Wu Kenneth, Yamoah Kosj, Dolios Georgia, Gan-Erdene Tudeviin, Tan Peilin, Chen Angus, Lee Chee-Gun, Wei Ning, Wilkinson Keith D, Wang Rong, Pan Zhen-Qiang
Derald H. Ruttenberg Cancer Center and Department of Human Genetics, The Mount Sinai School of Medicine, New York, New York 10029-6574, USA.
J Biol Chem. 2003 Aug 1;278(31):28882-91. doi: 10.1074/jbc.M302888200. Epub 2003 May 19.
Nedd8 activates ubiquitination by increasing the efficiency of polyubiquitin chain assembly through its covalent conjugation to cullin molecules. Here we report the isolation, cloning, and characterization of a novel human Nedd8-specific protease called DEN1. Human DEN1 is encoded by AAH31411.1, a previously uncharacterized protein of 212 amino acids that shares homology with the Ulp1 cysteinyl SUMO deconjugating enzyme family. Recombinant human DEN1, purified from bacteria, selectively binds to Nedd8 and hydrolyzes C-terminal derivatives of Nedd8. Interestingly, DEN1 deconjugates cullin 1 (CUL1)-Nedd8 in a concentration-dependent manner. At a low concentration, DEN1 processes hyper-neddylated CUL1 to yield a mononeddylated form, which presumably contains the Lys-720CUL1-Nedd8 linkage. At elevated concentrations, DEN1 is able to complete the removal of Nedd8 from CUL1. These activities distinguish DEN1 from the COP9 signalosome, which is capable of efficiently cleaving the Lys-720CUL1-Nedd8 conjugate, but lacks Nedd8 C-terminal hydrolytic activity and poorly processes hyperneddylated CUL1. These results suggest a unique role for DEN1 in regulating the modification of cullins by Nedd8.
Nedd8通过与cullin分子共价结合来提高多聚泛素链组装效率,从而激活泛素化。在此,我们报告了一种名为DEN1的新型人类Nedd8特异性蛋白酶的分离、克隆及特性。人类DEN1由AAH31411.1编码,它是一种含212个氨基酸的此前未被鉴定的蛋白质,与Ulp1半胱氨酸SUMO去共轭酶家族具有同源性。从细菌中纯化得到的重组人类DEN1能选择性地结合Nedd8并水解Nedd8的C末端衍生物。有趣的是,DEN1能以浓度依赖的方式使cullin 1(CUL1)-Nedd8去共轭。在低浓度时,DEN1作用于过度Nedd化的CUL1,产生单Nedd化形式,推测该形式含有Lys-720 CUL1-Nedd8连接。在高浓度时,DEN1能够完全去除CUL1上的Nedd8。这些活性将DEN1与COP9信号体区分开来,COP9信号体能够有效切割Lys-720 CUL1-Nedd8共轭物,但缺乏Nedd8 C末端水解活性,且对过度Nedd化的CUL1处理效果不佳。这些结果表明DEN1在调节Nedd8对cullins的修饰中具有独特作用。