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去泛素化酶Ubp2的氧化还原调控在应激期间调节翻译。

Redox control of the deubiquitinating enzyme Ubp2 regulates translation during stress.

作者信息

Santos Clara M, Cizubu Blanche K, Okonkwo Dinachi A, Chen Chia-Yu, Maske Natori, Snyder Nathan A, Simões Vanessa, Washington Erica J, Silva Gustavo M

机构信息

Department of Biology, Duke University, Durham, North Carolina, USA.

Department of Biochemistry, Duke University, Durham, North Carolina, USA; Department of Molecular Genetics and Microbiology, Duke University, North Carolina, Durham, USA.

出版信息

J Biol Chem. 2024 Nov;300(11):107870. doi: 10.1016/j.jbc.2024.107870. Epub 2024 Oct 9.

Abstract

Protein ubiquitination is essential to govern cells' ability to cope with harmful environments by regulating many aspects of protein dynamics from synthesis to degradation. As important as the ubiquitination process, the reversal of ubiquitin chains mediated by deubiquitinating enzymes (DUBs) is critical for proper recovery from stress and re-establishment of proteostasis. Although it is known that ribosomes are decorated with K63-linked polyubiquitin chains that control protein synthesis under stress, the mechanisms by which these ubiquitin chains are reversed and regulate proteostasis during stress recovery remain elusive. Here, we showed in budding yeast that the DUB Ubp2 is redox-regulated during oxidative stress in a reversible manner, which determines the levels of K63-linked polyubiquitin chains present on ribosomes. We also demonstrate that Ubp2 can cleave single ubiquitin moieties out of chains and its activity is modulated by a series of repeated domains and the formation of disulfide bonds. By combining cellular, biochemical, and proteomics analyses, we showed that Ubp2 is crucial for restoring translation after stress cessation, indicating an important role in determining the cellular response to oxidative stress. Our work demonstrates a novel role for Ubp2, revealing that a range of signaling pathways can be controlled by redox regulation of DUB activity in eukaryotes, which in turn will define cellular states of health and diseases.

摘要

蛋白质泛素化对于通过调节蛋白质从合成到降解的动态变化的多个方面来控制细胞应对有害环境的能力至关重要。与泛素化过程同样重要的是,去泛素化酶(DUBs)介导的泛素链的逆转对于从应激中适当恢复和蛋白质稳态的重新建立至关重要。虽然已知核糖体上装饰有K63连接的多聚泛素链,其在应激下控制蛋白质合成,但这些泛素链在应激恢复过程中被逆转并调节蛋白质稳态的机制仍然难以捉摸。在这里,我们在芽殖酵母中表明,DUB Ubp2在氧化应激期间以可逆的方式受到氧化还原调节,这决定了核糖体上存在的K63连接的多聚泛素链的水平。我们还证明Ubp2可以从链中切割单个泛素部分,并且其活性受到一系列重复结构域和二硫键形成的调节。通过结合细胞、生化和蛋白质组学分析,我们表明Ubp2对于应激停止后恢复翻译至关重要,表明其在确定细胞对氧化应激的反应中起重要作用。我们的工作证明了Ubp2的新作用,揭示了一系列信号通路可以通过真核生物中DUB活性的氧化还原调节来控制,这反过来又将定义细胞的健康和疾病状态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c3d/11570842/1c55a6125432/gr1.jpg

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