Hsu I-Jui, Shiu Ying-Jen, Jeng U-Ser, Chen Tung-Ho, Huang Yu-Shan, Lai Ying-Huang, Tsai Ling-Na, Jang Ling-Yun, Lee Jyh-Fu, Lin Li-Jiaun, Lin Sheng-Hsien, Wang Yu
Department of Chemistry, National Taiwan University, Taipei 106, Taiwan.
J Phys Chem A. 2007 Sep 27;111(38):9286-90. doi: 10.1021/jp073031q. Epub 2007 Aug 14.
The local and global structural changes of cytochrome c induced by urea in aqueous solution have been studied using X-ray absorption spectroscopy (XAS) and small-angle X-ray scattering (SAXS). According to the XAS result, both the native (folded) protein and the unfolded protein exhibit the same preedge features taken at Fe K-edge, indicating that the Fe(III) in the heme group of the protein maintains a six-coordinated local structure in both the folded and unfolded states. Furthermore, the discernible differences in the X-ray absorption near-edge structure (XANES) of these two states are attributed to a possible spin transition of the Fe(III) from a low-spin state to a high-spin state during the unfolding process. The perseverance of six-coordination and the spin transition of the iron are reconciled by a proposed ligand exchange, with urea and water molecules replacing the methionine-80 and histidine-18 axial ligands, respectively. The SAXS result reveals a significant morphology change of cytochrome c from a globular shape of a radius of gyration R(g) = 12.8 A of the native protein to an elongated ellipsoid shape of R(g) = 29.7 A for the unfolded protein in the presence of concentrated urea. The extended X-ray absorption fine structure (EXAFS) data unveil the coordination geometries of Fe(III) in both the folded and unfolded state of cytochrome c. An initial spin transition of Fe(III) followed by an axial ligand exchange, accompanied by the change in the global envelope, is proposed for what happened in the protein unfolding process of cytochrome c.
利用X射线吸收光谱(XAS)和小角X射线散射(SAXS)研究了尿素在水溶液中诱导的细胞色素c的局部和整体结构变化。根据XAS结果,天然(折叠)蛋白和未折叠蛋白在Fe K边处具有相同的前边缘特征,这表明蛋白血红素基团中的Fe(III)在折叠和未折叠状态下均保持六配位的局部结构。此外,这两种状态的X射线吸收近边结构(XANES)中可辨别的差异归因于Fe(III)在展开过程中可能从低自旋态转变为高自旋态。通过提出的配体交换来解释六配位的维持和铁的自旋转变,其中尿素和水分子分别取代了甲硫氨酸-80和组氨酸-18轴向配体。SAXS结果显示,在浓尿素存在下,细胞色素c的形态发生了显著变化,从天然蛋白回转半径R(g)=12.8 Å的球状变为未折叠蛋白R(g)=29.7 Å的细长椭球状。扩展X射线吸收精细结构(EXAFS)数据揭示了细胞色素c折叠和未折叠状态下Fe(III)的配位几何结构。针对细胞色素c蛋白展开过程中发生的情况,提出了Fe(III)先发生自旋转变,随后进行轴向配体交换,并伴随着整体包络变化的观点。