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经纯化的26S蛋白酶体对泛素化的Sic1进行选择性降解,产生有活性的S期细胞周期蛋白 - 细胞周期蛋白依赖性激酶。

Selective degradation of ubiquitinated Sic1 by purified 26S proteasome yields active S phase cyclin-Cdk.

作者信息

Verma R, McDonald H, Yates J R, Deshaies R J

机构信息

Howard Hughes Medical Institute, Division of Biology, California Institute of Technology, Pasadena, CA 91125, USA.

出版信息

Mol Cell. 2001 Aug;8(2):439-48. doi: 10.1016/s1097-2765(01)00308-2.

Abstract

Selective degradation of single subunits of multimeric complexes by the ubiquitin pathway underlies multiple regulatory switches, including those involving cyclins and Cdk inhibitors. The machinery that segregates ubiquitinated proteins from unmodified partners prior to degradation remains undefined. We report that ubiquitinated Sic1 (Ub-Sic1) embedded within inactive S phase cyclin-Cdk (S-Cdk) complexes was rapidly degraded by purified 26S proteasomes, yielding active S-Cdk. Mutant proteasomes that failed to degrade Ub-Sic1 activated S-Cdk only partially in an ATP-dependent manner. Whereas Ub-Sic1 was degraded within approximately 2 min, spontaneous dissociation of Ub-Sic1 from S-Cdk was approximately 200-fold slower. We propose that the 26S proteasome has the intrinsic capability to extract, unfold, and degrade ubiquitinated proteins while releasing bound partners untouched. Activation of S-Cdk reported herein represents a complete reconstitution of the regulatory switch underlying the G1/S transition in budding yeast.

摘要

泛素途径对多聚体复合物单个亚基的选择性降解是多种调节开关的基础,包括涉及细胞周期蛋白和细胞周期蛋白依赖性激酶(Cdk)抑制剂的那些开关。在降解之前将泛素化蛋白与未修饰的伙伴分离的机制仍不清楚。我们报告称,嵌入无活性S期细胞周期蛋白-Cdk(S-Cdk)复合物中的泛素化Sic1(Ub-Sic1)被纯化的26S蛋白酶体迅速降解,产生活性S-Cdk。无法降解Ub-Sic1的突变蛋白酶体仅以ATP依赖的方式部分激活S-Cdk。虽然Ub-Sic1在大约2分钟内被降解,但Ub-Sic1从S-Cdk的自发解离速度慢约200倍。我们提出,26S蛋白酶体具有内在能力来提取、展开和降解泛素化蛋白,同时使结合的伙伴保持不变。本文报道的S-Cdk激活代表了对芽殖酵母中G1/S转变基础调节开关的完全重构。

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