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The inter-ring arrangement of the cytosolic chaperonin CCT

机译:胞质伴侣CCT的环间排列

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摘要

The eukaryotic cytosolic chaperonin CCT (chaperonin containing TCP-1) is the most complex of all chaperonins—an oligomeric structure built from two identical rings, each composed of single copies of eight different subunits. The arrangement of the eight subunits within each ring has been characterised for some time, but the phasing between the two rings remains unknown. Here, three-dimensional reconstructions generated by cryoelectron microscopy of complexes between CCT and either of two different monoclonal antibodies that react specifically with the CCTɛ and CCTδ subunits have been used to determine the phasing between the two chaperonin rings. The inter-ring arrangement is such that up/down inter-ring communication always involves two different CCT subunits in all eight positions, and the group of subunits concerned with the initiation and completion of the folding cycle cluster together both in the intra- and inter-ring arrangement. This supports a sequential mechanism of conformational changes between the two interacting rings.
机译:真核细胞伴侣蛋白CCT(含有TCP-1的伴侣蛋白)是所有伴侣蛋白中最复杂的-一种由两个相同环构成的寡聚结构,每个环由八个不同亚基的单个拷贝组成。每个环中八个亚基的排列已经有一段时间了,但两个环之间的相位仍然未知。在这里,通过冷冻电子显微镜对CCT与与CCT 1和CCTδ亚基特异性反应的两种不同单克隆抗体中的任一种之间的复合物进行的三维电子显微镜重建,已经确定了两个伴侣蛋白环之间的相。环间安排使得上/下环间通信始终在所有八个位置中涉及两个不同的CCT子单元,并且与折叠循环簇的开始和完成有关的子单元组在内部和内部都在一起环的安排。这支持了两个相互作用环之间构象变化的顺序机制。

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