Antanaitis B C, Moss T H
Biochim Biophys Acta. 1975 Oct 20;405(2):262-79. doi: 10.1016/0005-2795(75)90093-8.
Extensive EPR studies on high-potential, iron-sulfur protein from Chromatium vinosum indicate that the singular spectrum of this four-iron, non-heme protein consists of a superposition of three distinct signals; namely, two principal signals of equal weight, one reflecting axial and the other rhombic symmetry, and a third nearly isotropic minority component. In addition, magnetic susceptibility experiments on two oxidation states of the protein from 4.2 to approx. 260 degrees K indicate antiferromagnetic exchange coupling between iron atoms. Possible origins of the complex EPR signals are discussed, and a preferred model that is consistent with EPR, magnetic susceptibility, NMR, X-ray, and Mössbauer data is presented.
对来自嗜酒色杆菌的高电位铁硫蛋白进行的广泛电子顺磁共振(EPR)研究表明,这种四铁非血红素蛋白的单一光谱由三个不同信号叠加而成;即两个权重相等的主要信号,一个反映轴向对称,另一个反映菱形对称,以及第三个近各向同性的少数成分。此外,对该蛋白两种氧化态在4.2至约260开尔文温度范围内进行的磁化率实验表明铁原子之间存在反铁磁交换耦合。讨论了复杂EPR信号的可能来源,并提出了一个与EPR、磁化率、核磁共振、X射线和穆斯堡尔数据一致的优选模型。