Chen Jianzhong, Wang Jinan, Zhu Weiliang
School of Science, Shandong Jiaotong University, Jinan, China.
Discovery and Design Center, CAS Key Laboratory of Receptor Research, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai, China.
PLoS One. 2014 Jun 11;9(6):e99862. doi: 10.1371/journal.pone.0099862. eCollection 2014.
Adipocyte fatty-acid binding protein (A-FABP) is an important target of drug designs treating some diseases related to lipid-mediated biology. Molecular dynamics (MD) simulations coupled with solvated interaction energy method (SIE) were carried out to study the binding modes of three inhibitors 8CA, F8A and I4A to A-FABP. The rank of our predicted binding affinities is in accordance with experimental data. The results show that the substitution in the position 5 of N-benzyl and the seven-membered ring of N-benzyl-indole carboxylic acids strengthen the I4A binding, while the substitution in the position 2 of N-benzyl weakens the F8A binding. Computational alanine scanning and dynamics analyses were performed and the results suggest that the polar interactions of the positively charged residue R126 with the three inhibitors provide a significant contribution to inhibitor bindings. This polar interaction induces the disappearance of the correlated motion of the C terminus of A-FABP relative to the N terminus and favors the stability of the binding complex. This study is helpful for the rational design of potent inhibitors within the fields of metabolic disease, inflammation and atherosclerosis.
脂肪细胞脂肪酸结合蛋白(A-FABP)是治疗一些与脂质介导生物学相关疾病的药物设计的重要靶点。采用分子动力学(MD)模拟结合溶剂化相互作用能方法(SIE)研究了三种抑制剂8CA、F8A和I4A与A-FABP的结合模式。我们预测的结合亲和力排名与实验数据一致。结果表明,N-苄基位置5的取代以及N-苄基吲哚羧酸的七元环增强了I4A的结合,而N-苄基位置2的取代则削弱了F8A的结合。进行了计算丙氨酸扫描和动力学分析,结果表明带正电荷的残基R126与三种抑制剂的极性相互作用对抑制剂结合有显著贡献。这种极性相互作用导致A-FABP C末端相对于N末端的相关运动消失,并有利于结合复合物的稳定性。本研究有助于在代谢疾病、炎症和动脉粥样硬化领域合理设计强效抑制剂。