首页> 外文期刊>Biotechnology Journal: Healthcare,Nutrition,Technology >Salts employed in hydrophobic interaction chromatography can change protein structure - insights from protein-ligand interaction thermodynamics, circular dichroism spectroscopy and small angle X-ray scattering
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Salts employed in hydrophobic interaction chromatography can change protein structure - insights from protein-ligand interaction thermodynamics, circular dichroism spectroscopy and small angle X-ray scattering

机译:疏水相互作用色谱中使用的盐可以改变蛋白质结构-蛋白质-配体相互作用热力学,圆二色光谱和小角度X射线散射的见解

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Key requirements of protein purification by hydrophobic interaction chromatography (HIC) are preservation of the tertiary/quaternary structure, maintenance of biological function, and separation of the correctly folded protein from its unfolded forms or aggregates. This study examines the relationship between the HIC retention behavior of hen egg white lysozyme (HEWL) in high concentrations of several kosmotropic salts and its conformation, assessed by circular dichroism (CD) spectroscopy. Further, the physicochemical properties of HEWL in the presence of high concentrations of ammonium sulfate, sodium chloride and magnesium chloride were investigated by small angle X-ray scattering (SAXS) at different temperatures. Radii of gyration were extrapolated from Guinier approximations and the indirect transform program GNOM with protein-protein interaction and contrast variation taken into account. A bead model simulation provided information on protein structural changes using ab initio reconstruction with GASBOR. These results correlated to the secondary structure content obtained from CD spectroscopy of HEWL. These changes in SAXS and CD data were consistent with heat capacity C-p-values obtained from van't Hoff plot analyses of the retention data. Collectively, these insights enable informed decisions to be made on the choice of chromatographic conditions, leading to improved separation selectivity and opportunities for innovative column-assisted protein refolding methods.
机译:通过疏水相互作用色谱(HIC)纯化蛋白质的关键要求是三级/四级结构的保留,生物学功能的维持以及正确折叠的蛋白质与未折叠形式或聚集体的分离。这项研究检查了高浓度几种同调盐中的鸡蛋清溶菌酶(HEWL)的HIC保留行为与其构象之间的关系,通过圆二色性(CD)光谱法对其进行了评估。此外,通过在不同温度下的小角度X射线散射(SAXS)研究了高浓度硫酸铵,氯化钠和氯化镁存在下HEWL的理化性质。旋转半径是从吉尼尔(Guinier)近似推算出来的,并考虑了具有蛋白质间相互作用和对比度差异的间接转化程序GNOM。珠模型仿真提供了使用GASBOR从头开始重建的蛋白质结构变化信息。这些结果与从HEWL的CD光谱学获得的二级结构含量相关。 SAXS和CD数据的这些变化与从保留数据的van't Hoff图分析获得的热容C-p值一致。总而言之,这些见解使您能够根据色谱条件的选择做出明智的决定,从而提高了分离选择性,并为创新的色谱柱辅助蛋白重折叠方法提供了机会。

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