泛素样蛋白 Urm1 的双重作用:作为一种蛋白质修饰物和硫载体。

The dual role of ubiquitin-like protein Urm1 as a protein modifier and sulfur carrier.

机构信息

Institute of Genetics, Fudan University, Shanghai 200433, China.

出版信息

Protein Cell. 2011 Aug;2(8):612-9. doi: 10.1007/s13238-011-1074-6. Epub 2011 Sep 9.

Abstract

The ubiquitin-related modifier Urm1 can be covalently conjugated to lysine residues of other proteins, such as yeast Ahp1 and human MOCS3, through a mechanism involving the E1-like protein Uba4 (MOCS3 in humans). Similar to ubiquitination, urmylation requires a thioester intermediate and forms isopeptide bonds between Urm1 and its substrates. In addition, the urmylation process can be significantly enhanced by oxidative stress. Recent findings have demonstrated that Urm1 also acts as a sulfur carrier in the thiolation of eukaryotic tRNA via a mechanism that requires the formation of a thiocarboxylated Urm1. This role is very similar to that of prokaryotic sulfur carriers such as MoaD and ThiS. Evidence strongly supports the hypothesis that Urm1 is the molecular fossil in the evolutionary link between prokaryotic sulfur carriers and eukaryotic ubiquitin-like proteins. In the present review, we discuss the dual role of Urm1 in protein and tRNA modification.

摘要

泛素相关修饰物 Urm1 可以通过涉及 E1 样蛋白 Uba4(人类中的 MOCS3)的机制,将赖氨酸残基共价连接到其他蛋白质上,如酵母 Ahp1 和人类 MOCS3。与泛素化相似,urmylation 需要硫酯中间体,并在 Urm1 和其底物之间形成异肽键。此外,urmylation 过程可以被氧化应激显著增强。最近的研究发现,Urm1 还可以通过一种需要形成硫代羧化 Urm1 的机制,作为真核 tRNA 硫代的硫载体发挥作用。这种作用与 MoaD 和 ThiS 等原核硫载体非常相似。有强有力的证据支持这样的假设,即 Urm1 是原核硫载体和真核泛素样蛋白之间进化联系的分子化石。在本综述中,我们讨论了 Urm1 在蛋白质和 tRNA 修饰中的双重作用。

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