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Co-expression of CCT subunits hints at TRiC assembly

机译:CCT 亚基的共表达提示 TRiC 组装

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摘要

The eukaryotic cytosolic chaperonin, t-complex polypeptide 1 (TCP-1) ring complex or TRiC, is responsible for folding a tenth of the proteins in the cell. TRiC is a double-ringed barrel with each ring composed of eight different CCT (chaperonin containing TCP-1) subunits. In order for the subunits to assemble together into mature TRiC, which is believed to contain one and only one of each of these subunits per ring, they must be translated from different chromosomes, correctly folded and assembled. When expressed alone in Escherichia coli, the subunits CCT4 and CCT5, interestingly, form TRiC-like homo-oligomeric rings. To explore potential subunit-subunit interactions, we co-expressed these homo-oligomerizing CCT4 and CCT5 subunits or the archaeal chaperonin Mm-Cpn (Methanococcus maripaludis chaperonin) with CCT1-8, one at a time. We found that CCT5 shifted all of the CCT subunits, with the exception of CCT6, into double-barrel TRiC-like complexes, while CCT4 only interacted with CCT5 and CCT8 to form chaperonin rings. We hypothesize that these specific interactions may be due to the formation of hetero-oligomers in E. coli, although more work is needed for validation. We also observed the interaction of CCT5 and Mm-Cpn with smaller fragments of the CCT subunits, confirming their intrinsic chaperone activity. Based on this hetero-oligomer data, we propose that TRiC assembly relies on subunit exchange with some stable homo-oligomers, possibly CCT5, as base assembly units. Eventually, analysis of CCT arrangement in various tissues and at different developmental times is anticipated to provide additional insight on TRiC assembly and CCT subunit composition.
机译:真核细胞质伴侣蛋白,即 T 复合物多肽 1 (TCP-1) 环复合物或 TRiC,负责折叠细胞中十分之一的蛋白质。TRiC 是一种双环桶,每个环由八个不同的 CCT(含有 TCP-1 的伴侣蛋白)亚基组成。为了使亚基组装成成熟的TRiC,据信每个环只包含一个亚基,它们必须从不同的染色体翻译,正确折叠和组装。有趣的是,当在大肠杆菌中单独表达时,亚基 CCT4 和 CCT5 形成 TRiC 样同源寡聚环。为了探索潜在的亚基-亚基相互作用,我们一次一个地共表达这些同源寡聚化的 CCT4 和 CCT5 亚基或古细菌伴侣蛋白 Mm-Cpn(Methanococcus maripaludis chaperonin)与 CCT1-8。我们发现,除 CCT6 外,CCT5 将所有 CCT 亚基转移到双桶 TRiC 样复合物中,而 CCT4 仅与 CCT5 和 CCT8 相互作用形成伴侣蛋白环。我们假设这些特定的相互作用可能是由于大肠杆菌中异质低聚物的形成,尽管需要更多的工作来验证。我们还观察到 CCT5 和 Mm-Cpn 与 CCT 亚基的较小片段的相互作用,证实了它们固有的伴侣活性。基于这些异质低聚物数据,我们提出TRiC组装依赖于与一些稳定的同源低聚物(可能是CCT5)作为碱组装单元的亚基交换。最终,对不同组织和不同发育时期的 CCT 排列的分析有望为了解 TRiC 组装和 CCT 亚基组成提供更多见解。

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