Caffarena Ernesto R, Grigera J Raúl, Bisch Paulo M
Instituto de Biofísica, Carlos Chagas Filho, UFRJ, Rio de Janeiro, Brazil.
J Mol Graph Model. 2002 Dec;21(3):227-40. doi: 10.1016/s1093-3263(02)00119-5.
The stochastic boundary molecular dynamics simulation method was applied to investigate the structure of a complex comprised of a tetrameric peanut lectin and the tumour-associated disaccharide, Galbeta1-3GalNAc (T-antigen). Only a small region encompassing the active site was explicitly included in the calculations, but the electrical contribution of most outer atoms was taken into account by adding to the effective potential a term coming from an electrostatic potential grid that was pre-calculated and used to approximate the electrostatic energy and the force at any point in the interacting site. Results of simulating the intermolecular hydrogen bond network agree fairly well with X-ray experiments. An estimation of the direct and water-mediated interaction mean lifetimes and mean water residence times around the T-antigen oxygen atoms was computed over 400 ps. Monitoring the behaviour of water molecules within the active site revealed that there is a constant exchange of water with the bulk, especially in the proximity of ASN41, ASN127 and GLU129. The temporal evolution of the glycosidic linkage was also investigated and compared with simulations of T-antigen in solution. These studies of peanut lectins-sugar complexes clearly emphasize the importance of bound water molecules in generating carbohydrate specificity.
采用随机边界分子动力学模拟方法研究了由四聚体花生凝集素和肿瘤相关二糖β-半乳糖基-1,3-N-乙酰半乳糖胺(T抗原)组成的复合物的结构。计算中仅明确包含了围绕活性位点的一个小区域,但通过在有效势中添加一项来自预先计算的静电势网格的项,考虑了大多数外层原子的电贡献,该项用于近似相互作用位点中任意点的静电能和力。模拟分子间氢键网络的结果与X射线实验相当吻合。在400皮秒内计算了T抗原氧原子周围直接和水介导相互作用的平均寿命以及平均水停留时间的估计值。监测活性位点内水分子的行为发现,水分子与本体之间存在持续交换,尤其是在天冬酰胺41、天冬酰胺127和谷氨酸129附近。还研究了糖苷键的时间演化,并与溶液中T抗原的模拟结果进行了比较。这些对花生凝集素-糖复合物的研究清楚地强调了结合水分子在产生碳水化合物特异性方面的重要性。