Urm1,不是类似泛素的修饰剂?

IF 4.1 3区 生物学 Q2 CELL BIOLOGY Microbial Cell Pub Date : 2021-09-21 eCollection Date: 2021-11-01 DOI:10.15698/mic2021.11.763
Lars Kaduhr, Cindy Brachmann, Keerthiraju Ethiraju Ravichandran, James D West, Sebastian Glatt, Raffael Schaffrath
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引用次数: 1

摘要

泛素相关修饰因子1 (Ubiquitin related modifier 1, Urm1)是泛素折叠蛋白(ubitin -fold, UbF)家族中一个独特的真核成员,从酵母到人类都是保守的。Urm1具有双重功能,既可以作为tRNA反密码子硫基化的硫载体,也可以作为赖氨酸导向的ub样偶联(也称为urmyation)的蛋白质修饰剂。尽管Urm1结合与氧化应激相吻合,并针对酵母(Ahp1)和苍蝇(Prx5)中的2-Cys过氧化物还毒素等蛋白,但目前尚不清楚Urm1化是如何在分子上进行的,以及它是否受到这些抗氧化酶活性的影响。我们实验室(Brachmann et al., 2020)对酵母中Ahp1酶解的深入研究发现,混杂的赖氨酸靶点和特定的氧化还原需求决定了过氧化物还原素的Urm1受体活性。结果清楚地表明,二聚体界面和Ahp1的2-Cys氧化还原活性中心影响着Urm1的偶联反应。Brachmann等人对Urm1利用与细胞氧化防御之间的潜在联系进行了深入研究,并通过体内实验证明高有机过氧化物浓度可以阻止Ahp1被urmyylation。在这里,我们强调了这些主要发现,并讨论了关于Urm1偶联和氧化还原生物学之间的新兴联系的更广泛的影响。此外,从这些研究中,我们建议重新定义我们对Urm1和urmy化的分子性质的看法,urmy化是一种翻译后的偶联,可能根本不像泛素那样。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Urm1, not quite a ubiquitin-like modifier?

Ubiquitin related modifier 1 (Urm1) is a unique eukaryotic member of the ubiquitin-fold (UbF) protein family and conserved from yeast to humans. Urm1 is dual-functional, acting both as a sulfur carrier for thiolation of tRNA anticodons and as a protein modifier in a lysine-directed Ub-like conjugation also known as urmylation. Although Urm1 conjugation coincides with oxidative stress and targets proteins like 2-Cys peroxiredoxins from yeast (Ahp1) and fly (Prx5), it was unclear how urmylation proceeds molecularly and whether it is affected by the activity of these antioxidant enzymes. An in-depth study of Ahp1 urmylation in yeast from our laboratory (Brachmann et al., 2020) uncovered that promiscuous lysine target sites and specific redox requirements determine the Urm1 acceptor activity of the peroxiredoxin. The results clearly show that the dimer interface and the 2-Cys based redox-active centers of Ahp1 are affecting the Urm1 conjugation reaction. Together with in vivo assays demonstrating that high organic peroxide concentrations can prevent Ahp1 from being urmylated, Brachmann et al. provide insights into a potential link between Urm1 utilization and oxidant defense of cells. Here, we highlight these major findings and discuss wider implications with regards to an emerging link between Urm1 conjugation and redox biology. Moreover, from these studies we propose to redefine our perspective on Urm1 and the molecular nature of urmylation, a post-translational conjugation that may not be that ubiquitin-like after all.

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来源期刊
Microbial Cell
Microbial Cell Multiple-
CiteScore
6.40
自引率
0.00%
发文量
32
审稿时长
12 weeks
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