Institute for Complex Systems (ICS-5: Molecular Biophysics), Forschungszentrum Jülich, Jülich, Germany.
Biophys J. 2012 Jan 18;102(2):351-9. doi: 10.1016/j.bpj.2011.12.031.
The removal of the heme group from myoglobin (Mb) results in a destabilization of the protein structure. The dynamic basis of the destabilization was followed by comparative measurements on holo- (holo-Mb) and apomyoglobin (apo-Mb). Mean-squared displacements (MSD) and protein resilience on the picosecond-to-nanosecond timescale were measured by elastic incoherent neutron scattering. Differences in thermodynamic parameters, MSD, and resilience were observed for both proteins. The resilience of holo-Mb was significantly lower than that of apo-Mb, indicating entropic stabilization by a higher degree of conformational sampling in the heme-bound folded protein. Molecular dynamics simulations provided site-specific information. Averaged over the whole structure, the molecular dynamics simulations yielded similar MSD and resilience values for the two proteins. The mobility of residues around the heme group in holo-Mb showed a smaller MSD and higher resilience compared to the same residue group in apo-Mb. It is of interest that in holo-Mb, higher MSD values are observed for the residues outside the heme pocket, indicating an entropic contribution to protein stabilization by heme binding, which is in agreement with experimental results.
肌红蛋白(Mb)中的血红素基团被移除会导致其蛋白质结构不稳定。通过对全同(全同肌红蛋白)和脱辅基肌红蛋白(apo-Mb)进行对比测量,研究了这种失稳的动力学基础。通过弹性非相干中子散射测量了皮秒至纳秒时间尺度上的均方根位移(MSD)和蛋白质弹性。两种蛋白质在热力学参数、MSD 和弹性方面都存在差异。全同肌红蛋白的弹性明显低于脱辅基肌红蛋白,表明在血红素结合的折叠蛋白质中,通过更高程度的构象采样来实现熵稳定。分子动力学模拟提供了特定于位点的信息。在整个结构上平均,两种蛋白质的分子动力学模拟产生了相似的 MSD 和弹性值。与脱辅基肌红蛋白中的相同残基组相比,全同肌红蛋白中血红素基团周围残基的 MSD 较小,弹性较高。有趣的是,在全同肌红蛋白中,血红素口袋外的残基的 MSD 值较高,表明血红素结合对蛋白质稳定性的熵贡献,这与实验结果一致。