Antonov Yu A, Dmitrochenko A P, Leontiev A L
N.M. Emanuel Institute of Biochemical Physics, Russian Academy of Sciences, Kosigin Str. 4, 119991 Moscow, Russia.
Int J Biol Macromol. 2006 Feb 28;38(1):18-24. doi: 10.1016/j.ijbiomac.2005.12.011. Epub 2006 Jan 31.
This work studies specific interactions and compatibility between a legumin and a linear carboxylated polysaccharide using gel permeation chromatography, sedimentation analysis, SDS gel electrophoresis, viscometry and phase analysis measurements. It uses the system water/11 S globulin/CMC as a model. Carboxymethylcellulose (CMC) molecules are able to cause a partial dissociation of the protein, subsequent formation of soluble interbiopolymeric complexes and partial aggregation of the free non combined protein at room temperature and pH 6.0-6.5. The maximal binding of biopolymers is observed at their equimolar ratio. The decrease in temperature of the mixture from 293 to 277 K leads to formation of the complex coacervate. The increase in pH from 6.0 to 7.6 results in suppression of complex formation and manifestation of the phenomenon of thermodynamic incompatibility if the total concentration of biopolymers in the system exceeds the critical concentration of segregative phase separation.
本研究采用凝胶渗透色谱、沉降分析、SDS凝胶电泳、粘度测定和相分析测量等方法,研究了豆球蛋白与线性羧化多糖之间的特定相互作用和相容性。以水/11S球蛋白/羧甲基纤维素(CMC)体系为模型。羧甲基纤维素(CMC)分子能够使蛋白质发生部分解离,随后形成可溶性生物聚合物间复合物,并使游离未结合的蛋白质在室温及pH值为6.0 - 6.5时发生部分聚集。在生物聚合物等摩尔比时观察到最大结合。混合物温度从293K降至277K会导致形成复合凝聚层。如果体系中生物聚合物的总浓度超过分离相分离的临界浓度,pH值从6.0升高到7.6会导致复合物形成受到抑制,并表现出热力学不相容现象。