Department of Biochemistry, School of Mathematical & Natural Sciences, University of Venda, Thohoyandou 0950, South Africa.
Department of Biochemistry, Genetics and Microbiology, University of Pretoria, Pretoria 0028, South Africa.
Biomolecules. 2020 Jun 4;10(6):856. doi: 10.3390/biom10060856.
Hsp70 is a conserved molecular chaperone. How Hsp70 exhibits specialized functions across species remains to be understood. Hsp70-1 (PfHsp70-1) and DnaK are cytosol localized molecular chaperones that are important for the survival of these two organisms. In the current study, we investigated comparative structure-function features of PfHsp70-1 relative to DnaK and a chimeric protein, KPf, constituted by the ATPase domain of DnaK and the substrate binding domain (SBD) of PfHsp70-1. Recombinant forms of the three Hsp70s exhibited similar secondary and tertiary structural folds. However, compared to DnaK, both KPf and PfHsp70-1 were more stable to heat stress and exhibited higher basal ATPase activity. In addition, PfHsp70-1 preferentially bound to asparagine rich peptide substrates, as opposed to DnaK. Recombinant adenosylmethionine decarboxylase (PfAdoMetDC) co-expressed in with either KPf or PfHsp70-1 was produced as a fully folded product. Co-expression of PfAdoMetDC with heterologous DnaK in did not promote folding of the former. However, a combination of supplementary GroEL plus DnaK improved folding of PfAdoMetDC. These findings demonstrated that the SBD of PfHsp70-1 regulates several functional features of the protein and that this molecular chaperone is tailored to facilitate folding of plasmodial proteins.
Hsp70 是一种保守的分子伴侣。Hsp70 如何在不同物种中表现出特定的功能仍有待理解。Hsp70-1(PfHsp70-1)和 DnaK 是细胞质定位的分子伴侣,对于这两种生物的存活至关重要。在本研究中,我们研究了 PfHsp70-1 相对于 DnaK 和嵌合蛋白 KPf(由 DnaK 的 ATPase 结构域和 PfHsp70-1 的底物结合结构域(SBD)组成)的比较结构-功能特征。三种 Hsp70 的重组形式表现出相似的二级和三级结构折叠。然而,与 DnaK 相比,KPf 和 PfHsp70-1 在热应激下更稳定,并且具有更高的基础 ATP 酶活性。此外,PfHsp70-1 优先结合天冬酰胺丰富的肽底物,而不是 DnaK。与 KPf 或 PfHsp70-1 共表达的重组腺苷甲硫氨酸脱羧酶(PfAdoMetDC)在大肠杆菌中作为完全折叠的产物产生。PfAdoMetDC 与异源 DnaK 在大肠杆菌中共表达并未促进前者的折叠。然而,GroEL 加 DnaK 的组合改善了 PfAdoMetDC 的折叠。这些发现表明 PfHsp70-1 的 SBD 调节该蛋白的几个功能特征,并且这种分子伴侣被专门设计用来促进疟原虫蛋白的折叠。