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Cullin-RING Ubiquitin Ligase Regulatory Circuits: A Quarter Century Beyond the F-Box Hypothesis
Annual Review of Biochemistry ( IF 16.6 ) Pub Date : 2021-06-21 , DOI: 10.1146/annurev-biochem-090120-013613
J Wade Harper 1 , Brenda A Schulman 2
Affiliation  

Cullin-RING ubiquitin ligases (CRLs) are dynamic modular platforms that regulate myriad biological processes through target-specific ubiquitylation. Our knowledge of this system emerged from the F-box hypothesis, posited a quarter century ago: Numerous interchangeable F-box proteins confer specific substrate recognition for a core CUL1-based RING E3 ubiquitin ligase. This paradigm has been expanded through the evolution of a superfamily of analogous modular CRLs, with five major families and over 200 different substrate-binding receptors in humans. Regulation is achieved by numerous factors organized in circuits that dynamically control CRL activation and substrate ubiquitylation. CRLs also serve as a vast landscape for developing small molecules that reshape interactions and promote targeted ubiquitylation-dependent turnover of proteins of interest. Here, we review molecular principles underlying CRL function, the role of allosteric and conformational mechanisms in controlling substrate timing and ubiquitylation, and how the dynamics of substrate receptor interchange drives the turnover of selected target proteins to promote cellular decision-making.

中文翻译:


Cullin-RING 泛素连接酶调节电路:超越 F-Box 假设的四分之一世纪

Cullin-RING 泛素连接酶 (CRL) 是动态模块化平台,通过靶标特异性泛素化调节无数生物过程。我们对这个系统的了解源于 25 年前提出的 F-box 假说:许多可互换的 F-box 蛋白赋予基于核心 CUL1 的 RING E3 泛素连接酶的特异性底物识别。通过类似模块化 CRL 超家族的进化,这种范式得到了扩展,在人类中有五个主要家族和 200 多种不同的底物结合受体。调节是通过在动态控制 CRL 激活和底物泛素化的电路中组织的许多因素来实现的。CRL 还可以作为开发小分子的广阔前景,这些小分子可以重塑相互作用并促进目标蛋白质的靶向泛素化依赖性周转。在这里,我们回顾了 CRL 功能的分子原理,变构和构象机制在控制底物时间和泛素化中的作用,以及底物受体交换的动力学如何驱动选定靶蛋白的转换以促进细胞决策。

更新日期:2021-06-22
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