Yao Yong, Qian Chengmin, Ye Keqong, Wang Jinfeng, Bai Zhipin, Tang Wenxia
State Key Laboratory of Coordination Chemistry, Nanjing University, Nanjing 210093, P.R. China.
J Biol Inorg Chem. 2002 Apr;7(4-5):539-47. doi: 10.1007/s00775-001-0334-y. Epub 2002 Jan 31.
The solution structure of cyanoferricytochrome c has been determined using NMR spectroscopy. As a result of including additional constraints derived from pseudocontact shifts, a high-resolution NMR structure was obtained with high accuracy. In order to study the conformational transition between the native protein and its ligand adducts, the present structure was compared with the solution structures of the wild-type cytochrome c and the imidazole-cytochrome c complex. Like the solution structure of imidazole-cytochrome c, the heme crevice is widened by the swinging out of residues 77-85 and a noticeable shift of the 50s helix. However, unlike imidazole, cyanide exerts less significant perturbation on the conformation of the heme cavity, which is revealed by a more compact residue package in the distal pocket. Furthermore, comparison of the solution structure of CN-iso-1Met80Ala cytochrome c with the structure of cyanoferricytochrome c indicated that the binding of cyanide has a different impact on the distal cavity conformation in the two proteins. In addition, the magnetic properties of the present system are discussed and a comprehensive study of the electronic structure of ligand-cytochrome c complexes and the native protein is also described. Electronic supplementary material to this paper can be obtained by using the Springer Link server located at http://dx.doi.org/10.1007/s00775-001-0334-y.
已使用核磁共振光谱法确定了氰化高铁细胞色素c的溶液结构。由于纳入了源自赝接触位移的额外限制条件,从而高精度地获得了高分辨率的核磁共振结构。为了研究天然蛋白质与其配体加合物之间的构象转变,将当前结构与野生型细胞色素c和咪唑 - 细胞色素c复合物的溶液结构进行了比较。与咪唑 - 细胞色素c的溶液结构一样,血红素裂隙因77 - 85位残基的摆出和50s螺旋的明显位移而变宽。然而,与咪唑不同,氰化物对血红素腔构象的扰动较小,这在远端口袋中更紧密的残基堆积中得以体现。此外,将CN - iso - 1Met80Ala细胞色素c的溶液结构与氰化高铁细胞色素c的结构进行比较表明,氰化物的结合对这两种蛋白质的远端腔构象有不同影响。此外,还讨论了当前系统的磁性,并描述了对配体 - 细胞色素c复合物和天然蛋白质电子结构的全面研究。本文的电子补充材料可通过位于http://dx.doi.org/10.1007/s00775-001-0334-y的Springer Link服务器获取。