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Molecular Mechanism of Substrate Processing by the Cdc48 ATPase Complex

机译:CDC48 ATP酶复合物的底物加工的分子机制

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摘要

The Cdc48 ATPase and its cofactors Ufd1/Npl4 (UN) extract polyubiquitinated proteins from membranes or macromolecular complexes, but how they perform these functions is unclear. Cdc48 consists of an N-terminal domain that binds UN and two stacked hexameric ATPase rings (D1 and D2) surrounding a central pore. Here, we use purified components to elucidate how the Cdc48 complex processes substrates. After interaction of the polyubiquitin chain with UN, ATP hydrolysis by the D2 ring moves the polypeptide completely through the double ring, generating a pulling force on the substrate and causing its unfolding. ATP hydrolysis by the D1 ring is important for subsequent substrate release from the Cdc48 complex. This release requires cooperation of Cdc48 with a deubiquitinase, which trims polyubiquitin to an oligoubiquitin chain that is then also translocated through the pore. Together, these results lead to a new paradigm for the function of Cdc48 and its mammalian ortholog p97/VCP.
机译:CDC48 ATP酶及其辅助型UFD1 / NPL4(UN)从膜或大分子复合物中提取多氮化蛋白,但它们如何执行这些功能尚不清楚。 CDC48由N末端结构域组成,该N-末端结构域与周围的中心孔结合的UN和两个堆叠的六偏见ATP酶环(D1和D2)。 这里,我们使用纯化的组件来阐明CDC48复杂的过程的基材。 在与UN的相互作用之后,D2环的ATP水解完全通过双环移动多肽,在基板上产生拉力并导致其展开。 通过D1环的ATP水解对于从CDC48复合物中的后续基质释放至关重要。 该释放需要CDC48与氘素酶的合作,其将多泛素修剪到Oligoubiquitin链中,然后也可以通过孔倾斜。 在一起,这些结果导致CDC48的功能和其哺乳动物Ortholog P97 / VCP的新范式。

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  • 来源
    《Cell》 |2017年第4期|共14页
  • 作者单位

    Harvard Med Sch Howard Hughes Med Inst 240 Longwood Ave Boston MA 02115 USA;

    Harvard Med Sch Howard Hughes Med Inst 240 Longwood Ave Boston MA 02115 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

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