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Conductometric detection of coil-to-helix transition of anionic polysaccharides. kappa-carrageenan

机译:电导检测阴离子多糖的线圈到螺旋过渡。 κ-角叉菜胶

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The conformational coil-to-helix transition of an ionic polysaccharide, kappa-carrageenan, as effected by temperature and concentration of the polyion, was studied using conductance measurements in solutions of low ionic strength. Interactions between counterions, Na+, and polyions during such a transition were quantified by the ratio of the diffusion coefficient of Na+ counterions in the pobelectrolyte solution (kappa-carrageenan sodium salt) to that in the solution without polyelectrolyte (NaCl), Structural characterization of kappa-carrageenan conformers, expressed by the charge separation distance, was performed based on Manning's theory for polyelectrolytes. The conformational transition was a reversible coil-to-double helix process resulting from temperature decrease. This process did not depend on the concentration of kappa-carrageenan for the concentration range from 10 to 40 mM, The determined charge separation distance for kappa-carrageenan in solution was 0.89 and 0.40 nm for a coil and a double-helix form, respectively. [References: 39]
机译:使用电导率测量在低离子强度溶液中研究了离子多糖κ角叉菜胶的构象线圈到螺旋的转变,该转变受温度和浓度的影响。通过过渡电解质溶液(κ-角叉菜胶钠盐)与不含聚电解质(NaCl)的溶液中Na +抗衡离子的扩散系数之比,定量分析这种过渡过程中抗衡离子,Na +和聚离子之间的相互作用。 -角叉菜胶构象体,由电荷分离距离表示,基于曼宁的聚电解质理论进行。构象转变是由温度降低引起的可逆的从线圈到双螺旋的过程。此过程在10至40 mM的浓度范围内不依赖于κ-角叉菜胶的浓度。对于线圈和双螺旋形式,溶液中κ-角叉菜胶的确定电荷分离距离分别为0.89和0.40 nm。 [参考:39]

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