Institut de Recerca Biomèdica, and Barcelona Supercomputing Center Jordi Girona 29, Barcelona, Spain.
J Phys Chem B. 2009 Dec 24;113(51):16346-53. doi: 10.1021/jp903165p.
By using multiple (independent) molecular dynamics (MD) trajectories (about 500 ns in total) of photolized carbon monoxide (CO) within solvated myoglobin, a quantitative description of CO migration and corresponding kinetics is obtained. MD results combined with previously reported quantum mechanical calculations on the CO-heme binding-unbinding reaction step in myoglobin allowed construction of a detailed quantitative model, shedding light on the kinetic mechanism and relevant steps of CO migration and geminate binding. Finally, the obtained (unbiased) theoretical-computational model is critically compared with the available computational and experimental data for myoglobin in solution.
通过对结合在肌红蛋白中的被光解的一氧化碳(CO)进行 500 纳秒左右的多个(独立的)分子动力学(MD)轨迹模拟,我们得到了对 CO 迁移和相应动力学的定量描述。MD 结果与之前关于肌红蛋白中 CO-亚铁血红素结合-解吸反应步骤的量子力学计算相结合,使我们构建了一个详细的定量模型,阐明了 CO 迁移和成对结合的动力学机制和相关步骤。最后,我们对所获得的(无偏的)理论计算模型与溶液中肌红蛋白的现有计算和实验数据进行了批判性比较。