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热泉真菌伴侣蛋白前体的表达、功能表征和初步结晶

Expression, Functional Characterization, and Preliminary Crystallization of the Cochaperone Prefoldin from the Thermophilic Fungus .

机构信息

Department of Biotechnology and Life Science, Tokyo University of Agriculture and Technology, Naka, Koganei, Tokyo 184-8588, Japan.

Instrumentation Analysis Center, Tokyo University of Agriculture and Technology, Naka, Koganei, Tokyo 184-8588, Japan.

出版信息

Int J Mol Sci. 2018 Aug 19;19(8):2452. doi: 10.3390/ijms19082452.

Abstract

Prefoldin is a hexameric molecular chaperone found in the cytosol of archaea and eukaryotes. Its hexameric complex is built from two related classes of subunits, and has the appearance of a jellyfish: Its body consists of a double β-barrel assembly with six long tentacle-like coiled coils protruding from it. Using the tentacles, prefoldin captures an unfolded protein substrate and transfers it to a group II chaperonin. Based on structural information from archaeal prefoldins, mechanisms of substrate recognition and prefoldin-chaperonin cooperation have been investigated. In contrast, the structure and mechanisms of eukaryotic prefoldins remain unknown. In this study, we succeeded in obtaining recombinant prefoldin from a thermophilic fungus, (CtPFD). The recombinant CtPFD could not protect citrate synthase from thermal aggregation. However, CtPFD formed a complex with actin from chicken muscle and tubulin from porcine brain, suggesting substrate specificity. We succeeded in observing the complex formation of CtPFD and the group II chaperonin of (CtCCT) by atomic force microscopy and electron microscopy. These interaction kinetics were analyzed by surface plasmon resonance using Biacore. Finally, we have shown the transfer of actin from CtPFD to CtCCT. The study of the folding pathway formed by CtPFD and CtCCT should provide important information on mechanisms of the eukaryotic prefoldin⁻chaperonin system.

摘要

原核生物和真核生物细胞溶质中存在六聚体分子伴侣Prefoldin。它的六聚体复合物由两类相关的亚基组成,外观像水母:它的主体由一个双β桶组装而成,六个长触手样的卷曲螺旋从其中伸出。Prefoldin 用触手捕获未折叠的蛋白质底物,并将其转移到第二组伴侣蛋白。根据古菌 Prefoldin 的结构信息,已经研究了底物识别和 Prefoldin-伴侣蛋白合作的机制。相比之下,真核 Prefoldin 的结构和机制仍不清楚。在这项研究中,我们成功地从嗜热真菌 (CtPFD)中获得了重组 Prefoldin。重组的 CtPFD 不能保护柠檬酸合酶免受热聚集。然而,CtPFD 与来自鸡肌肉的肌动蛋白和来自猪脑的微管蛋白形成复合物,表明具有底物特异性。我们成功地通过原子力显微镜和电子显微镜观察到了 CtPFD 与 (CtCCT)的复合物形成。使用 Biacore 通过表面等离子体共振分析了这些相互作用动力学。最后,我们已经展示了从 CtPFD 到 CtCCT 的肌动蛋白的转移。对由 CtPFD 和 CtCCT 形成的折叠途径的研究应该为真核 Prefoldin-伴侣蛋白系统的机制提供重要信息。

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