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An engineered chaperonin caging a guest protein: Structural insights and potential as a protein expression tool

机译:工程伴侣蛋白笼罩客体蛋白:结构见解和作为蛋白表达工具的潜力

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摘要

The structure of a chaperonin caging a substrate protein is not quite clear. We made engineered group II chaperonins fused with a guest protein and analyzed their structural and functional features. Thermococcus sp. KS-1 chaperonin α-subunit (TCP) which forms an eightfold symmetric double-ring structure was used. Expression plasmids were constructed which carried two or four TCP genes ligated head to tail in phase and a target protein gene at the 3′ end of the linked TCP genes. Electron microscopy showed that the expressed gene products with the molecular sizes of ~120 kDa (di-TCP) and ~230 kDa (tetra-TCP) formed double-ring complexes similar to those of wild-type TCP. The tetra-TCP retained ATPase activity and its thermostability was significantly higher than that of the wild type. A 260-kDa fusion protein of tetra-TCP and green fluorescent protein (GFP, 27 kDa) was able to form the double-ring complexes with green fluorescence. Image analyses indicated that the GFP moiety of tetra-TCP/GFP fusion protein was accommodated in the central cavity, and tetra-TCP/GFP formed the closed-form similar to that crystallographically resolved in group II chaperonins. Furthermore, it was suggested that caging GFP expanded the cavity around the bottom. Using this tetra-TCP fusion strategy, two virus structural proteins (21–25 kDa) toxic to host cells or two antibody fragments (25–36 kDa) prone to aggregate were well expressed in the soluble fraction of Escherichia coli. These fusion products also assembled to double-ring complexes, suggesting encapsulation of the guest proteins. The antibody fragments liberated by site-specific protease digestion exhibited ligand-binding activities.
机译:伴侣蛋白笼罩底物蛋白的结构尚不清楚。我们将工程蛋白II伴侣蛋白与客体蛋白融合在一起,并分析了它们的结构和功能特征。嗜热球菌使用形成八重对称双环结构的KS-1伴侣蛋白α-亚基(TCP)。构建表达质粒,其携带两个或四个从头到尾同相连接的TCP基因和在连接的TCP基因的3'末端的靶蛋白基因。电子显微镜显示,表达的基因产物的分子大小约为120 kDa(di-TCP)和〜230 kDa(tetra-TCP),形成的双环复合物与野生型TCP相似。 tetra-TCP保留了ATPase活性,其热稳定性显着高于野生型。四TCP和绿色荧光蛋白(GFP,27 kDa)的260 kDa融合蛋白能够形成带有绿色荧光的双环复合物。图像分析表明,tetra-TCP / GFP融合蛋白的GFP部分被容纳在中央腔中,并且tetra-TCP / GFP形成了与II组分子伴侣中晶体学相似的闭合形式。此外,有人提出笼养GFP扩大了底部周围的腔。使用这种四TCP融合策略,对宿主细胞有毒的两种病毒结构蛋白(21–25 kDa)或易于聚集的两个抗体片段(25–36 kDa)在大肠杆菌的可溶性级分中表达良好。这些融合产物也组装成双环复合物,表明客体蛋白的包封。通过位点特异性蛋白酶消化释放的抗体片段表现出配体结合活性。

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