Pan Zhen-Qiang, Kentsis Alex, Dias Dora C, Yamoah Kosj, Wu Kenneth
Derald H Ruttenberg Cancer Center, The Mount Sinai School of Medicine, New York, NY 10029-6574, USA.
Oncogene. 2004 Mar 15;23(11):1985-97. doi: 10.1038/sj.onc.1207414.
This review summarizes recent advances concerning the Nedd8 regulatory pathway in four areas. One, substantial progress has been made in delineating the role of cullin family proteins, the only known substrates of the Nedd8 modification system. Cullins are molecular scaffolds responsible for assembling the ROC1/Rbx1 RING-based E3 ubiquitin ligases, of which several play a direct role in tumorigenesis. Two, a large body of work has helped elucidate the molecular details underlying the Nedd8 modification reaction, which results in covalent conjugation of a Nedd8 moiety onto a conserved cullin lysine residue. Three, studies using a variety of genetic model systems have established an essential role for Nedd8 in cell cycle control and in embryogenesis by upregulating the activities of cullin-based E3 ligases. In vitro experiments have revealed a direct role for Nedd8 in activating ubiquitination. Construction of a model of the ROC1/Rbx1-CUL1-Nedd8 structure suggests a mechanism by which the cullin-linked Nedd8 may assist the neighboring ROC1/Rbx1 in landing and positioning the E2 conjugating enzyme for the ubiquitin transfer reaction. Finally, increasing evidence indicates that removal of Nedd8 from its cullin targets, by the action of COP9 Signalosome and possibly other proteases, plays a significant role in the regulation of cullin-mediated proteolysis.
本综述总结了Nedd8调控途径在四个领域的最新进展。其一,在阐明cullin家族蛋白的作用方面取得了重大进展,cullin家族蛋白是Nedd8修饰系统唯一已知的底物。Cullins是分子支架,负责组装基于ROC1/Rbx1 RING的E3泛素连接酶,其中几种在肿瘤发生中起直接作用。其二,大量工作有助于阐明Nedd8修饰反应背后的分子细节,该反应导致Nedd8部分共价连接到保守的cullin赖氨酸残基上。其三,使用各种遗传模型系统的研究已经确定Nedd8通过上调基于cullin的E3连接酶的活性在细胞周期控制和胚胎发生中起重要作用。体外实验揭示了Nedd8在激活泛素化方面的直接作用。ROC1/Rbx1-CUL-1-Nedd8结构模型的构建表明了一种机制,通过该机制,与cullin相连的Nedd8可能协助相邻的ROC1/Rbx1定位E2缀合酶以进行泛素转移反应。最后,越来越多的证据表明,通过COP9信号体和可能的其他蛋白酶的作用,从其cullin靶标上去除Nedd8在cullin介导的蛋白水解调节中起重要作用。