Banushkina Polina, Meuwly Markus
Department of Chemistry, University of Basel, Klingelbergstrasse 80, 4056 Basel, Switzerland.
J Phys Chem B. 2005 Sep 8;109(35):16911-7. doi: 10.1021/jp051938n.
The rebinding of CO to myoglobin (Mb) from locations around the active site is studied using a combination of molecular dynamics and stochastic simulations for native and L29F mutant Mb. The interaction between the dissociated ligand and the protein environment is described by the recently developed fluctuating three-point charge model for the CO molecule. Umbrella sampling along trajectories, previously found to sample the binding site (B) and the Xe4 pocket, is used to construct free-energy profiles for the ligand escape. On the basis of the Smoluchowski equation, the relaxation of different initial population distributions is followed in space and time. For native Mb at room temperature, the calculated rebinding times are in good agreement with experimental values and give an inner barrier of 4.3 kcal/mol between the docking site B (Mb...CO) and the A state (bound MbCO), compared to an effective barrier, Heff, of 4.5 kcal/mol and barriers into the majority conformation A1 and the minority conformation A3 of 2.4 and 4.3 kcal/mol, respectively. In the case of the L29F mutant, the free-energy surface is flatter and the dynamics is much more rapid. As was found in experiment, escape to the Xe4 pocket is facile for L29F whereas, for native Mb, the barriers to this site are larger. At lower temperatures, the rebinding dynamics is delayed by orders of magnitude also due to increased barriers between the docking sites.
使用分子动力学和随机模拟相结合的方法,研究了一氧化碳(CO)从天然型和L29F突变型肌红蛋白(Mb)活性位点周围位置的重新结合。解离的配体与蛋白质环境之间的相互作用通过最近开发的CO分子波动三点电荷模型来描述。沿轨迹进行伞形抽样,此前发现该抽样可对结合位点(B)和Xe4口袋进行采样,用于构建配体逃逸的自由能分布。基于斯莫卢霍夫斯基方程,跟踪不同初始种群分布在空间和时间上的弛豫情况。对于室温下的天然型Mb,计算得到的重新结合时间与实验值吻合良好,对接位点B(Mb...CO)与A态(结合的MbCO)之间的内势垒为4.3 kcal/mol,相比之下,有效势垒Heff为4.5 kcal/mol,进入主要构象A1和次要构象A3的势垒分别为2.4和4.3 kcal/mol。在L29F突变体的情况下,自由能表面更平坦,动力学更快。正如实验中所发现的,L29F突变体很容易逃逸到Xe4口袋,而对于天然型Mb,到达该位点的势垒更大。在较低温度下,由于对接位点之间的势垒增加,重新结合动力学也延迟了几个数量级。