Yang Xiaoming, Menon Suchithra, Lykke-Andersen Karin, Tsuge Tomohiko, Wang Xiping, Rodriguez-Suarez Roberto J, Zhang Hui, Wei Ning
Department of Genetics, Yale University School of Medicine, New Haven, CT 06520, USA.
Curr Biol. 2002 Apr 16;12(8):667-72. doi: 10.1016/s0960-9822(02)00791-1.
The COP9 signalosome (CSN) is a conserved protein complex with homologies to the lid subcomplex of the 26S proteasome. It promotes cleavage of the Nedd8 conjugate (deneddylation) from the cullin component of SCF ubiquitin ligases. We provide evidence that cullin neddylation and deneddylation is highly dynamic, that its equilibrium can be effectively modulated by CSN, and that neddylation allows Cul1 to form larger protein complexes. CSN2 integrates into the CSN complex via its C-terminal region and its N-terminal half region is necessary for direct interaction with Cul1. The polyclonal antibodies against CSN2 but not other CSN subunits cause accumulation of neddylated Cul1/Cul2 in HeLa cell extract, indicating that CSN2 is essential in cullin deneddylation. Further, CSN inhibits ubiquitination and degradation of the cyclin-dependent kinase inhibitor p27(kip1) in vitro. Microinjection of the CSN complex impeded the G1 cells from entering the S phase. Moreover, anti-CSN2 antibodies negate the CSN-dependent p27 stabilization and the G1/S blockage, suggesting that these functions require the deneddylation activity. We conclude that CSN inhibits SCF ubiquitin ligase activity in targeting p27 proteolysis and negatively regulates cell cycle at the G1 phase by promoting deneddylation of Cul1.
COP9信号体(CSN)是一种保守的蛋白质复合物,与26S蛋白酶体的盖子亚复合物具有同源性。它促进Nedd8缀合物从SCF泛素连接酶的cullin组分上的切割(去Nedd化)。我们提供的证据表明,cullin的Nedd化和去Nedd化是高度动态的,其平衡可被CSN有效调节,并且Nedd化允许Cul1形成更大的蛋白质复合物。CSN2通过其C末端区域整合到CSN复合物中,其N末端半区域对于与Cul1的直接相互作用是必需的。针对CSN2而非其他CSN亚基的多克隆抗体导致HeLa细胞提取物中Nedd化的Cul1/Cul2积累,表明CSN2在cullin去Nedd化中至关重要。此外,CSN在体外抑制细胞周期蛋白依赖性激酶抑制剂p27(kip1)的泛素化和降解。显微注射CSN复合物阻止G1期细胞进入S期。此外,抗CSN2抗体消除了CSN依赖性的p27稳定化和G1/S阻滞,表明这些功能需要去Nedd化活性。我们得出结论,CSN通过促进Cul1的去Nedd化来抑制SCF泛素连接酶靶向p27蛋白水解的活性,并在G1期对细胞周期进行负调控。