Yue K T, Lee M, Zheng J, Callender R
Physics Department, Emory University, Atlanta, GA 30322.
Biochim Biophys Acta. 1991 Jun 24;1078(2):296-302. doi: 10.1016/0167-4838(91)90572-h.
Sensitive Raman difference spectroscopy was used to monitor the protonation and deprotonation of histidine residues in apo-transferrin. We have shown previously that the behavior of small molecules and/or small molecular groups bound to proteins or other large macromolecules can be studied by Raman difference spectroscopy (Yue, K.T. et al. (1989) J. Raman Spectrosc. 20, 541-545). Using this method, we have measured the Raman difference spectra of human transferrin at different pH values with respect to pH 8.9, titrating its various histidine residues. About 12 +/- 2 of the 19 residues were titrated. The pH difference spectrum of transferrin obtained is very similar to that of histidine in solution, but with clear differences in the 1200-1400 cm-1 region. A titration curve with pKa of 6.08 +/- 0.01 fit the data of histidine in solution and a value of 6.56 +/- 0.02 was found for the average value of the 12 histidine residues inside transferrin. The technique has enough sensitivity at present to monitor a single histidine residue in a 130 kDa molecule and to determine the titration curve of one residue in a 40 kDa protein.
采用灵敏的拉曼差分光谱法监测脱铁转铁蛋白中组氨酸残基的质子化和去质子化过程。我们之前已经表明,结合在蛋白质或其他大分子上的小分子和/或小分子基团的行为可以通过拉曼差分光谱法进行研究(Yue, K.T.等人(1989年)《拉曼光谱学杂志》20卷,541 - 545页)。利用这种方法,我们测量了人转铁蛋白在不同pH值(相对于pH 8.9)下的拉曼差分光谱,对其各个组氨酸残基进行滴定。19个残基中约有12 ± 2个被滴定。所得到的转铁蛋白的pH差分光谱与溶液中组氨酸的光谱非常相似,但在1200 - 1400 cm⁻¹区域存在明显差异。溶液中组氨酸数据拟合得到的滴定曲线pKa为6.08 ± 0.01,转铁蛋白内部12个组氨酸残基的平均值为6.56 ± 0.02。目前该技术具有足够的灵敏度来监测130 kDa分子中的单个组氨酸残基,并确定40 kDa蛋白质中一个残基的滴定曲线。