首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Amplification of Salt-Induced Protein Diffusiophoresis by Varying Salt from Potassium to Sodium to Magnesium Chloride in Water
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Amplification of Salt-Induced Protein Diffusiophoresis by Varying Salt from Potassium to Sodium to Magnesium Chloride in Water

机译:通过从水中的钾到氯化镁到氯化镁中的钾来扩增盐诱导的蛋白质扩散蛋白

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Salt-induced diffusiophoresis is the migration of a macromolecule or a colloidal particle induced by a concentration gradient of salt in water. Here, the effect of salt type on salt-induced diffusiophoresis of the protein lysozyme at pH 4.5 and 25 degrees C was examined as a function of salt concentration for three chloride salts: NaCl, KCl, and MgCl2. Diffusiophoresis coefficients were calculated from experimental ternary diffusion coefficients on lysozyme-salt-water mixtures. In all cases, diffusiophoresis of this positively charged protein occurs from high to low salt concentration. An appropriate mass transfer process was theoretically examined to show that concentration gradients of MgCl2 produce significant lysozyme diffusiophoresis. This is attributed to the relatively low mobility of Mg2+ ions compared to that of Cl- lions at low salt concentration and a strong thermodynamic nonideality of this salt at high salt concentration. These findings indicate that MgCl2 concentration gradients could be exploited for protein manipulation in solution (e.g., using microfluidic technologies) with applications to protein adsorption and purification. The dependence of lysozyme diffusiophoresis on salt type was theoretically examined and linked to protein charge. The effect of salts on hydrogen-ion titration curves was experimentally characterized to understand the role of salt type on protein charge. Our results indicate that binding of Mg2+ ions to lysozyme further enhances protein diffusiophoresis.
机译:诱导的扩散助孔是通过水中浓度梯度诱导的大分子或胶体颗粒的迁移。这里,将盐类型对pH 4.5和25℃的蛋白质溶菌酶的盐诱导的扩散疗法的影响作为三种氯化物盐的盐浓度:NaCl,KCl和MgCl2的函数。从溶菌酶 - 盐 - 水混合物上的实验三元扩散系数计算扩散疗法系数。在所有情况下,这种带正电荷蛋白质的扩散血症发生从高于低盐浓度。理论上检查了适当的传质过程以显示MgCl2的浓度梯度产生显着的溶菌酶扩散疗法。这归因于Mg2 +离子的相对低的迁移率与低盐浓度下的Cl-狮率和该盐的强热慢性浓度的强大的热力学非直观性相比。这些发现表明,MgCl2浓度梯度可以利用溶液中的蛋白质操作(例如,使用微流体技术)与蛋白质吸附和纯化的应用。理论上检查溶菌酶对盐型对盐型的依赖性并与蛋白质电荷连接。实验表征盐对氢离子滴定曲线的影响,以了解盐类型对蛋白质电荷的作用。我们的结果表明Mg2 +离子与溶菌酶的结合进一步增强了蛋白质扩散疗法。

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