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泛素和类泛素蛋白及结构域在核糖体生成和功能中的作用:偶然还是必然?

Ubiquitin and Ubiquitin-Like Proteins and Domains in Ribosome Production and Function: Chance or Necessity?

机构信息

Instituto de Biomedicina de Sevilla, Hospital Universitario Virgen del Rocío/CSIC/Universidad de Sevilla, 41009 Seville, Spain.

Departamento de Genética, Universidad de Sevilla, 41013 Seville, Spain.

出版信息

Int J Mol Sci. 2021 Apr 22;22(9):4359. doi: 10.3390/ijms22094359.

Abstract

Ubiquitin is a small protein that is highly conserved throughout eukaryotes. It operates as a reversible post-translational modifier through a process known as ubiquitination, which involves the addition of one or several ubiquitin moieties to a substrate protein. These modifications mark proteins for proteasome-dependent degradation or alter their localization or activity in a variety of cellular processes. In most eukaryotes, ubiquitin is generated by the proteolytic cleavage of precursor proteins in which it is fused either to itself, constituting a polyubiquitin precursor, or as a single N-terminal moiety to ribosomal proteins, which are practically invariably eL40 and eS31. Herein, we summarize the contribution of the ubiquitin moiety within precursors of ribosomal proteins to ribosome biogenesis and function and discuss the biological relevance of having maintained the explicit fusion to eL40 and eS31 during evolution. There are other ubiquitin-like proteins, which also work as post-translational modifiers, among them the small ubiquitin-like modifier (SUMO). Both ubiquitin and SUMO are able to modify ribosome assembly factors and ribosomal proteins to regulate ribosome biogenesis and function. Strikingly, ubiquitin-like domains are also found within two ribosome assembly factors; hence, the functional role of these proteins will also be highlighted.

摘要

泛素是一种在真核生物中高度保守的小蛋白。它通过一种称为泛素化的可逆翻译后修饰过程发挥作用,其中涉及将一个或多个泛素部分添加到底物蛋白上。这些修饰标记蛋白质进行蛋白酶体依赖性降解,或在各种细胞过程中改变其定位或活性。在大多数真核生物中,泛素是通过前体蛋白的蛋白水解切割产生的,其中它要么自身融合,构成多泛素前体,要么作为单个 N 端部分融合到核糖体蛋白上,实际上核糖体蛋白 eL40 和 eS31 始终不变。在此,我们总结了核糖体蛋白前体中泛素部分对核糖体生物发生和功能的贡献,并讨论了在进化过程中保持与 eL40 和 eS31 的明确融合的生物学意义。还有其他的泛素样蛋白,也作为翻译后修饰物发挥作用,其中包括小泛素样修饰物(SUMO)。泛素和 SUMO 都能够修饰核糖体组装因子和核糖体蛋白,以调节核糖体生物发生和功能。值得注意的是,泛素样结构域也存在于两个核糖体组装因子中;因此,这些蛋白质的功能作用也将被强调。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/33da/8122580/90e417d0c8b9/ijms-22-04359-g001.jpg

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