Human DNA Damage Response Disorders Group, Genome Damage and Stability Centre, University of Sussex, Brighton BN1 9RQ, UK.
Mech Ageing Dev. 2011 Aug;132(8-9):366-73. doi: 10.1016/j.mad.2011.02.003. Epub 2011 Feb 23.
Cullin's encode the structural components for one of the most abundant E3 ubiquitin ligase families in eukaryotes accounting for as many as 400 distinct E3 ubiquitin ligases. Because of their modular assembly involving combinations of multiple distinct adaptor and substrate receptor proteins, it comes as no surprise that these E3's are implicated in a plethora of fundamental biochemical processes ranging from DNA replication and repair to transcription and development. Herein, we focus on one member of the cullin family, namely the Cullin 4-RING E3 ligases (CRL4's). More specifically, we overview what has been learned about some of the functions of CRL4's from various model systems. We discuss the unexpected association of defective CUL4B with syndromal X-linked mental retardation in humans and speculate on the biochemical consequences and clinical implications of defective CRL4 function. In particular, mutations in CUL4B highlight a previously unappreciated role for CRL4's in neuronal function and cognition in humans.
Cullin 编码了真核生物中最丰富的 E3 泛素连接酶家族之一的结构成分,这些 E3 泛素连接酶家族由多达 400 种不同的 E3 泛素连接酶组成。由于它们的模块化组装涉及多种不同的衔接子和底物受体蛋白的组合,因此这些 E3 参与了从 DNA 复制和修复到转录和发育等众多基本生化过程并不令人惊讶。在这里,我们专注于 Cullin 家族的一个成员,即 Cullin 4-RING E3 连接酶(CRL4)。更具体地说,我们概述了从各种模型系统中了解到的 CRL4 的一些功能。我们讨论了在人类中,缺陷型 CUL4B 与综合征性 X 连锁智力低下之间的意外关联,并推测了缺陷型 CRL4 功能的生化后果和临床意义。特别是,CUL4B 的突变突出了 CRL4 在人类神经元功能和认知中的以前未被认识到的作用。