Acharya A S, Manjula B N, Murthy G S, Vithayathil P J
Int J Pept Protein Res. 1977;9(3):213-9. doi: 10.1111/j.1399-3011.1977.tb03483.x.
The effect of modification of carboxyl groups of Ribonuclease-Aa on the enzymatic activity and the antigenic structure of the protein has been studied. Modification of four of the eleven free carboxyl groups of the protein by esterification in anhydrous methanol/0.1 M hydrochloric acid resulted in nearly 80% loss in enzymatic activity but had very little influence on the antigenic structure of the protein. Further increases in the modification of the carboxyl groups caused a progressive loss in immunological activity, and the fully methylated RNase A exhibited nearly 30% immunological activity. Concomitant with this change in the antigenic structure of the protein, the ability of the molecule to complement with RNase-S-protein increased, clearly indicating the unfolding of the peptide "tail" from the residues for orthobenzoquinone reaction and the loss in immunological activity of the more etion of these derivatives as compared with the compact native conformation. The fact that even the fully methylated RNase-A retains nearly 30% of its immunological activity suggested that the modified protein contained antibody recognizable residual native structure, which presumably accommodates some antigenic determinants.
研究了核糖核酸酶 - Aa羧基修饰对该蛋白质酶活性和抗原结构的影响。在无水甲醇/0.1 M盐酸中通过酯化修饰该蛋白质11个游离羧基中的4个,导致酶活性丧失近80%,但对蛋白质的抗原结构影响很小。羧基修饰程度的进一步增加导致免疫活性逐渐丧失,完全甲基化的核糖核酸酶A表现出近30%的免疫活性。伴随着蛋白质抗原结构的这种变化,该分子与核糖核酸酶 - S - 蛋白互补的能力增强,这清楚地表明肽“尾”从用于邻苯醌反应的残基处展开,并且与紧密的天然构象相比,这些衍生物的更多部分丧失了免疫活性。即使完全甲基化的核糖核酸酶 - A仍保留近30%的免疫活性这一事实表明,修饰后的蛋白质含有可被抗体识别的残留天然结构,该结构可能容纳一些抗原决定簇。