首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Structure of the complex between the cytosolic chaperonin CCT and phosducin-like protein.
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Structure of the complex between the cytosolic chaperonin CCT and phosducin-like protein.

机译:胞质伴侣蛋白CCT和光导蛋白样蛋白之间复合物的结构。

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摘要

The three-dimensional structure of the complex formed between the cytosolic chaperonin CCT (chaperonin containing TCP-1) and phosducin (Pdc)-like protein (PhLP), a regulator of CCT activity, has been solved by cryoelectron microscopy. Binding of PhLP to CCT occurs through only one of the chaperonin rings, and the protein does not occupy the central folding cavity but rather sits above it through interactions with two regions on opposite sides of the ring. This causes the apical domains of the CCT subunits to close in, thus excluding access to the folding cavity. The atomic model of PhLP generated from several atomic structures of the homologous Pdc fits very well with the mass of the complex attributable to PhLP and predicts the involvement of several sequences of PhLP in CCT binding. Binding experiments performed with PhLP/Pdc chimeric proteins, taking advantage of the fact that Pdc does not interact with CCT, confirm that both the N- and C-terminal domains of PhLP are involved in CCT binding and thatseveral regions suggested by the docking experiment are indeed critical in the interaction with the cytosolic chaperonin.
机译:低温电子显微镜已经解决了胞质伴侣蛋白CCT(包含TCP-1的伴侣蛋白)和CCT活性调节剂光导蛋白(Pdc)样蛋白(PhLP)之间形成的复合物的三维结构。 PhLP与CCT的结合仅通过一个伴侣分子环发生,并且该蛋白质不占据中央折叠腔,而是通过与环的相对侧上的两个区域相互作用而位于中央折叠腔之上。这导致CCT亚基的顶端结构域封闭,从而排除了进入折叠腔的机会。由同源Pdc的几个原子结构生成的PhLP原子模型与归因于PhLP的复合物的质量非常吻合,并预测了PhLP的几个序列参与CCT结合。利用PhLP / Pdc嵌合蛋白进行的结合实验,利用Pdc不与CCT相互作用的事实,证实PhLP的N和C末端结构域均参与CCT结合,并且对接实验提示了几个区域在与胞质伴侣蛋白相互作用中确实至关重要。

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