Pintard Lionel, Kurz Thimo, Glaser Sarah, Willis John H, Peter Matthias, Bowerman Bruce
Institute of Biochemistry, HPM G.10.1, ETH Hönggerberg, 8093 Zürich, Switzerland.
Curr Biol. 2003 May 27;13(11):911-21. doi: 10.1016/s0960-9822(03)00336-1.
SCF (Skp1-Cullin-F-box) complexes are a major class of E3 ligases that are required to selectively target substrates for ubiquitin-dependent degradation by the 26S proteasome. Conjugation of the ubiquitin-like protein Nedd8 to the cullin subunit (neddylation) positively regulates activity of SCF complexes, most likely by increasing their affinity for the E2 conjugated to ubiquitin. The Nedd8 conjugation pathway is required in C. elegans embryos for the ubiquitin-mediated degradation of the microtubule-severing protein MEI-1/Katanin at the meiosis-to-mitosis transition. Genetic experiments suggest that this pathway controls the activity of a CUL-3-based E3 ligase. Counteracting the Nedd8 pathway, the COP9/signalosome has been shown to promote deneddylation of the cullin subunit. However, little is known about the role of neddylation and deneddylation for E3 ligase activity in vivo.
Here, we identified and characterized the COP9/signalosome in C. elegans and showed that it promotes deneddylation of CUL-3, a critical target of the Nedd8 conjugation pathway. As in other species, the C. elegans signalosome is a macromolecular complex containing at least six subunits that localizes in the nucleus and the cytoplasm. Reducing COP9/signalosome function by RNAi results in a failure to degrade MEI-1, leading to severe defects in microtubule-dependent processes during the first mitotic division. Intriguingly, reducing COP9/signalosome function suppresses a partial defect in the neddylation pathway; this suppression suggests that deneddylation and neddylation antagonize each other.
We conclude that both neddylation and deneddylation of CUL-3 is required for MEI-1 degradation and propose that cycles of CUL-3 neddylation and deneddylation are necessary for its ligase activity in vivo.
SCF(Skp1 - Cullin - F - box)复合物是一类主要的E3连接酶,其作用是选择性地将底物靶向,以便通过26S蛋白酶体进行泛素依赖性降解。泛素样蛋白Nedd8与Cullin亚基的缀合(Neddylation)正向调节SCF复合物的活性,最有可能是通过增加它们对与泛素缀合的E2的亲和力来实现的。秀丽隐杆线虫胚胎中,Nedd8缀合途径对于减数分裂到有丝分裂转变过程中微管切断蛋白MEI - 1/卡坦宁的泛素介导降解是必需的。遗传实验表明,该途径控制基于CUL - 3的E3连接酶的活性。与Nedd8途径相反,COP9信号体已被证明可促进Cullin亚基的去Neddylation。然而,关于Neddylation和去Neddylation在体内对E3连接酶活性的作用知之甚少。
在这里,我们鉴定并表征了秀丽隐杆线虫中的COP9信号体,并表明它促进CUL - 3的去Neddylation,CUL - 3是Nedd8缀合途径的关键靶点。与其他物种一样,秀丽隐杆线虫信号体是一种大分子复合物,包含至少六个亚基,定位于细胞核和细胞质中。通过RNA干扰降低COP9信号体功能会导致MEI - 1无法降解,从而在第一次有丝分裂期间导致微管依赖性过程出现严重缺陷。有趣的是,降低COP9信号体功能可抑制Neddylation途径中的部分缺陷;这种抑制表明去Neddylation和Neddylation相互拮抗。
我们得出结论,CUL - 3的Neddylation和去Neddylation对于MEI - 1的降解都是必需的,并提出CUL - 3的Neddylation和去Neddylation循环对于其在体内的连接酶活性是必要的。