Jayarapu Krupakar, Griffin Thomas A
William S. Rowe Division of Rheumatology, Cincinnati Children's Hospital Medical Center, Cincinnati, OH 45229, USA.
Biochem Biophys Res Commun. 2004 Feb 6;314(2):523-8. doi: 10.1016/j.bbrc.2003.12.119.
Immunoproteasomes and standard proteasomes assemble by alternative pathways that bias against the formation of certain "mixed" proteasomes. Differences between beta subunit propeptides contribute to assembly specificity and an assembly chaperone, proteassemblin, may be involved via differential propeptide interactions. We investigated possible mechanisms of biased proteasome assembly and the role of proteassemblin by identifying protein-protein interactions among human 20S proteasome subunits and proteassemblin using a yeast two-hybrid interaction assay. Forty-one interactions were detected, including five involving proteassemblin and contiguous beta subunits, which suggests that proteassemblin binds to preproteasomes via a beta subunit surface. Interaction between proteassemblin and beta5, but not beta5i, suggests that proteassemblin may be involved in the propeptide-dependent differential incorporation of these subunits. Interactions between proteassemblin and beta1, beta1i, and beta7 suggest that proteassemblin may regulate preproteasome dimerization via interactions with the C-termini of these subunits, which in the mature 20S structure extend to contact opposing beta subunit rings.
免疫蛋白酶体和标准蛋白酶体通过偏向于抑制某些“混合”蛋白酶体形成的替代途径进行组装。β亚基前肽之间的差异导致组装特异性,并且一种组装伴侣蛋白——蛋白酶体装配素,可能通过不同的前肽相互作用参与其中。我们通过使用酵母双杂交相互作用分析来鉴定人20S蛋白酶体亚基与蛋白酶体装配素之间的蛋白质-蛋白质相互作用,从而研究了偏向性蛋白酶体组装的可能机制以及蛋白酶体装配素的作用。检测到41种相互作用,其中包括5种涉及蛋白酶体装配素和相邻β亚基的相互作用,这表明蛋白酶体装配素通过β亚基表面与前蛋白酶体结合。蛋白酶体装配素与β5而非β5i之间的相互作用表明,蛋白酶体装配素可能参与了这些亚基在前肽依赖性差异掺入过程。蛋白酶体装配素与β1、β1i和β7之间的相互作用表明,蛋白酶体装配素可能通过与这些亚基的C末端相互作用来调节前蛋白酶体二聚化,在成熟的20S结构中,这些C末端延伸至与相对的β亚基环接触。