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裂殖酵母COP9信号体通过募集去泛素化酶Ubp12p抑制Cullin活性。

Fission yeast COP9/signalosome suppresses cullin activity through recruitment of the deubiquitylating enzyme Ubp12p.

作者信息

Zhou Chunshui, Wee Susan, Rhee Edward, Naumann Michael, Dubiel Wolfgang, Wolf Dieter A

机构信息

Department of Cancer Cell Biology, Harvard School of Public Health, Boston, Massachusetts 02115, USA.

出版信息

Mol Cell. 2003 Apr;11(4):927-38. doi: 10.1016/s1097-2765(03)00136-9.

Abstract

The COP9/signalosome (CSN) is known to remove the stimulatory NEDD8 modification from cullins. The activity of the fission yeast cullins Pcu1p and Pcu3p is dramatically stimulated when retrieved from csn mutants but inhibited by purified CSN. This inhibition is independent of cullin deneddylation but mediated by the CSN-associated deubiquitylating enzyme Ubp12p, which forms a complex with Pcu3p in a CSN-dependent manner. In ubp12 mutants, as in csn mutants, Pcu3p activity is stimulated. CSN is required for efficient targeting of Ubp12p to the nucleus, where both cullins reside. Finally, the CSN/Ubp12p pathway maintains the stability of the Pcu1p-associated substrate-specific adaptor protein Pop1p. We propose that CSN/Ubp12p-mediated deubiquitylation creates an environment for the safe de novo assembly of cullin complexes by counteracting the autocatalytic destruction of adaptor proteins.

摘要

已知COP9信号体(CSN)可去除cullin蛋白上具有刺激作用的NEDD8修饰。从csn突变体中提取时,裂殖酵母cullin蛋白Pcu1p和Pcu3p的活性会显著增强,但会被纯化的CSN抑制。这种抑制作用与cullin蛋白的去NEDD8化无关,而是由与CSN相关的去泛素化酶Ubp12p介导的,Ubp12p以CSN依赖的方式与Pcu3p形成复合物。在ubp12突变体中,与csn突变体一样,Pcu3p的活性也会增强。CSN是Ubp12p有效靶向至细胞核所必需的,而两种cullin蛋白均存在于细胞核中。最后,CSN/Ubp12p途径维持了与Pcu1p相关的底物特异性衔接蛋白Pop1p的稳定性。我们提出,CSN/Ubp12p介导的去泛素化通过对抗衔接蛋白的自催化破坏,为cullin复合物的安全重新组装创造了一个环境。

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