Jewsbury P, Kitagawa T
Institute for Molecular Science, Okazaki, Japan.
Biophys J. 1994 Dec;67(6):2236-50. doi: 10.1016/S0006-3495(94)80708-8.
Four independent 90 ps molecular dynamics simulations of sperm-whale wild-type carbonmonoxy myoglobin (MbCO) have been calculated using a new AMBER force field for the haem prosthetic group. Two trajectories have the distal 64N delta nitrogen protonated, and two have the 64N epsilon nitrogen protonated; all water molecules within 16 A of the carbonyl O are included. In three trajectories, the distal residue remains part of the haem pocket, with the protonated distal nitrogen pointing into the active site. This is in contrast with the neutron diffraction crystal structure, but is consistent with the solution phase CO stretching frequencies (upsilon CO) of MbCO and various of its mutants. There are significant differences in the "closed" pocket structures found for each tautomer: the 64N epsilon H trajectories both show stable distal-CO interactions, whereas the 64N delta H tautomer) has a weaker interaction resulting in a more mobile distal side chain. One trajectory (a 64N delta H tautomer) has the distal histidine moving out into the "solvent", leaving the pocket in an "open" structure, with a large unhindered entrance to the active site. These trajectories suggest that the three upsilon CO frequencies observed for wild-type MbCO in solution, rather than representing significantly different Fe-C-O geometries as such, arise from three different haem pocket structures, each with different electric fields at the ligand. Each pocket structure corresponds to a different distal histidine conformer: the A3 band to the 64N epsilon H tautomer, the A1,2 band to the 64N delta H tautomer, and the A0 band to the absence of any significant interaction with the distal side chain.
使用一种针对血红素辅基的新AMBER力场,对抹香鲸野生型碳氧肌红蛋白(MbCO)进行了四次独立的90皮秒分子动力学模拟。两条轨迹中远端64N的δ氮被质子化,另外两条轨迹中64N的ε氮被质子化;羰基O周围16埃范围内的所有水分子都被纳入。在三条轨迹中,远端残基仍然是血红素口袋的一部分,质子化的远端氮指向活性位点。这与中子衍射晶体结构不同,但与MbCO及其各种突变体的溶液相CO伸缩频率(υCO)一致。每种互变异构体的“封闭”口袋结构存在显著差异:64NεH轨迹均显示出稳定的远端-CO相互作用,而64NδH互变异构体的相互作用较弱,导致远端侧链更具流动性。一条轨迹(64NδH互变异构体)中远端组氨酸移动到“溶剂”中,使口袋呈“开放”结构,活性位点有一个大的无障碍入口。这些轨迹表明,在溶液中观察到的野生型MbCO的三种υCO频率,并非代表本质上显著不同的Fe-C-O几何结构,而是源于三种不同的血红素口袋结构,每种结构在配体处具有不同的电场。每个口袋结构对应于不同的远端组氨酸构象:A3带对应于64NεH互变异构体,A1,2带对应于64NδH互变异构体,A0带对应于与远端侧链没有任何显著相互作用的情况。