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Inclusion body myopathy-associated mutations in p97/VCP impair endoplasmic reticulum-associated degradation.

机译:p97 / VCP中包涵体肌病相关的突变会损害内质网相关的降解。

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Mutations in the AAA+ protein (ATPase associated with a variety of cellular activities) p97/VCP (valosin-containing protein) cause a dominantly inherited syndrome of inclusion body myopathy with Paget's disease of the bone and fronto-temporal dementia (IBMPFD). p97/VCP is a ubiquitously expressed protein that participates in a number of cellular processes including endoplasmic reticulum-associated degradation (ERAD). p97/VCP aids in the extraction of ubiquitinated proteins from the endoplasmic reticulum (ER) and facilitates their delivery to the proteasome. This study focuses on the effects of disease-associated p97/VCP mutations on this pathway. We show that p97/VCP containing the most prevalent IBMPFD-associated mutation, R155H, has normal ATPase activity and hexameric structure. However, when expressed in cultured cells, both this and a second IBMPFD-associated p97/VCP mutant increase the overall level of ubiquitin-conjugated proteins and specifically impair degradation of mutant DeltaF508-CFTR handled by the ERAD pathway. These effects are similar to those previously described for an ATPase deficient p97/VCP mutant and suggest that IBMPFD mutations impair p97/VCP cellular function. In a subset of cells, IBMPFD mutations also promote formation of aggregates that contain p97/VCP, ubiquitin conjugates and ER-resident proteins. Undegraded mutant DeltaF508-CFTR also accumulates in these aggregates. We conclude that IBMPFD mutations in p97/VCP disrupt ERAD and that this may contribute to the pathogenesis of IBMPFD.
机译:AAA +蛋白(与多种细胞活动相关的ATPase)中的突变p97 / VCP(含valosin蛋白)会导致显性遗传性包涵体肌病综合征,包括佩吉特氏骨病和额颞痴呆症(IBMPFD)。 p97 / VCP是一种普遍表达的蛋白,它参与许多细胞过程,包括内质网相关降解(ERAD)。 p97 / VCP有助于从内质网(ER)提取泛素化的蛋白质,并有助于将其递送至蛋白酶体。这项研究的重点是与疾病相关的p97 / VCP突变对该途径的影响。我们显示p97 / VCP包含最普遍的IBMPFD相关突变,R155H,具有正常的ATPase活性和六聚体结构。但是,当在培养的细胞中表达时,此突变体和第二个与IBMPFD相关的p97 / VCP突变体都增加了泛素结合蛋白的总体水平,并且特别损害了ERAD途径处理的突变体DeltaF508-CFTR的降解。这些作用与先前针对ATPase缺陷的p97 / VCP突变体所描述的相似,表明IBMPFD突变会损害p97 / VCP细胞功能。在细胞的一个子集中,IBMPFD突变还促进包含p97 / VCP,泛素结合物和ER驻留蛋白的聚集体的形成。未降解的突变体DeltaF508-CFTR也累积在这些聚集体中。我们得出结论,p97 / VCP中的IBMPFD突变会破坏ERAD,这可能是IBMPFD的发病机理。

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