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多种 UBX 蛋白降低了哺乳动物 p97-UFD1-NPL4 解折叠酶的泛素阈值。

Multiple UBX proteins reduce the ubiquitin threshold of the mammalian p97-UFD1-NPL4 unfoldase.

机构信息

The MRC Protein Phosphorylation and Ubiquitylation Unit, School of Life Sciences, University of Dundee, Dundee, United Kingdom.

出版信息

Elife. 2022 Aug 3;11:e76763. doi: 10.7554/eLife.76763.

Abstract

The p97/Cdc48 ATPase and its ubiquitin receptors Ufd1-Npl4 are essential to unfold ubiquitylated proteins in many areas of eukaryotic cell biology. In yeast, Cdc48-Ufd1-Npl4 is controlled by a quality control mechanism, whereby substrates must be conjugated to at least five ubiquitins. Here, we show that mammalian p97-UFD1-NPL4 is governed by a complex interplay between additional p97 cofactors and the number of conjugated ubiquitins. Using reconstituted assays for the disassembly of ubiquitylated CMG (Cdc45-MCM-GINS) helicase by human p97-UFD1-NPL4, we show that the unfoldase has a high ubiquitin threshold for substrate unfolding, which can be reduced by the UBX proteins UBXN7, FAF1, or FAF2. Our data indicate that the UBX proteins function by binding to p97-UFD1-NPL4 and stabilising productive interactions between UFD1-NPL4 and K48-linked chains of at least five ubiquitins. Stimulation by UBXN7 is dependent upon known ubiquitin-binding motifs, whereas FAF1 and FAF2 use a previously uncharacterised coiled-coil domain to reduce the ubiquitin threshold of p97-UFD1-NPL4. We show that deleting the and genes impairs CMG disassembly during S-phase and mitosis and sensitises cells to reduced ubiquitin ligase activity. These findings indicate that multiple UBX proteins are important for the efficient unfolding of ubiquitylated proteins by p97-UFD1-NPL4 in mammalian cells.

摘要

p97/Cdc48 ATP 酶及其泛素受体 Ufd1-Npl4 在真核细胞生物学的许多领域中对于 unfolded 泛素化蛋白至关重要。在酵母中,Cdc48-Ufd1-Npl4 受到质量控制机制的控制,即底物必须至少与五个泛素结合。在这里,我们表明哺乳动物 p97-UFD1-NPL4 受到额外 p97 辅助因子和共轭泛素数量之间的复杂相互作用的控制。使用重组测定法,我们研究了人源 p97-UFD1-NPL4 对 ubiquitylated CMG(Cdc45-MCM-GINS)解旋酶的解体,结果表明,解折叠酶对底物展开具有较高的泛素阈值,而 UBX 蛋白 UBXN7、FAF1 或 FAF2 可降低该阈值。我们的数据表明,UBX 蛋白通过与 p97-UFD1-NPL4 结合并稳定 UFD1-NPL4 与至少五个泛素的 K48 连接链之间的有效相互作用而起作用。UBXN7 的刺激作用依赖于已知的泛素结合基序,而 FAF1 和 FAF2 则使用以前未表征的卷曲螺旋结构域来降低 p97-UFD1-NPL4 的泛素阈值。我们表明,删除 和 基因会损害 S 期和有丝分裂期间的 CMG 解体,并使细胞对减少的泛素连接酶活性敏感。这些发现表明,在哺乳动物细胞中,多种 UBX 蛋白对于 p97-UFD1-NPL4 有效展开泛素化蛋白至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9272/9377798/9e48bdf31cec/elife-76763-fig1.jpg

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