Fu H, Reis N, Lee Y, Glickman M H, Vierstra R D
Institute of Botany, Academia Sinica, 128, Sec 2, Academy Road, Taipei, Taiwan 115, Republic of China.
EMBO J. 2001 Dec 17;20(24):7096-107. doi: 10.1093/emboj/20.24.7096.
The 26S proteasome plays a major role in eukaryotic protein breakdown, especially for ubiquitin-tagged proteins. Substrate specificity is conferred by the regulatory particle (RP), which can dissociate into stable lid and base subcomplexes. To help define the molecular organization of the RP, we tested all possible paired interactions among subunits from Saccharomyces cerevisiae by yeast two-hybrid analysis. Within the base, a Rpt4/5/3/6 interaction cluster was evident. Within the lid, a structural cluster formed around Rpn5/11/9/8. Interactions were detected among synonymous subunits (Csn4/5/7/6) from the evolutionarily related COP9 signalosome (CSN) from Arabidopsis, implying a similar quaternary arrangement. No paired interactions were detected between lid, base or core particle subcomplexes, suggesting that stable contacts between them require prior assembly. Mutational analysis defined the ATPase, coiled-coil, PCI and MPN domains as important for RP assembly. A single residue in the vWA domain of Rpn10 is essential for amino acid analog resistance, for degrading a ubiquitin fusion degradation substrate and for stabilizing lid-base association. Comprehensive subunit interaction maps for the 26S proteasome and CSN support the ancestral relationship of these two complexes.
26S蛋白酶体在真核生物蛋白质降解中起主要作用,尤其是对泛素标记的蛋白质。底物特异性由调节颗粒(RP)赋予,调节颗粒可解离为稳定的盖子和底座亚复合物。为了帮助确定RP的分子组织,我们通过酵母双杂交分析测试了酿酒酵母亚基之间所有可能的配对相互作用。在底座内,明显存在一个Rpt4/5/3/6相互作用簇。在盖子内,围绕Rpn5/11/9/8形成了一个结构簇。在来自拟南芥的进化相关的COP9信号体(CSN)的同义亚基(Csn4/5/7/6)之间检测到相互作用,这意味着存在类似的四级排列。在盖子、底座或核心颗粒亚复合物之间未检测到配对相互作用,这表明它们之间的稳定接触需要预先组装。突变分析确定ATP酶、卷曲螺旋、PCI和MPN结构域对RP组装很重要。Rpn10的vWA结构域中的单个残基对于氨基酸类似物抗性、降解泛素融合降解底物以及稳定盖子-底座结合至关重要。26S蛋白酶体和CSN的综合亚基相互作用图谱支持了这两种复合物的祖先关系。