State Key Laboratory of Theoretical and Computational Chemistry, Institute of Theoretical Chemistry, Jilin University, Changchun, People's Republic of China.
PLoS One. 2012;7(6):e39546. doi: 10.1371/journal.pone.0039546. Epub 2012 Jun 26.
The research on the binding process of ligand to pyrazinamidase (PncA) is crucial for elucidating the inherent relationship between resistance of Mycobacterium tuberculosis and PncA's activity. In the present study, molecular dynamics (MD) simulation methods were performed to investigate the unbinding process of nicotinamide (NAM) from two PncA enzymes, which is the reverse of the corresponding binding process. The calculated potential of mean force (PMF) based on the steered molecular dynamics (SMD) simulations sheds light on an optimal binding/unbinding pathway of the ligand. The comparative analyses between two PncAs clearly exhibit the consistency of the binding/unbinding pathway in the two enzymes, implying the universality of the pathway in all kinds of PncAs. Several important residues dominating the pathway were also determined by the calculation of interaction energies. The structural change of the proteins induced by NAM's unbinding or binding shows the great extent interior motion in some homologous region adjacent to the active sites of the two PncAs. The structure comparison substantiates that this region should be very important for the ligand's binding in all PncAs. Additionally, MD simulations also show that the coordination position of the ligand is displaced by one water molecule in the unliganded enzymes. These results could provide the more penetrating understanding of drug resistance of M. tuberculosis and be helpful for the development of new antituberculosis drugs.
研究配体与吡嗪酰胺酶(PncA)的结合过程对于阐明结核分枝杆菌耐药性与 PncA 活性之间的内在关系至关重要。本研究采用分子动力学(MD)模拟方法研究了烟酰胺(NAM)从两种 PncA 酶中释放的解缚过程,这是相应结合过程的逆过程。基于定向分子动力学(SMD)模拟计算的平均力势(PMF)揭示了配体的最佳结合/解缚途径。对两种 PncA 的比较分析清楚地表明了两种酶中结合/解缚途径的一致性,这表明该途径在各种 PncA 中具有普遍性。通过计算相互作用能还确定了几个主导途径的重要残基。NAM 解缚或结合引起的蛋白质结构变化显示,两种 PncA 的活性位点附近的同源区域内存在很大程度的内部运动。结构比较证实,该区域对于所有 PncA 中配体的结合非常重要。此外,MD 模拟还表明,在无配体的酶中,配体的配位位置被一个水分子取代。这些结果可以更深入地了解结核分枝杆菌的耐药性,并有助于开发新的抗结核药物。