首页> 外文期刊>Journal of Molecular Biology >The four canonical TPR subunits of human APC/C form related homo-dimeric structures and stack in parallel to form a TPR suprahelix
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The four canonical TPR subunits of human APC/C form related homo-dimeric structures and stack in parallel to form a TPR suprahelix

机译:人类APC / C的四个规范性TPR亚基形成相关的同二聚体结构并平行堆叠以形成TPR suprahelix

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摘要

The anaphase-promoting complex or cyclosome (APC/C) is a large E3 RING-cullin ubiquitin ligase composed of between 14 and 15 individual proteins. A striking feature of the APC/C is that only four proteins are involved in directly recognizing target proteins and catalyzing the assembly of a polyubiquitin chain. All other subunits, which account for 80% of the mass of the APC/C, provide scaffolding functions. A major proportion of these scaffolding subunits are structurally related. In metazoans, there are four canonical tetratricopeptide repeat (TPR) proteins that form homo-dimers (Apc3/Cdc27, Apc6/Cdc16, Apc7 and Apc8/Cdc23). Here, we describe the crystal structure of the N-terminal homo-dimerization domain of Schizosaccharomyces pombe Cdc23 (Cdc23Nterm). Cdc23Nterm is composed of seven contiguous TPR motifs that self-associate through a related mechanism to those of Cdc16 and Cdc27. Using the Cdc23Nterm structure, we generated a model of full-length Cdc23. The resultant "V"-shaped molecule docks into the Cdc23-assigned density of the human APC/C structure determined using negative stain electron microscopy (EM). Based on sequence conservation, we propose that Apc7 forms a homo-dimeric structure equivalent to those of Cdc16, Cdc23 and Cdc27. The model is consistent with the Apc7-assigned density of the human APC/C EM structure. The four canonical homo-dimeric TPR proteins of human APC/C stack in parallel on one side of the complex. Remarkably, the uniform relative packing of neighboring TPR proteins generates a novel left-handed suprahelical TPR assembly. This finding has implications for understanding the assembly of other TPR-containing multimeric complexes.
机译:后期促进复合物或环体(APC / C)是一个大型E3 RING-cullin泛素连接酶,由14至15个单独的蛋白质组成。 APC / C的一个显着特征是直接识别目标蛋白并催化多聚泛素链的组装仅涉及四种蛋白。占APC / C质量的80%以上的所有其他亚基均具有脚手架功能。这些支架亚基的大部分与结构相关。在后生动物中,有四个形成同型二聚体的规范四三肽重复(TPR)蛋白(Apc3 / Cdc27,Apc6 / Cdc16,Apc7和Apc8 / Cdc23)。在这里,我们描述了粟酒裂殖酵母Cdc23(Cdc23Nterm)N端均二聚结构域的晶体结构。 Cdc23Nterm由七个连续的TPR基序组成,这些基元通过相关机制与Cdc16和Cdc27自相关。使用Cdc23Nterm结构,我们生成了全长Cdc23的模型。所得的“ V”形分子对接至使用负染色电子显微镜(EM)确定的人APC / C结构的Cdc23分配密度。基于序列保守性,我们建议Apc7形成与Cdc16,Cdc23和Cdc27相同的同型二聚体结构。该模型与人类APC / C EM结构的Apc7分配的密度一致。人APC / C的四个规范同二聚体TPR蛋白在复合物的一侧平行堆叠。值得注意的是,相邻TPR蛋白的相对均匀堆积产生了新颖的左手TPR组装体。该发现对理解其他含TPR的多聚体复合物的组装具有启示意义。

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