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The Role of the N-Domain in the ATPase Activity of the Mammalian AAA ATPase p97/VCP

机译:N域在哺乳动物AAA ATPase p97 / VCP的ATPase活性中的作用

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摘要

p97/valosin-containing protein (VCP) is a type II ATPase associated with various cellular activities that forms a homohexamer with each protomer containing an N-terminal domain (N-domain); two ATPase domains, D1 and D2; and a disordered C-terminal region. Little is known about the role of the N-domain or the C-terminal region in the p97 ATPase cycle. In the p97-associated human disease inclusion body myopathy associated with Paget disease of bone and frontotemporal dementia, the majority of missense mutations are located at the N-domain D1 interface. Structure-based predictions suggest that such mutations affect the interaction of the N-domain with D1. Here we have tested ten major inclusion body myopathy associated with Paget disease of bone and frontotemporal dementia-linked mutants for ATPase activity and found that all have increased activity over the wild type, with one mutant, p97A232E, having three times higher activity. Further mutagenesis of p97A232E shows that the increase in ATPase activity is mediated through D2 and requires both the N-domain and a flexible ND1 linker. A disulfide mutation that locks the N-domain to D1 in a coplanar position reversibly abrogates ATPase activity. A cryo-EM reconstruction of p97A232E suggests that the N-domains are flexible. Removal of the C-terminal region also reduces ATPase activity. Taken together, our data suggest that the conformation of the N-domain in relation to the D1-D2 hexamer is directly linked to ATP hydrolysis and that the C-terminal region is required for hexamer stability. This leads us to propose a model where the N-domain adopts either of two conformations: a flexible conformation compatible with ATP hydrolysis or a coplanar conformation that is inactive.
机译:p97 / valosin含蛋白(VCP)是与各种细胞活性相关的II型ATPase,与每个前体含有N末端结构域(N结构域)形成同型六聚体。两个ATP酶结构域,D1和D2;和无序的C末端区域。关于N结构域或C末端区域在p97 ATPase循环中的作用知之甚少。在与骨的Paget病和额颞痴呆症相关的与p97相关的人类疾病包涵体肌病中,大多数错义突变位于N结构域D1界面。基于结构的预测表明,此类突变会影响N结构域与D1的相互作用。在这里,我们测试了十种与骨骼Paget病和额颞痴呆相关的突变体相关的主要包涵体肌病的ATPase活性,发现它们均比野生型具有更高的活性,其中一个突变体为p97 A232E ,具有三倍的活性。 p97 A232E 的进一步诱变表明,ATP酶活性的增加是通过D2介导的,需要N结构域和柔性ND1连接子。在共面位置将N结构域锁定到D1的二硫键可逆地消除了ATPase的活性。 p97 A232E 的冷冻-EM重建表明,N结构域是灵活的。 C末端区域的去除也降低了ATP酶活性。两者合计,我们的数据表明,相对于D1-D2六聚体的N域的构象直接与ATP水解相关,并且C端区域是六聚体稳定性所必需的。这使我们提出了一个模型,其中N结构域采用两种构象之一:与ATP水解相容的柔性构象或无活性的共平面构象。

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