Wee Susan, Geyer Rory K, Toda Takashi, Wolf Dieter A
Department of Genetics and Complex Diseases, Harvard School of Public Health, Boston, MA 02115, USA.
Nat Cell Biol. 2005 Apr;7(4):387-91. doi: 10.1038/ncb1241. Epub 2005 Mar 27.
The COP9 signalosome (CSN) is known to bind cullin-RING ubiquitin ligases (CRLs) and to promote their activity in vivo. The mechanism of this stimulation has remained enigmatic because CSN's intrinsic and associated enzymatic activities paradoxically inhibit CRL activity in vitro. Reconciling this paradox, we show here that Csn5-catalysed cullin (Cul) deneddylation and Ubp12-mediated deubiquitination cooperate in maintaining the stability of labile substrate adapters, thus facilitating CRL function. Various fission-yeast csn and ubp12 deletion mutants have lower levels of the Cul3p adapter Btb3p. This decrease is due to increased autocatalytic, Cul3p-dependent, ubiquitination and the subsequent degradation of Btb3p. The CSN-Ubp12p pathway also maintains the stability of the Cul1p adapter Pop1p, a mechanism required for the efficient destruction of its cognate substrate Rum1p. Emphasizing the physiological importance of this mechanism, we found that the dispensable csn5 and ubp12 genes become essential for viability when adapter recruitment to Cul1p is compromised. Our data suggest that maintenance of adapter stability is a general mechanism of CRL control by the CSN.
已知COP9信号体(CSN)能与cullin-RING泛素连接酶(CRL)结合,并在体内促进其活性。这种刺激的机制一直是个谜,因为CSN的内在及相关酶活性在体外反而会抑制CRL活性。为了解决这一矛盾,我们在此表明,Csn5催化的cullin(Cul)去泛素化和Ubp12介导的去泛素化协同作用,以维持不稳定底物衔接蛋白的稳定性,从而促进CRL功能。各种裂殖酵母csn和ubp12缺失突变体中Cul3p衔接蛋白Btb3p的水平较低。这种减少是由于自催化增加、Cul3p依赖性泛素化以及随后Btb3p的降解。CSN-Ubp12p途径还维持Cul1p衔接蛋白Pop1p的稳定性,这是有效降解其同源底物Rum1p所需的一种机制。我们发现,当衔接蛋白与Cul1p的结合受损时,可有可无的csn5和ubp12基因对生存力变得至关重要,这突出了该机制的生理重要性。我们的数据表明,维持衔接蛋白稳定性是CSN对CRL进行调控的一种普遍机制。