Tishchenko V M
Biofizika. 2012 May-Jun;57(3):395-7.
The kinetics of hydrogen exchange of pike a-parvalbumin was investigated using the method of infrared spectroscopy (sensitive to the amide hydrogen atoms in the peptide) and radioisotope method (sensitive to all labile hydrogen atoms). Ultraslow exchangeable hydrogen atoms were found to be substantially less in the first case than in the second one. Taking into account that the internal cavities in the parvalbumin are formed by hydrophobic amino acid residues, devoid of labile hydrogen atoms, it is possible to make the most appropriate assumption, namely, these cavities contain water molecules, hydrogen atoms of which are ultraslow exchangeable.
使用红外光谱法(对肽中的酰胺氢原子敏感)和放射性同位素法(对所有不稳定氢原子敏感)研究了梭子鱼α-小清蛋白的氢交换动力学。结果发现,在第一种情况下,超慢交换氢原子的数量比第二种情况少得多。考虑到小清蛋白内部的腔是由不含不稳定氢原子的疏水氨基酸残基形成的,因此可以做出最合适的假设,即这些腔中含有水分子,其氢原子是超慢可交换的。