Ondrias M R, Rousseau D L, Simon S R
Science. 1981 Aug 7;213(4508):657-9. doi: 10.1126/science.7256263.
A dramatic change occurs in the vibrational properties of the iron-histidine bond, trans to the oxygen binding site, on freezing deoxyhemoglobin. The large, quaternary structure-dependent differences in the shape and frequency of the iron-histidine mode observed in resonance Raman scattering measurements above freezing ae significantly diminished by the freezing event and the scattering intensity increases substantially. On further reduction in temperature to 10 K this broad line becomes narrow and shifts to a higher frequency. These data implicate dynamical processes and protein interaction with water as contributors to the quaternary structure dependence of the iron-histidine bond and thus reflect on the role of that bond in the energetics of cooperative ligand binding.
在冷冻脱氧血红蛋白时,与氧结合位点呈反式构型的铁-组氨酸键的振动特性发生了显著变化。在高于冰点的温度下通过共振拉曼散射测量观察到的铁-组氨酸模式在形状和频率上与四级结构相关的巨大差异,在冷冻过程中显著减小,且散射强度大幅增加。当温度进一步降至10K时,这条宽谱线变窄并向更高频率移动。这些数据表明,动力学过程以及蛋白质与水的相互作用是造成铁-组氨酸键对四级结构依赖性的因素,从而反映了该键在协同配体结合能量学中的作用。