National Institute of Immunology, Aruna Asaf Ali Marg, New Delhi 110067.
Biophys J. 2009 Jan;96(1):21-34. doi: 10.1529/biophysj.108.134601.
The binding of carbohydrate substrates to concanavalin A (Canavalia ensiformis agglutinin (ConA)) is essential for its interaction with various glycoproteins. Even though metal ions are known to control the sugar binding ability of legume lectins, the interplay between sugar and metal ion binding to ConA has not been elucidated in a detailed manner at the atomic level. We have carried out long, explicit solvent molecular dynamics simulations for tetrameric, dimeric, and monomeric forms of ConA in both the presence and absence of trimannoside and metal ions. Detailed analyses of these trajectories for various oligomeric forms under different environmental conditions have revealed dynamic conformational changes associated with the demetalization of ConA. We found that demetalization of ConA leads to large conformational changes in the ion binding loop, with some of the loop residues moving as far as 17 A with respect to their positions in the native trimannoside and metal ion-bound crystal structure. However, the ?-sheet core of the protein remains relatively unperturbed. In addition, the high mobility of the ion binding loop results in drifting of the substrates in the absence of bound metal ions. These simulations provide a theoretical rationale for previous experimental observations regarding the abolition of the sugar binding ability upon demetalization. We also found that the amino acid stretches of ConA, having high B-factor values in the crystal structure, show relatively greater mobility in the simulations. The overall agreement of the results of our simulations with various experimental studies suggests that the force field parameters and length of simulations used in our study are adequate to mimic the dynamic structural changes in the ConA protein.
碳水化合物底物与伴刀豆球蛋白 A(Concanavalin A,刀豆凝集素(ConA))的结合对于其与各种糖蛋白的相互作用至关重要。尽管已知金属离子可以控制豆科凝集素的糖结合能力,但在原子水平上尚未详细阐明 ConA 与糖和金属离子结合的相互作用。我们已经对四聚体、二聚体和单体形式的 ConA 进行了长时间的、显式溶剂分子动力学模拟,同时存在和不存在三糖和金属离子的情况下。对这些轨迹进行了详细分析,研究了不同寡聚体形式在不同环境条件下的动态构象变化,这些变化与 ConA 的脱金属化有关。我们发现 ConA 的脱金属化导致离子结合环的构象发生很大变化,其中一些环残基的移动距离相对于其在天然三糖和金属离子结合晶体结构中的位置可达 17Å。然而,蛋白质的β-折叠核心相对不受干扰。此外,离子结合环的高迁移性导致在没有结合金属离子的情况下底物的漂移。这些模拟为先前关于脱金属化导致糖结合能力丧失的实验观察提供了理论依据。我们还发现,ConA 中晶体结构中 B 因子值较高的氨基酸片段在模拟中表现出相对更大的迁移率。我们的模拟结果与各种实验研究的总体一致性表明,我们研究中使用的力场参数和模拟长度足以模拟 ConA 蛋白的动态结构变化。