Polizio F, Bizzarri A R, Cannistraro S, Desideri A
INFM-Dipartimento di Biologia, Università di Roma Tor Vergata, Italy.
Eur Biophys J. 1997;26(4):291-7. doi: 10.1007/s002490050083.
Native and azide reacted Cu, Zn superoxide dismutase in aqueous and mixed water-glycerol solution have been investigated by EPR spectroscopy at low temperature. An accurate computer simulation, based on a well established theoretical model which has been reformulated for rhombic symmetry, has shown that the EPR spectrum of the copper ion in the native protein shows a significant g and A strain in the parallel region. The strain arises from a distribution of the ligand field strengths onto the metal ion and this could be traced back to the existence of a multiplicity of conformational states in the protein molecule. The strain is reduced in the presence of azide which is known to bind directly to the copper atom and to give rise to a more relaxed configuration corresponding to a square pyramidal geometry in which the apical ligand occupies an elongated position. In both samples, addition of glycerol further reduces the strain, indicating that the solvent is directly coupled to the protein matrix, thereby modulating the structural heterogeneity displayed by the protein molecule.
通过低温电子顺磁共振光谱法研究了天然的和叠氮化物反应后的铜锌超氧化物歧化酶在水溶液以及水 - 甘油混合溶液中的情况。基于一个已针对菱形对称性重新制定的成熟理论模型进行的精确计算机模拟表明,天然蛋白质中铜离子的电子顺磁共振光谱在平行区域显示出显著的g值和A值应变。这种应变源于配体场强在金属离子上的分布,这可以追溯到蛋白质分子中多种构象状态的存在。在叠氮化物存在的情况下应变会降低,已知叠氮化物会直接与铜原子结合,并产生对应于四方锥几何构型的更松弛构型,其中顶端配体占据拉长的位置。在两个样品中,添加甘油进一步降低了应变,表明溶剂直接与蛋白质基质耦合,从而调节了蛋白质分子显示出的结构异质性。