Schefer Larissa, Usov Ivan, Mezzenga Raffaele
Department of Health Sciences and Technology, ETH Zurich , Schmelzbergstrasse 9, 8092 Zurich, Switzerland.
Biomacromolecules. 2015 Mar 9;16(3):985-91. doi: 10.1021/bm501874k. Epub 2015 Feb 27.
The macromolecular conformations of anionic polysaccharides with decreasing linear charge densities—lambda, iota, and kappa carrageenan—, at varying NaCl concentrations, are studied by single-chain statistical analysis of high-resolution atomic force microscopy (AFM) images. Lambda remains in the random coil conformation, whereas iota and kappa undergo ion-induced coil-helix transitions, with a 2-3-fold increase in chain rigidity. At low ionic strengths, I, the polymer chains sequester Na⁺, leading to a greater flexibility, and beyond a critical I to the formation of an intramolecular single helix. The persistence length exhibits a sublinear dependence on the Debye screening length, κ⁻¹, L(p)(e) ∼ κ(-y) (with 0 < y < 1), deviating from the classical polyelectrolyte behavior expressed by Odijk-Skolnick-Fixman or Barrat-Joanny models. Above a certain I, the L(p) shows an upturn, resulting in polymer stiffening and nonmonotonic behavior. This phenomenon is inferred from specific ion-polymer interactions and/or nonlinear electrostatic physics involving ion-ion correlations.
通过对高分辨率原子力显微镜(AFM)图像进行单链统计分析,研究了线性电荷密度逐渐降低的阴离子多糖(λ-、ι-和κ-卡拉胶)在不同NaCl浓度下的大分子构象。λ-卡拉胶保持无规卷曲构象,而ι-和κ-卡拉胶则经历离子诱导的卷曲-螺旋转变,链刚性增加2至3倍。在低离子强度I下,聚合物链螯合Na⁺,导致更大的柔韧性,超过临界I时则形成分子内单螺旋。持久长度对德拜屏蔽长度κ⁻¹表现出亚线性依赖关系,L(p)(e) ∼ κ(-y)(0 < y < 1),偏离了由奥迪克-斯科尔尼克-菲克斯曼或巴拉特-乔阿尼模型所表达的经典聚电解质行为。在特定的I以上,L(p)出现上升,导致聚合物变硬和非单调行为。这种现象是由特定的离子-聚合物相互作用和/或涉及离子-离子相关性的非线性静电物理学推断出来的。