Jordan T, Eads J C, Spiro T G
Department of Chemistry, Princeton University, New Jersey 08544, USA.
Protein Sci. 1995 Apr;4(4):716-28. doi: 10.1002/pro.5560040411.
Ferricytochrome c can be converted to the partially folded A-state at pH 2.2 in the presence of 1.5 M NaCl. The structure of the A-state has been studied in comparison with the native and unfolded states, using resonance Raman spectroscopy with visible and ultraviolet excitation wavelengths. Spectra obtained with 200 nm excitation show a decrease in amide II intensity consistent with loss of structure for the 50s and 70s helices. The 230-nm spectra contain information on vibrational modes of the single Trp 59 side chain and the four tyrosine side chains (Tyr 48, 67, 74, and 97). The Trp 59 modes indicate that the side chain remains in a hydrophobic environment but loses its tertiary hydrogen bond and is rotationally disordered. The tyrosine modes Y8b and Y9a show disruption of tertiary hydrogen bonding for the Tyr 48, 67, and 74 side chains. The high-wavenumber region of the 406.7-nm resonance Raman spectrum reveals a mixed spin heme iron atom, which arises from axial coordination to His 18 and a water molecule. The low-frequency spectral region reports on heme distortions and indicates a reduced degree of interaction between the heme and the polypeptide chain. A structural model for the A-state is proposed in which a folded protein subdomain, consisting of the heme and the N-terminal, C-terminal, and 60s helices, is stabilized through nonbonding interactions between helices and with the heme.
在1.5 M NaCl存在的情况下,高铁细胞色素c在pH 2.2时可转变为部分折叠的A状态。利用可见和紫外激发波长的共振拉曼光谱,已将A状态的结构与天然状态和未折叠状态进行了比较研究。用200 nm激发获得的光谱显示酰胺II强度降低,这与50s和70s螺旋结构的丧失一致。230 nm光谱包含关于单个色氨酸59侧链和四个酪氨酸侧链(酪氨酸48、67、74和97)振动模式的信息。色氨酸59模式表明侧链仍处于疏水环境中,但失去了其三级氢键且旋转无序。酪氨酸模式Y8b和Y9a显示酪氨酸48、67和74侧链的三级氢键被破坏。406.7 nm共振拉曼光谱的高波数区域揭示了一个混合自旋血红素铁原子,它源于与组氨酸18和一个水分子的轴向配位。低频光谱区域反映了血红素的畸变,并表明血红素与多肽链之间的相互作用程度降低。提出了A状态的结构模型,其中由血红素以及N端、C端和60s螺旋组成的折叠蛋白亚结构域通过螺旋之间以及与血红素的非键相互作用得以稳定。