Basic Science Program, SAIC-Frederick, Inc., Center for Cancer Research Nanobiology Program, NCI-Frederick, Frederick, Maryland, USA.
Biophys J. 2010 Aug 4;99(3):736-44. doi: 10.1016/j.bpj.2010.05.021.
In ubiquitination, cullin-RING E3 ubiquitin ligases (CRLs) assist in ubiquitin transfer from ubiquitin-conjugating enzyme E2 to the substrate. Neddylation, which involves NEDD8 transfer from E2 to E3-cullin, stimulates ubiquitination by inducing conformational change in CRLs. However, deneddylation, which removes NEDD8 from cullin, does not suppress ubiquitination in vivo, raising the question of how neddylation/deneddylation exerts its effects. Using molecular-dynamics simulations, we demonstrate that before neddylation occurs, the linker flexibility of Rbx1, a CRL component, leads to conformational changes in CRLs that allow neddylation and initiation of ubiquitination. These large NEDD8-induced conformational changes are retained after deneddylation, allowing both initiation of the ubiquitination process and ubiquitin chain elongation after deneddylation. Furthermore, mutation of lysine, the cullin residue to which NEDD8 covalently attaches, dramatically reduces CRL conformational changes, suggesting that the acceptor lysine allosterically regulates CRLs. Thus, our results imply that neddylation stimulates ubiquitination by CRL conformational control via lysine modification.
在泛素化过程中,连接酶 E3 泛素连接酶 (CRLs) 协助将泛素从泛素结合酶 E2 转移到底物上。需要 NEDD8 从 E2 转移到 E3-cullin 的类泛素蛋白 Neddylation 会通过诱导 CRLs 的构象变化来刺激泛素化。然而,去泛素化(从 cullin 上去除 NEDD8)并不会在体内抑制泛素化,这就提出了一个问题,即 Neddylation/deneddylation 如何发挥其作用。通过分子动力学模拟,我们证明在发生 Neddylation 之前,CRL 成分 Rbx1 的连接子灵活性导致 CRLs 的构象变化,从而允许 Neddylation 和泛素化的起始。这些由大的 NEDD8 引起的构象变化在去泛素化后仍然保留,从而允许去泛素化后泛素化过程的起始和泛素链的延伸。此外,赖氨酸(NEDD8 共价附着的 cullin 残基)的突变显著降低了 CRL 的构象变化,这表明受体赖氨酸通过别构调节 CRLs。因此,我们的结果表明,Neddylation 通过赖氨酸修饰来控制 CRL 的构象变化,从而刺激泛素化。