Ramos Paula C, Marques António J, London Markus K, Dohmen R Jürgen
Departamento de Química e Bioquímica, Faculdade de Ciências e Tecnologia, Universidade do Algarve, Campus de Gambelas, 8000-117 Faro, Portugal.
J Biol Chem. 2004 Apr 2;279(14):14323-30. doi: 10.1074/jbc.M308757200. Epub 2004 Jan 13.
A close inspection of the crystal structure of the yeast 20 S proteasome revealed that a prominent connection between the two beta-rings is mediated by the subunit beta7/Pre4. Its C-terminal extension intercalates between the beta1/Pre3 and beta2/Pup1 subunits on the opposite ring. We show that the interactions promoted by the beta7/Pre4 tail are important to facilitate the formation of 20 S particles from two half-proteasome precursor complexes and/or to stabilize mature 20 S proteasomes. The deletion of 19 residues from the beta7/Pre4 C terminus leads to an accumulation of half-proteasome precursor complexes containing the maturation factor Ump1. The C-terminal extension of beta7/Pre4, which forms several hydrogen bonds with beta1/Pre3, is in addition required for the post-acidic activity mediated by the latter subunit. Deletion of the C-terminal tail of beta7/Pre4 results in an inhibition of beta1/Pre3 propeptide processing and abrogation of post-acidic activity. Our data obtained with yeast strains that expressed the mature form of Pre3 lacking its propeptide suggest that interactions between the Pre4 C terminus and Pre3 stabilize a conformation of its active site, which is essential for post-acidic activity. Deletion of the C-terminal extension of beta2/Pup1, which wraps around beta3/Pup3 within the same beta-ring, is lethal, indicating that this extension serves an essential function in proteasome assembly or stability.
对酵母20 S蛋白酶体晶体结构的仔细检查表明,两个β环之间的一个显著连接是由β7/Pre4亚基介导的。其C末端延伸插入到相对环上的β1/Pre3和β2/Pup1亚基之间。我们表明,由β7/Pre4尾部促进的相互作用对于促进由两个半蛋白酶体前体复合物形成20 S颗粒和/或稳定成熟的20 S蛋白酶体很重要。从β7/Pre4 C末端缺失19个残基会导致含有成熟因子Ump1的半蛋白酶体前体复合物的积累。β7/Pre4的C末端延伸与β1/Pre3形成多个氢键,此外,它是后者亚基介导的酸性后活性所必需的。缺失β7/Pre4的C末端尾巴会导致β1/Pre3前肽加工受到抑制,并消除酸性后活性。我们用表达缺乏前肽的Pre3成熟形式的酵母菌株获得的数据表明,Pre4 C末端与Pre3之间的相互作用稳定了其活性位点的构象,这对于酸性后活性至关重要。缺失β2/Pup1的C末端延伸,其在同一β环内围绕β3/Pup3,是致命的,这表明该延伸在蛋白酶体组装或稳定性中起重要作用。