Qian C, Yao Y, Ye K, Wang J, Tang W, Wang Y, Wang W, Lu J, Xie Y, Huang Z
State Key Laboratory of Coordination Chemistry, Nanjing University, Nanjing 210093 National Laboratory of Biomacromolecules, Institute of Biophysics, Academic Sinica, Beijing 100101, P.R. China.
Protein Sci. 2001 Dec;10(12):2451-9. doi: 10.1110/ps.12401.
The solution structure of oxidized bovine microsomal cytochrome b(5) mutant (E48, E56/A, D60/A) has been determined through 1524 meaningful nuclear Overhauser effect constraints together with 190 pseudocontact shift constraints. The final family of 35 conformers has rmsd values with respect to the mean structure of 0.045+/-0.009 nm and 0.088+/-0.011 nm for backbone and heavy atoms, respectively. A characteristic of this mutant is that of having no significant changes in the whole folding and secondary structure compared with the X-ray and solution structures of wild-type cytochrome b(5). The binding of different surface mutants of cytochrome b(5) with cytochrome c shows that electrostatic interactions play an important role in maintaining the stability and specificity of the protein complex formed. The differences in association constants demonstrate the electrostatic contributions of cytochrome b(5) surface negatively charged residues, which were suggested to be involved in complex formation in the Northrup and Salemme models, have cumulative effect on the stability of cyt c-cyt b(5) complex, and the contribution of Glu48 is a little higher than that of Glu44. Moreover, our result suggests that the docking geometry proposed by Northrup, which is involved in the participation of Glu48, Glu56, Asp60, and heme propionate of cytochrome b(5), do occur in the association between cytochrome b(5) and cytochrome c.
已通过1524个有意义的核Overhauser效应约束以及190个赝接触位移约束确定了氧化型牛微粒体细胞色素b(5)突变体(E48、E56/A、D60/A)的溶液结构。最终的35个构象体家族相对于平均结构的均方根偏差值,主链原子和重原子分别为0.045±0.009 nm和0.088±0.011 nm。该突变体的一个特点是,与野生型细胞色素b(5)的X射线结构和溶液结构相比,其整体折叠和二级结构没有显著变化。细胞色素b(5)的不同表面突变体与细胞色素c的结合表明,静电相互作用在维持所形成的蛋白质复合物的稳定性和特异性方面起着重要作用。缔合常数的差异表明,细胞色素b(5)表面带负电荷残基的静电贡献对细胞色素c-细胞色素b(5)复合物的稳定性有累积效应,并且Glu48的贡献略高于Glu44。此外,我们的结果表明,Northrup提出的对接几何结构,即涉及细胞色素b(5)的Glu48、Glu56、Asp60和血红素丙酸酯的参与,确实发生在细胞色素b(5)与细胞色素c的缔合过程中。