School of Natural System, College of Science and Engineering, Kanazawa University, Kakuma-machi, Kanazawa 920-1192, Japan.
J Biochem. 2018 Aug 1;164(2):153-163. doi: 10.1093/jb/mvy038.
Heat shock protein 70 (Hsp70) chaperone systems consist of Hsp70, Hsp40 and a nucleotide-exchange factor and function to help unfolded proteins achieve their native conformations. Typical Hsp40s assume a homodimeric structure and have both chaperone and cochaperone activity. The dimeric structure is critical for chaperone function, whereas the relationship between the dimeric structure and cochaperone function is hardly known. Here, we examined whether two intact protomers are required for cochaperone activity of Hsp40 using an Escherichia coli Hsp70 chaperone system consisting of DnaK, DnaJ and GrpE. The expression systems were generated and two heterodimeric DnaJs that included a mutated protomer lacking cochaperone activity were purified. Normal chaperone activity was demonstrated by assessing aggregation prevention activity using urea-denatured luciferase. The heterodimeric DnaJs were investigated for cochaperone activity by measuring DnaK ATPase activity and the heat-denatured glucose-6-phosphate dehydrogenase refolding activity of the DnaK chaperone system, and they showed reduced cochaperone activity. These results indicate that two intact protomers are required for high cochaperone activity of DnaJ, suggesting that one homodimeric DnaJ molecule promotes the simultaneous binding of multiple DnaK molecules to one substrate molecule, and that this binding mode is required for the efficient folding of denatured proteins.
热休克蛋白 70(Hsp70)伴侣蛋白系统由 Hsp70、Hsp40 和核苷酸交换因子组成,其功能是帮助未折叠的蛋白质形成其天然构象。典型的 Hsp40 呈同源二聚体结构,具有伴侣蛋白和共伴侣蛋白活性。二聚体结构对于伴侣蛋白功能至关重要,而二聚体结构与共伴侣蛋白功能之间的关系却鲜为人知。在这里,我们使用由 DnaK、DnaJ 和 GrpE 组成的大肠杆菌 Hsp70 伴侣蛋白系统,研究了两个完整的前体是否需要 Hsp40 的共伴侣蛋白活性。生成了表达系统,并纯化了包含缺乏共伴侣蛋白活性的突变前体的两种异源二聚体 DnaJ。通过使用脲变性荧光素酶评估聚集预防活性来证明正常的伴侣蛋白活性。通过测量 DnaK ATP 酶活性和 DnaK 伴侣蛋白系统的热变性葡萄糖-6-磷酸脱氢酶重折叠活性来研究异源二聚体 DnaJ 的共伴侣蛋白活性,结果显示其共伴侣蛋白活性降低。这些结果表明,两个完整的前体对于 DnaJ 的高共伴侣蛋白活性是必需的,这表明一个同源二聚体 DnaJ 分子促进多个 DnaK 分子同时结合到一个底物分子上,并且这种结合模式对于变性蛋白的有效折叠是必需的。