首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Molecular architecture and assembly mechanism of Drosophila tripeptidyl peptidase Ⅱ
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Molecular architecture and assembly mechanism of Drosophila tripeptidyl peptidase Ⅱ

机译:果蝇三肽肽酶Ⅱ的分子结构和组装机理。

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In eukaryotes, tripeptidyl peptidase Ⅱ (TPPII) is a crucial component of the proteolytic cascade acting downstream of the 26S protea-some in the ubiquitin-proteasome pathway. It is an amino peptidase belonging to the subtilase family removing tripeptides from the free N terminus of oligopeptides. The 150-kDa subunits of Drosophila TPPII assemble into a giant proteolytic complex of 6 MDa with a remarkable architecture consisting of two segmented and twisted strands that form a spindle-shaped structure. A refined 3D model has been obtained by cryoelectron microscopy, which reveals details of the molecular architecture and, in conjunction with biochemical data, provides insight into the assembly mechanism. The building blocks of this complex are apparently dimers, within which the 150-kDa monomers are oriented head to head. Stacking of these dimers leads to the formation of twisted single strands, two of which comprise the fully assembled spindle. This spindle also forms when TPPII is heterologously expressed in Escherichia coli, demonstrating that no scaffolding protein is required for complex formation and length determination. Reciprocal interactions of the N-terminal part of subunits from neighboring strands are probably involved in the formation of the native quaternary structure, lending the TPPII spindle a stability higher than that of single strands.
机译:在真核生物中,三肽基肽酶Ⅱ(TPPII)是泛素-蛋白酶体途径中作用于26S蛋白酶体下游的蛋白水解级联反应的重要组成部分。它是一种属于枯草蛋白酶家族的氨基肽酶,可从寡肽的游离N末端除去三肽。果蝇TPPII的150 kDa亚基组装成6 MDa的巨大蛋白水解复合物,其非凡的结构由两条分段和扭曲的链组成,形成纺锤形结构。通过冷冻电子显微镜已获得了完善的3D模型,该模型揭示了分子结构的详细信息,并结合生化数据提供了对组装机理的洞察力。这种复合物的组成部分显然是二聚体,其中150 kDa的单体相互面对。这些二聚体的堆叠导致形成扭曲的单股,其中两股构成完全组装的锭子。当TPPII在大肠杆菌中异源表达时,也形成该纺锤体,表明复合物形成和长度测定不需要支架蛋白。来自相邻链的亚基的N末端部分的相互相互作用可能参与了天然四元结构的形成,从而使TPPII纺锤体的稳定性高于单链。

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