Department of Applied Optics, ITMO University, 197101 St.-Petersburg, Russia.
International Research Institute of Bioengineering, ITMO University, 197101 St.-Petersburg, Russia.
Biomolecules. 2020 Apr 14;10(4):606. doi: 10.3390/biom10040606.
The effect of neutral salts on protein conformation was first analyzed by Hofmeister in 1888, however, even today this phenomenon is not completely understood. To clarify this effect, we studied changes in the secondary structure of two proteins: human serum albumin with predominantly α-helical structure and porcine pancreas β-trypsin with the typical β-structural arrangement in aqueous solutions of neutral salts (KSCN, KCl, (NH)SO). The changes in the secondary structure were studied at 23 °C and 80 °C by using the second derivative deconvolution method of the IR spectra. Our results demonstrated that the ability of the salts to stabilize/destabilize these two proteins correlates with the Hofmeister series of ions. At the same time, some exceptions were also observed. The destabilization of the native structures of both α-helical albumin and β-structural trypsin upon interaction with neutral salts leads to the formation of intermolecular β-sheets typical for amyloid fibrils or amorphous aggregates. Thus, our quantitative FTIR-spectroscopy analysis allowed us to further clarify the mechanisms and complexity of the neutral salt actions on protein structures which may lead to strategies preventing unwelcome misfolding of proteins.
中性盐对蛋白质构象的影响最早是由霍夫迈斯特(Hofmeister)于 1888 年分析的,但即使在今天,这种现象也尚未完全被理解。为了阐明这种效应,我们研究了两种蛋白质的二级结构变化:人血清白蛋白主要具有α-螺旋结构,而猪胰腺β-胰蛋白酶具有典型的β结构排列,在中性盐(KSCN、KCl、(NH)SO)水溶液中。通过使用 IR 光谱的二阶导数卷积方法,在 23°C 和 80°C 下研究了二级结构的变化。我们的结果表明,盐稳定/不稳定这两种蛋白质的能力与霍夫迈斯特离子序列相关。同时,也观察到了一些例外。与中性盐相互作用会使天然结构的α-螺旋白蛋白和β-结构胰蛋白酶失稳,导致形成典型淀粉样纤维或无定形聚集体的分子间β-片层。因此,我们的定量 FTIR 光谱分析使我们能够进一步阐明中性盐对蛋白质结构作用的机制和复杂性,这可能会导致预防蛋白质不受欢迎的错误折叠的策略。