School of Chemistry, University of Hyderabad, Hyderabad 500 046, India.
J Phys Chem B. 2011 Apr 14;115(14):4110-7. doi: 10.1021/jp110468n. Epub 2011 Mar 15.
The interaction of chitooligosaccharides [(GlcNAc)(2-6)] with pumpkin phloem exudate lectin (PPL) was investigated by isothermal titration calorimetry and computational methods. The dimeric PPL binds to (GlcNAc)(3-5) with binding constants of 1.26-1.53 × 10(5) M(-1) at 25 °C, whereas chitobiose exhibits approximately 66-fold lower affinity. Interestingly, chitohexaose shows nearly 40-fold higher affinity than chitopentaose with a binding constant of 6.16 × 10(6) M(-1). The binding stoichiometry decreases with an increase in the oligosaccharide size from 2.26 for chitobiose to 1.08 for chitohexaose. The binding reaction was essentially enthalpy driven with negative entropic contribution, suggesting that hydrogen bonds and van der Waals' interactions are the main factors that stabilize PPL-saccharide association. The three-dimensional structure of PPL was predicted by homology modeling, and binding of chitooligosaccharides was investigated by molecular docking and molecular dynamics simulations, which showed that the protein binding pocket can accommodate up to three GlcNAc residues, whereas additional residues in chitotetraose and chitopentaose did not exhibit any interactions with the binding pocket. Docking studies with chitohexaose indicated that the two triose units of the molecule could interact with different protein binding sites, suggesting formation of higher order complexes by the higher oligomers of GlcNAc by their simultaneous interaction with two protein molecules.
壳寡糖[(GlcNAc)(2-6)]与南瓜韧皮部渗出液凝集素(PPL)的相互作用通过等温热滴定法和计算方法进行了研究。二聚体 PPL 与(GlcNAc)(3-5)的结合常数在 25°C 下为 1.26-1.53×10(5)M(-1),而二糖仅表现出约 66 倍的低亲和力。有趣的是,壳六糖的亲和力比壳五糖高近 40 倍,结合常数为 6.16×10(6)M(-1)。随着寡糖尺寸的增加,结合化学计量数从二糖的 2.26 降低至六糖的 1.08。结合反应主要是由焓驱动的,熵贡献为负,表明氢键和范德华相互作用是稳定 PPL-糖结合的主要因素。通过同源建模预测了 PPL 的三维结构,并通过分子对接和分子动力学模拟研究了壳寡糖的结合,结果表明该蛋白结合口袋可容纳多达三个 GlcNAc 残基,而壳四糖和壳五糖的额外残基与结合口袋没有任何相互作用。与壳六糖的对接研究表明,该分子的两个三糖单元可以与不同的蛋白结合位点相互作用,表明由 GlcNAc 的更高寡聚物通过同时与两个蛋白分子相互作用形成更高阶的复合物。