此外,两个突变都增加了D2环的蛋白水解敏感性。所有p97 / VCP蛋白的溶液结构显示主要六聚体群体和次要群体的大直径复合物呈双分散分布。 ATP结合显着增加了p97 R155P 和p97 A232E 的大直径复合物的丰度,但不增强p97 WT 或与ATP结合的突变体p97 K524A 。因此,我们认为hIBMPFTD p97 / VCP突变体p97 R155P 和p97 A232E 具有结构缺陷,可能会损害大型多蛋白复合物中p97 / VCP活性的机制。

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