Makshakova Olga, Antonova Maria, Bogdanova Liliya, Faizullin Dzhigangir, Zuev Yuriy
Kazan Institute of Biochemistry and Biophysics, FRC Kazan Scientific Center of RAS, 2/31 Lobachevsky Str., 420111 Kazan, Russia.
Polymers (Basel). 2023 Jan 29;15(3):676. doi: 10.3390/polym15030676.
Polysaccharides, being biocompatible and biodegradable polymers, are highly attractive as materials for protein delivery systems. However, protein-polysaccharide interactions may lead to protein structural transformation. In the current study, we analyze the structural adjustment of a homotetrameric protein, glyceraldehyde-3-phosphate dehydrogenase (GAPDH), upon its interactions with both flexible coil chain and the rigid helix of κ-carrageenan. FTIR spectroscopy was used to probe the secondary structures of both protein and polysaccharide. Electrostatically driven protein-polysaccharide interactions in dilute solutions resulted in an insoluble complex formation with a constant κ-carrageenan/GAPDH ratio of 0.2, which amounts to 75 disaccharide units per mole of protein tetramer. Upon interactions with both coiled and helical polysaccharides, a weakening of the intersubunit interactions was revealed and attributed to a partial GAPDH tetramer dissociation. In turn, protein distorted the helical conformation of κ-carrageenan when co-gelled. Molecular modeling showed the energy favorable interactions between κ-carrageenan and GAPDH at different levels of oligomerization. κ-Carrageenan binds in the region of the NAD-binding groove and the S-loop in OR contact, which may stabilize the OP dimers. The obtained results highlight the mutual conformational adjustment of oligomeric GAPDH and κ-carrageenan upon interaction and the stabilization of GAPDH's dissociated forms upon immobilization in polysaccharide gels.
多糖作为生物相容性和可生物降解的聚合物,作为蛋白质递送系统的材料极具吸引力。然而,蛋白质与多糖的相互作用可能导致蛋白质结构转变。在本研究中,我们分析了同四聚体蛋白甘油醛-3-磷酸脱氢酶(GAPDH)与κ-卡拉胶的柔性卷曲链和刚性螺旋相互作用时的结构调整。傅里叶变换红外光谱用于探测蛋白质和多糖的二级结构。稀溶液中静电驱动的蛋白质-多糖相互作用导致形成不溶性复合物,κ-卡拉胶与GAPDH的恒定比例为0.2,即每摩尔蛋白质四聚体有75个二糖单位。与卷曲和螺旋多糖相互作用时,亚基间相互作用减弱,这归因于部分GAPDH四聚体解离。反过来,蛋白质在共凝胶化时会扭曲κ-卡拉胶的螺旋构象。分子建模显示了κ-卡拉胶与不同寡聚化水平的GAPDH之间能量有利的相互作用。κ-卡拉胶结合在NAD结合凹槽区域和OR接触中的S环,这可能稳定OP二聚体。所得结果突出了寡聚GAPDH与κ-卡拉胶相互作用时的相互构象调整以及GAPDH解离形式在固定于多糖凝胶时的稳定化。