Wang Xiaolei, Li Chaoqun, Wang Yan, Chen Guangju
Key Laboratory of Theoretical and Computational Photochemistry, Ministry of Education, College of Chemistry, Beijing Normal University, Beijing 100875, China.
Int J Mol Sci. 2013 Dec 20;15(1):75-99. doi: 10.3390/ijms15010075.
We carried out molecular dynamics simulations and free energy calculations for a series of binary and ternary models of the cisplatin, transplatin and oxaliplatin agents binding to a monomeric Atox1 protein and a dimeric Atox1 protein to investigate their interaction mechanisms. All three platinum agents could respectively combine with the monomeric Atox1 protein and the dimeric Atox1 protein to form a stable binary and ternary complex due to the covalent interaction of the platinum center with the Atox1 protein. The results suggested that the extra interaction from the oxaliplatin ligand-Atox1 protein interface increases its affinity only for the OxaliPt + Atox1 model. The binding of the oxaliplatin agent to the Atox1 protein might cause larger deformation of the protein than those of the cisplatin and transplatin agents due to the larger size of the oxaliplatin ligand. However, the extra interactions to facilitate the stabilities of the ternary CisPt + 2Atox1 and OxaliPt + 2Atox1 models come from the α1 helices and α2-β4 loops of the Atox1 protein-Atox1 protein interface due to the cis conformation of the platinum agents. The combinations of two Atox1 proteins in an asymmetric way in the three ternary models were analyzed. These investigations might provide detailed information for understanding the interaction mechanism of the platinum agents binding to the Atox1 protein in the cytoplasm.
我们对顺铂、反铂和奥沙利铂与单体Atox1蛋白和二聚体Atox1蛋白结合的一系列二元和三元模型进行了分子动力学模拟和自由能计算,以研究它们的相互作用机制。由于铂中心与Atox1蛋白的共价相互作用,所有三种铂类药物均可分别与单体Atox1蛋白和二聚体Atox1蛋白结合,形成稳定的二元和三元复合物。结果表明,奥沙利铂配体 - Atox1蛋白界面的额外相互作用仅增加了其对奥沙利铂+Atox1模型的亲和力。由于奥沙利铂配体尺寸较大,奥沙利铂药物与Atox1蛋白的结合可能比顺铂和反铂药物引起更大的蛋白质变形。然而,促进三元顺铂+2Atox1和奥沙利铂+2Atox1模型稳定性的额外相互作用来自于铂类药物顺式构象导致的Atox1蛋白 - Atox1蛋白界面的α1螺旋和α2-β4环。分析了三种三元模型中两种Atox1蛋白以不对称方式的组合。这些研究可能为理解铂类药物在细胞质中与Atox1蛋白结合的相互作用机制提供详细信息。