首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Ionic Strength-Dependent pK Shift in the Helix-Coil Transition of Grafted Poly(L-glutamic acid)Layers Analyzed by Electrokinetic and Ellipsometric Measurements
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Ionic Strength-Dependent pK Shift in the Helix-Coil Transition of Grafted Poly(L-glutamic acid)Layers Analyzed by Electrokinetic and Ellipsometric Measurements

机译:电动和椭偏测量分析接枝聚(L-谷氨酸)层的螺旋-螺旋转变中的离子强度依赖性pK位移

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Surface-bound layers of poly(L-glutamic acid)prepared by a recently described "grafting-from"method1 were analyzed with respect to electrical charging and structural alterations upon variation of pH and concentration of the background electrolyte in aqueous solutions.The microslit electrokinetic setup (MES)2'3 was utilized for the combined determination of zeta potential and surface conductivity on the basis of streaming potential and streaming current measurements at polypeptide layers in contact with aqueous electrolyte solutions of varied composition.In situ ellipsometry was applied at similar samples immersed in identical aqueous solutions to investigate the influence of the solution pH on the structure of the polypeptide layers.Zeta potential and Dukhin number versus pH plots revealed the dissociation behavior of the surface-bound polypeptides indicating a significant shift of the pK of their acidic side chains correlating with the concentration of the background electrolyte potassium chloride and the related variation of the Debye screening length.Surface conductivity data pointed at a more expanded structure of the polypeptide layer in the fully dissociated state as an increased ion conductance in this part of the interface was determined.The occurrence of a strong increase of the thickness and a corresponding decrease of the refractive index for the coil state of the layer strongly supports the findings of the electrokinetic measurements.This fully reversible "switching"of the layer structure was attributed to helix-coil transitions within the grafted polypeptides induced by the dissociation of carboxylic acid functions of the polypeptide side chains.The shift of the "switching pH"of the surface-bound poly(L-glutamic acid)layers at varied concentrations of the background electrolyte was interpreted as a result of the pK shift of the carboxylic acid groups of the polypeptide side chains.The observed patterns prove that the electrostatic interactions causing this shift occur within but not between the grafted chains.
机译:分析了由最近描述的“接枝”方法制备的聚(L-谷氨酸)的表面结合层的电荷变化和pH值和水溶液中背景电解质浓度变化时的结构变化。微缝隙动电装置(MES)2'3用于在与各种成分的电解质水溶液接触的多肽层上的流动电位和流动电流测量的基础上,共同测定zeta电位和表面电导率。在类似样品上采用原位椭圆光度法将其浸入相同的水溶液中以研究溶液pH对多肽层结构的影响.Zeta电势和Dukhin数与pH的关系图揭示了表面结合多肽的解离行为,表明其酸性侧pK发生了显着变化与背景电解质钾浓度相关的链氯化钠和Debye筛选长度的相关变化。表面电导数据表明,在完全解离的状态下,随着该部分界面离子电导率的增加,多肽层的结构更加扩展。层的盘绕状态的厚度的减小和折射率的相应降低强烈地支持了电动测量的结果。层结构的这种完全可逆的“转换”归因于由诱导的嫁接多肽内的螺旋-螺旋转变。在不同背景电解质浓度下,表面结合的聚(L-谷氨酸)层的“转换pH”的变化被解释为pK位移的结果。观察到的图谱证明静电相互作用引起了多肽的侧链上的羧酸基团。他的转移发生在嫁接的链之内,而不是发生在嫁接的链之间。

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