Nardella F A, Mannik M
J Immunol. 1978 Mar;120(3):739-44.
Nonimmunospecific interactions of IgG and IgG-agarose columns were systematically studied under varying conditions. Nonimmunospecific binding to the columns was primarily due to protein-protein interactions. These nonimmunospecific protein-protein interactions of IgG were enhanced with heat-induced or chemical aggregation of IgG, low pH, low ionic strength (at pH above 4), or low temperature. Conversely, this binding was decreased with proteolytic fragmentation of IgG, high ionic strength (at pH above 4), or temperatures above 4 degrees C. Chemical modification of IgG by acetylation, formalinization, carbamylation, or reaction with 1,2-cyclohexanedione significantly decreased these interactions. These observations suggest that above pH 4, ionic interactions caused the protein-protein binding. Below pH 4, hydrophobic interactions presumably play a major role. These results permit the development of rational methodology for avoiding nonimmunospecific protein-protein interactions in immunologic procedures for detection, isolation, or quantification of rheumatoid factors and other antibodies to IgG.
在不同条件下系统研究了IgG与IgG-琼脂糖柱的非免疫特异性相互作用。与柱的非免疫特异性结合主要归因于蛋白质-蛋白质相互作用。IgG的这些非免疫特异性蛋白质-蛋白质相互作用在IgG热诱导或化学聚集、低pH、低离子强度(pH高于4时)或低温下会增强。相反,随着IgG的蛋白水解片段化、高离子强度(pH高于4时)或温度高于4℃,这种结合会减少。通过乙酰化、福尔马林固定、氨基甲酰化或与1,2-环己二酮反应对IgG进行化学修饰会显著降低这些相互作用。这些观察结果表明,在pH 4以上,离子相互作用导致蛋白质-蛋白质结合。在pH 4以下,疏水相互作用可能起主要作用。这些结果有助于开发合理的方法,以避免在类风湿因子和其他抗IgG抗体的检测、分离或定量的免疫程序中出现非免疫特异性蛋白质-蛋白质相互作用。