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Cullin-RING 泛素连接酶。

The cullin-RING ubiquitin-protein ligases.

机构信息

Department of Genetics, University of Wisconsin, Madison, Wisconsin 53706-1574, USA.

出版信息

Annu Rev Plant Biol. 2011;62:299-334. doi: 10.1146/annurev-arplant-042809-112256.

Abstract

The posttranslational addition of ubiquitin (Ub) helps control the half-life, localization, and action of many intracellular plant proteins. A primary function is the degradation of ubiquitylated proteins by the 26S proteasome, which in turn plays important housekeeping and regulatory roles by removing aberrant polypeptides and various normal short-lived regulators. Strikingly, both genetic and genomic studies reveal that Ub conjugation is extraordinarily complex in plants, with more than 1500 Ub-protein ligases (or E3s) possible that could direct the final transfer of the Ub moiety to an equally large number of targets. The cullin-RING ligases (CRLs) are a highly polymorphic E3 collection composed of a cullin backbone onto which binds carriers of activated Ub and a diverse assortment of adaptors that recruit appropriate substrates for ubiquitylation. Here, we review our current understanding of the organization and structure of CRLs in plants and their dynamics, substrates, potential functions, and evolution. The importance of CRLs is exemplified by their ability to serve as sensors of hormones and light; their essential participation in various signaling pathways; their control of the cell cycle, transcription, the stress response, self-incompatibility, and pathogen defense; and their dramatically divergent evolutionary histories in many plant lineages. Given both their organizational complexities and their critical influences, CRLs likely impact most, if not all, aspects of plant biology.

摘要

泛素(Ub)的翻译后添加有助于控制许多细胞内植物蛋白的半衰期、定位和作用。一个主要功能是通过 26S 蛋白酶体降解泛素化蛋白,而蛋白酶体通过去除异常多肽和各种正常的短寿命调节剂,从而发挥重要的管家和调节作用。引人注目的是,遗传和基因组研究都表明,Ub 缀合在植物中非常复杂,可能有超过 1500 种 Ub-蛋白连接酶(或 E3)可以将 Ub 部分最终转移到同样数量的靶标上。Cullin-RING 连接酶(CRLs)是一个高度多态的 E3 集合体,由一个 Cullin 骨干组成,其上结合了活化 Ub 的载体和各种不同的适配器,这些适配器可以招募适当的泛素化底物。在这里,我们回顾了我们目前对植物中 CRL 的组织和结构及其动态、底物、潜在功能和进化的理解。CRLs 的重要性体现在它们作为激素和光传感器的能力上;它们在各种信号通路中的重要参与;它们对细胞周期、转录、应激反应、自交不亲和性和病原体防御的控制;以及它们在许多植物谱系中截然不同的进化历史。鉴于它们的组织复杂性和关键影响,CRLs 可能对植物生物学的大多数(如果不是全部)方面都有影响。

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