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Proteomic profiling of VCP substrates links VCP to K6‐linked ubiquitylation and c‐Myc function

机译:VCP底物的蛋白质组学分析将VCP连接到K6连锁的泛素化和c-Myc功能

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摘要

Valosin‐containing protein (VCP) is an evolutionarily conserved ubiquitin‐dependent ATPase that mediates the degradation of proteins through the ubiquitin–proteasome pathway. Despite the central role of VCP in the regulation of protein homeostasis, identity and nature of its cellular substrates remain poorly defined. Here, we combined chemical inhibition of VCP and quantitative ubiquitin remnant profiling to assess the effect of VCP inhibition on the ubiquitin‐modified proteome and to probe the substrate spectrum of VCP in human cells. We demonstrate that inhibition of VCP perturbs cellular ubiquitylation and increases ubiquitylation of a different subset of proteins compared to proteasome inhibition. VCP inhibition globally upregulates K6‐linked ubiquitylation that is dependent on the HECT‐type ubiquitin E3 ligase HUWE1. We report ~450 putative VCP substrates, many of which function in nuclear processes, including gene expression, DNA repair and cell cycle. Moreover, we identify that VCP regulates the level and activity of the transcription factor c‐Myc.
机译:含缬氨酸的蛋白质(VCP)是一种进化上保守的泛素依赖性ATPase,可通过泛素-蛋白酶体途径介导蛋白质的降解。尽管VCP在调节蛋白质动态平衡中起着核心作用,但其细胞底物的特性和性质仍然不清楚。在这里,我们结合了对VCP的化学抑制作用和定量的泛素残留谱图,以评估VCP抑制作用对泛素修饰的蛋白质组的影响,并探测人细胞中VCP的底物谱。我们证明,对VCP的抑制会扰乱细胞的泛素化,并与蛋白酶体抑制相比增加蛋白质的不同子集的泛素化。 VCP抑制作用全面上调了K6连接的泛素化,而后者依赖于HECT型泛素E3连接酶HUWE1。我们报告了〜450种假定的VCP底物,其中许多在核过程中起作用,包括基因表达,DNA修复和细胞周期。此外,我们发现VCP调节转录因子c-Myc的水平和活性。

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