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泛素系统的泛素化机制。

The ubiquitination machinery of the ubiquitin system.

作者信息

Callis Judy

机构信息

Department of Molecular and Cellular Biology, University of California-Davis, Davis CA 95616.

出版信息

Arabidopsis Book. 2014 Oct 6;12:e0174. doi: 10.1199/tab.0174. eCollection 2014.

Abstract

The protein ubiquitin is a covalent modifier of proteins, including itself. The ubiquitin system encompasses the enzymes required for catalysing attachment of ubiquitin to substrates as well as proteins that bind to ubiquitinated proteins leading them to their final fate. Also included are activities that remove ubiquitin independent of, or in concert with, proteolysis of the substrate, either by the proteasome or proteases in the vacuole. In addition to ubiquitin encoded by a family of fusion proteins, there are proteins with ubiquitin-like domains, likely forming ubiquitin's β-grasp fold, but incapable of covalent modification. However, they serve as protein-protein interaction platforms within the ubiquitin system. Multi-gene families encode all of these types of activities. Within the ubiquitination machinery "half" of the ubiquitin system are redundant, partially redundant, and unique components affecting diverse developmental and environmental responses in plants. Notably, multiple aspects of biotic and abiotic stress responses require, or are modulated by, ubiquitination. Finally, aspects of the ubiquitin system have broad utility: as components to enhance gene expression or to regulate protein abundance. This review focuses on the ubiquitination machinery: ubiquitin, unique aspects about the synthesis of ubiquitin and organization of its gene family, ubiquitin activating enzymes (E1), ubiquitin conjugating enzymes (E2) and ubiquitin ligases, or E3s. Given the large number of E3s in Arabidopsis this review covers the U box, HECT and RING type E3s, with the exception of the cullin-based E3s.

摘要

蛋白质泛素是蛋白质(包括其自身)的共价修饰剂。泛素系统包括催化泛素与底物连接所需的酶,以及与泛素化蛋白质结合并引导其走向最终命运的蛋白质。还包括通过蛋白酶体或液泡中的蛋白酶独立于底物蛋白水解或与之协同去除泛素的活性。除了由融合蛋白家族编码的泛素外,还有具有泛素样结构域的蛋白质,它们可能形成泛素的β-抓握折叠,但不能进行共价修饰。然而,它们在泛素系统中作为蛋白质-蛋白质相互作用平台。多基因家族编码所有这些类型的活性。在泛素化机制中,泛素系统的“一半”由影响植物不同发育和环境反应的冗余、部分冗余和独特成分组成。值得注意的是,生物和非生物胁迫反应的多个方面都需要泛素化或受其调节。最后,泛素系统的各个方面具有广泛的用途:作为增强基因表达或调节蛋白质丰度的成分。本综述重点关注泛素化机制:泛素、泛素合成及其基因家族组织的独特方面、泛素激活酶(E1)、泛素结合酶(E2)和泛素连接酶或E3。鉴于拟南芥中有大量的E3,本综述涵盖了U-box、HECT和RING型E3,但基于cullin的E3除外。

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