首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Interaction between the AAA ATPase p97/VCP and a concealed UBX domain in the copper transporter ATP7A is associated with motor neuron degeneration
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Interaction between the AAA ATPase p97/VCP and a concealed UBX domain in the copper transporter ATP7A is associated with motor neuron degeneration

机译:AAA ATPase p97 / VCP与铜转运蛋白ATP7A中隐藏的UBX域之间的相互作用与运动神经元变性有关

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摘要

The copper-transporting ATPase ATP7A contains eight transmembrane domains and is required for normal human copper homeostasis. Mutations in the ATP7A gene may lead to infantile-onset cerebral degeneration (Menkes disease); occipital horn syndrome (OHS), a related but much milder illness; or an adult-onset isolated distal motor neuropathy. The ATP7A missense mutation T994I is located in the sixth transmembrane domain of ATP7A, represents one of the variants associated with the latter phenotype, and is associated with an abnormal interaction with p97/valosin-containing protein (VCP), a hexameric AAA ATPase (ATPase associated with diverse cellular activities) with multiple biological functions. In this study, we further characterized this interaction and discovered a concealed UBX domain in the third lumenal loop of ATP7A, between its fifth and sixth transmembrane domains. We show that the T994I substitution results in conformational exposure of the UBX domain, which then binds the N-terminal domain of p97/VCP. We also show that this abnormal interaction occurs at or near the cell plasma membrane. The UBX domain has a conserved hydrophobic FP (Phe-Pro) motif, and substitution with di-alanine abrogated the interaction and restored the proper intracellular localization of ATP7A in the trans-Golgi network. Using protein MS, we identified potential coordinating components of the ATP7AT994I–p97 complex, including NSFL1 cofactor (NSF1C or p47) that may be relevant to the pathophysiology and clinical effects associated with ATP7AT994I. Our study represents the first report of p97/VCP binding to a UBX domain that is not normally exposed, resulting in an aberrant protein–protein interaction leading to motor neuron degeneration.
机译:铜转运ATPase ATP7A包含八个跨膜结构域,是正常人类铜稳态所需的。 ATP7A基因的突变可能导致婴儿发作性脑变性(门克斯病);枕角综合征(OHS),一种相关但较轻的疾病;或成人发作的远端运动神经病。 ATP7A错义突变T994I位于ATP7A的第六个跨膜结构域中,代表与后者表型相关的变体之一,并且与六聚体AAA ATPase(ATPase)的含p97 / valosin的蛋白(VCP)异常相互作用相关。与多种细胞活动有关)具有多种生物学功能。在这项研究中,我们进一步表征了这种相互作用,并在ATP7A的第五个和第六个跨膜结构域之间的第三腔环中发现了一个隐藏的UBX结构域。我们显示,T994I取代导致UBX域的构象暴露,然后结合p97 / VCP的N端域。我们还表明这种异常的相互作用发生在细胞质膜上或附近。 UBX结构域具有保守的疏水FP(Phe-Pro)基序,用二丙氨酸取代可消除相互作用并恢复反式高尔基体网络中ATP7A的正确胞内定位。使用蛋白质MS,我们确定了ATP7A T994I -p97复合物的潜在协调成分,包括NSFL1辅助因子(NSF1C或p47),可能与ATP7A T994I < / sup>。我们的研究代表了p97 / VCP与通常不暴露的UBX域结合的第一份报告,导致蛋白与蛋白之间的异常相互作用导致运动神经元变性。

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