Murmansk State Technical University, Sportivnaya str., 13, 183010 Murmansk, Russia.
St. Petersburg State University, Center for Magnetic Resonance, Universitetskij pr., 26, 198504 St.Petersburg, Russia.
Carbohydr Polym. 2016 Oct 20;151:1152-1161. doi: 10.1016/j.carbpol.2016.06.060. Epub 2016 Jun 16.
The intermolecular interactions between an anionic polysaccharide from the red algae κ-carrageenan and a gelatin polypeptide, forming stoichiometric polysaccharide-polypeptide (bio)polyelectrolyte complexes in the aqueous phase, were examined. The major method of investigation was high-resolution (1)H NMR spectroscopy. Additional data were obtained by UV absorption spectroscopy, light scattering dispersion and capillary viscometry. Experimental data were interpreted in terms of the changing roles of electrostatic interactions, hydrophobic interactions and hydrogen bonds when κ-carrageenan-gelatin complexes are formed. At high temperatures, when biopolymer macromolecules in solution are in the state of random coil, hydrophobic interactions make a major contribution to complex stabilization. At the temperature of gelatin's coil→helix conformational transition and at lower temperatures, electrostatic interactions and hydrogen bonds play a defining role in complex formation. A proposed model of the κ-carrageenan-gelatin complex is discussed.
研究了阴离子多糖红藻角叉菜胶与明胶多肽之间的分子间相互作用,在水相中形成化学计量比的多糖-多肽(生物)聚电解质复合物。主要的研究方法是高分辨率(1)H NMR 光谱法。通过紫外吸收光谱、光散射色散和毛细管粘度计获得了附加数据。根据形成角叉菜胶-明胶复合物时静电相互作用、疏水相互作用和氢键的作用变化,解释了实验数据。在高温下,当溶液中的生物聚合物大分子处于无规卷曲状态时,疏水相互作用对复合物的稳定起主要作用。在明胶的卷曲→螺旋构象转变温度和较低温度下,静电相互作用和氢键在复合物形成中起决定性作用。讨论了所提出的角叉菜胶-明胶复合物模型。