Bruun Susanne W, Holm Jan, Hansen Steen Ingemann, Jacobsen Susanne
Biochemistry and Nutrition Group, BioCentrum-DTU, Technical University of Denmark, Kgs. Lyngby, Denmark.
Appl Spectrosc. 2006 Jul;60(7):737-46. doi: 10.1366/000370206777887099.
Fourier transform infrared (FT-IR) and near-infrared (NIR) spectroscopy have been applied to detect structural alterations in folate binding protein (FBP) induced by ligation in different buffer types. The amide I region pointed to a beta-sheet to alpha-helix transition upon ligation in acetate and phosphate buffers, and the formation of intermolecular beta-sheet was indicated at pH 5.0, in agreement with a dimerization of FBP taking place at this pH. The ligand-induced changes in the 2100-2300 nm NIR region were significant for FBP in acetate and phosphate buffers of pH 5.0, and the variations were interpreted as secondary structure changes, based on previous assignments of secondary structures to the combination bands in the NIR region. In the case of acetate buffer, variations in the amide combination bands agreed with the amide I analysis, but for the other buffer types some discrepancies were found and explained by side-chain contributions to the NIR, which could reflect the tertiary and quaternary structure differences. NIR spectra of FBP at pH 7.4 and 5.0 revealed contradictory effects on the side chains, reflecting different polymerization events at the two pH values, whereas the amide I region indicated similar changes at the two pH values. Therefore, we suggest that FT-IR and NIR spectroscopy may complement each other, such that the two techniques in combination may give information on all three types of protein conformational changes. While the secondary structure changes are revealed by FT-IR, the tertiary and quaternary structure changes are reflected in the NIR spectra, although the general influence of the latter changes on the NIR spectra remains to be confirmed.
傅里叶变换红外(FT-IR)和近红外(NIR)光谱已被用于检测在不同缓冲液类型中连接作用诱导的叶酸结合蛋白(FBP)的结构变化。酰胺I区域表明,在乙酸盐和磷酸盐缓冲液中连接后,FBP会从β-折叠向α-螺旋转变,并且在pH 5.0时表明形成了分子间β-折叠,这与FBP在该pH下发生二聚化一致。在pH 5.0的乙酸盐和磷酸盐缓冲液中,配体诱导的FBP在2100 - 2300 nm近红外区域的变化很显著,基于之前对近红外区域组合带二级结构的归属,这些变化被解释为二级结构的改变。在乙酸盐缓冲液的情况下,酰胺组合带的变化与酰胺I分析结果一致,但对于其他缓冲液类型,发现了一些差异,并通过侧链对近红外的贡献来解释,这可能反映了三级和四级结构的差异。FBP在pH 7.4和5.0时的近红外光谱显示了对侧链的矛盾影响,反映了在这两个pH值下不同的聚合事件,而酰胺I区域在这两个pH值下显示了相似的变化。因此,我们认为FT-IR和NIR光谱可能会相互补充,这样两种技术结合起来可能会提供关于所有三种类型蛋白质构象变化的信息。虽然FT-IR揭示了二级结构的变化,但三级和四级结构的变化反映在近红外光谱中,尽管后者的变化对近红外光谱的总体影响仍有待证实。