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泛素和泛素相关结构域的自然历史。

The natural history of ubiquitin and ubiquitin-related domains.

机构信息

Omics Science Center (OSC), RIKEN Yokohama Institute, 1-7-22 Suehiro-cho, Tsurumi-ku, Yokohama-shi, 230-0045 Kanagawa, Japan.

出版信息

Front Biosci (Landmark Ed). 2012 Jan 1;17(4):1433-60. doi: 10.2741/3996.

Abstract

The ubiquitin (Ub) system is centered on conjugation and deconjugation of Ub and Ub-like (Ubls) proteins by a system of ligases and peptidases, respectively. Ub/Ubls contain the beta-grasp fold, also found in numerous proteins with biochemically distinct roles unrelated to the conventional Ub-system. The beta-GF underwent an early radiation spawning at least seven clades prior to the divergence of extant organisms from their last universal common ancestor, first emerging in the context of translation-related RNA-interactions and subsequently exploding to occupy various functional niches. Most beta-GF diversification occurred in prokaryotes, with the Ubl clade showing dramatic expansion in the eukaryotes. Diversification of Ubl families in eukaryotes played a major role in emergence of characteristic eukaryotic cellular sub-structures and systems. Recent comparative genomics studies indicate precursors of the eukaryotic Ub-system emerged in prokaryotes. The simplest of these combine an Ubl and an E1-like enzyme in metabolic pathways. Sampylation in archaea and Urmylation in eukaryotes appear to represent recruitment of such systems as simple protein-tagging apparatuses. However, other prokaryotic systems incorporated further components and mirror the eukaryotic condition in possessing an E2, a RING-type E3 or both of these components. Additionally, prokaryotes have evolved conjugation systems independent of Ub ligases, such as the Pup system.

摘要

泛素(Ub)系统以连接酶和肽酶分别对 Ub 和泛素样(Ubl)蛋白的连接和去连接为中心。Ub/Ubl 包含β-抓握折叠结构,该结构也存在于具有与传统 Ub 系统无关的生化作用的许多蛋白中。β-GF 在现存生物与其最后的普遍共同祖先分化之前,通过早期的辐射产生了至少七个分支,最初出现在与翻译相关的 RNA 相互作用的背景下,随后爆炸式地占据了各种功能生态位。β-GF 的大多数多样化发生在原核生物中,而 Ubl 分支在真核生物中表现出显著的扩张。真核生物 Ubl 家族的多样化在真核细胞亚结构和系统的出现中起主要作用。最近的比较基因组学研究表明,真核 Ub 系统的前体在原核生物中出现。这些最简单的系统在代谢途径中结合了 Ubl 和一种 E1 样酶。古菌中的 Sampylation 和真核生物中的 Urmylation 似乎代表了这些系统作为简单的蛋白质标记装置的招募。然而,其他原核系统进一步整合了其他成分,并反映了具有 E2、RING 型 E3 或这两种成分的真核条件。此外,原核生物已经进化出了独立于 Ub 连接酶的缀合系统,例如 Pup 系统。

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