Suisse Annabelle, Békés Miklós, Huang Tony T, Treisman Jessica E
a Helen L. and Martin S. Kimmel Center at the Skirball Institute for Biomolecular Medicine and Department of Cell Biology , NYU School of Medicine , 540 First Avenue, New York , NY , USA.
b Department of Biochemistry and Molecular Pharmacology , NYU School of Medicine , 540 First Avenue, New York , NY , USA.
Fly (Austin). 2018;12(2):118-126. doi: 10.1080/19336934.2018.1429858. Epub 2018 Feb 9.
The COP9 signalosome inhibits the activity of Cullin-RING E3 ubiquitin ligases by removing Nedd8 modifications from their Cullin subunits. Neddylation renders these complexes catalytically active, but deneddylation is also necessary for them to exchange adaptor subunits and avoid auto-ubiquitination. Although deneddylation is thought to be the primary function of the COP9 signalosome, additional activities have been ascribed to some of its subunits. We recently showed that COP9 subunits protect the transcriptional repressor and tumor suppressor Capicua from two distinct modes of degradation. Deneddylation by the COP9 signalosome inactivates a Cullin 1 complex that ubiquitinates Capicua following its phosphorylation by MAP kinase in response to Epidermal Growth Factor Receptor signaling. The CSN1b subunit also stabilizes unphosphorylated Capicua to control its basal level, independently of the deneddylase function of the complex. Here we further examine the importance of deneddylation for COP9 functions . We use an uncleavable form of Nedd8 to show that preventing deneddylation does not reproduce the effects of loss of COP9. In contrast, in the presence of COP9, conjugation to uncleavable Nedd8 renders Cullins unable to promote the degradation of their substrates. Our results suggest that irreversible neddylation prolongs COP9 binding to and inhibition of Cullin-based ubiquitin ligases.
COP9信号体通过去除Cullin亚基上的Nedd8修饰来抑制Cullin-RING E3泛素连接酶的活性。Neddylation使这些复合物具有催化活性,但去Neddylation对于它们交换衔接子亚基并避免自身泛素化也是必需的。尽管去Neddylation被认为是COP9信号体的主要功能,但它的一些亚基也具有其他活性。我们最近发现,COP9亚基保护转录抑制因子和肿瘤抑制因子Capicua免受两种不同的降解模式。COP9信号体的去Neddylation使一种Cullin 1复合物失活,该复合物在表皮生长因子受体信号传导响应中,在Capicua被丝裂原活化蛋白激酶磷酸化后使其泛素化。CSN1b亚基还稳定未磷酸化的Capicua以控制其基础水平,这与该复合物的去Neddylase功能无关。在这里,我们进一步研究去Neddylation对COP9功能的重要性。我们使用一种不可切割形式的Nedd8来表明,阻止去Neddylation不会重现COP9缺失的影响。相反,在存在COP9的情况下,与不可切割的Nedd8结合会使Cullins无法促进其底物的降解。我们的结果表明,不可逆的Neddylation会延长COP9与基于Cullin的泛素连接酶的结合及抑制作用。