School of Chemistry and Chemical Engineering, University of Chinese Academy of Sciences, Beijing 100049, China.
J Chem Inf Model. 2013 May 24;53(5):1157-67. doi: 10.1021/ci300526u. Epub 2013 May 13.
Protein tyrosine phosphatase 1B (PTP1B) is a promising target for the treatment of obesity and type II diabetes. Allosteric inhibitors can stabilize an active conformation of PTP1B by hindering the conformational transition of the WPD loop of PTP1B from the open to the closed state. Here, the umbrella sampling molecular dynamics (MD) simulations were employed to compute the reaction path of the conformational transition of PTP1B, and the snapshots extracted from the MD trajectory were clustered into 58 conformational groups based on the key conformational parameter. Then, the impact of the conformational change of the WPD loop on the interactions between the allosteric site of PTP1B and an allosteric inhibitor BB3 was explored by using the MM/GBSA binding free energy calculations and free energy decomposition analysis. The simulation results show that the binding free energy of BB3 increases gradually from the open to the closed conformation of the WPD loop, providing the molecular mechanism of allosteric inhibition. Correlation analysis of the different energy terms indicates that the allosteric inhibitor with more negative van der Waals contribution cannot only exhibit stronger binding affinity but also hinder the swing of the WPD loop more effectively. Besides, it is found that the energy contribution of Lys292 in the α7 helix undergoes significant change, which reveals that Lys292 is not only the key residue for ligand binding but also plays an important role in hindering the conformational change of the WPD loop.
蛋白酪氨酸磷酸酶 1B(PTP1B)是治疗肥胖症和 2 型糖尿病的有希望的靶点。变构抑制剂可以通过阻碍 PTP1B 的 WPD 环从开环到闭环的构象转变,来稳定 PTP1B 的活性构象。在这里,采用伞状采样分子动力学(MD)模拟来计算 PTP1B 构象转变的反应路径,并根据关键构象参数将 MD 轨迹中提取的快照聚类成 58 个构象组。然后,通过 MM/GBSA 结合自由能计算和自由能分解分析,研究了 WPD 环构象变化对 PTP1B 的变构位点与变构抑制剂 BB3 之间相互作用的影响。模拟结果表明,从 WPD 环的开环到闭环构象,BB3 的结合自由能逐渐增加,为变构抑制提供了分子机制。对不同能量项的相关分析表明,具有更负范德华贡献的变构抑制剂不仅可以表现出更强的结合亲和力,而且可以更有效地阻碍 WPD 环的摆动。此外,还发现 α7 螺旋中的 Lys292 能量贡献发生了显著变化,这表明 Lys292 不仅是配体结合的关键残基,而且在阻碍 WPD 环构象变化方面也起着重要作用。