Rusckowski M, Paucker M, Dalton B, Ogburn C A
J Interferon Res. 1982;2(2):177-85. doi: 10.1089/jir.1982.2.177.
Mouse interferon (MuIFN) preparations containing both the alpha and beta species were treated with chemical modifying reagents specific for lysine, cysteine and tryptophan residues. The purpose was to ascertain whether reagents which modify specific amino acid residues distinguished MuIFN-alpha from MuIFN-beta, and if biologic properties could be correlated with specific amino acid residues. MuIFN species were characterized by their activity on homologous and heterologous cells and by antibody neutralization. Modification of lysine residues with increasing concentrations of fluorescamine resulted in a concomitant loss of biologic and antigenic activities of both MuIFN species. Modification of cysteine residues with 5,5'-dithio-bis (2-nitrobenzoic acid) showed an enhancement of antiviral activity of MuIFN-alpha but a gradual decrease in all activities of MuIFN-beta. Modification of tryptophan residues with 2-methoxy-5-nitrobenzyl bromide enhanced somewhat MuIFN-alpha activity, but resulted in the loss of MuIFN-beta activity. These results show that amino-modifying reagents rendered both major species of MuIFN inactive; however, they can be distinguished by reagents which affect cysteine and tryptophan residues. The fact that biologic activity is accompanied by the loss of antigenicity implies that the biologic and antigenic sites may be the same or closely associated. Chemical modification of interferons may provide a useful approach for relating the properties of interferons to their primary structure.
含有α和β两种类型的小鼠干扰素(MuIFN)制剂,用对赖氨酸、半胱氨酸和色氨酸残基具有特异性的化学修饰试剂进行处理。目的是确定修饰特定氨基酸残基的试剂能否区分MuIFN-α和MuIFN-β,以及生物学特性是否与特定氨基酸残基相关。通过其对同源和异源细胞的活性以及抗体中和作用来表征MuIFN的类型。用浓度不断增加的荧光胺修饰赖氨酸残基,导致两种MuIFN类型的生物学活性和抗原活性同时丧失。用5,5'-二硫代双(2-硝基苯甲酸)修饰半胱氨酸残基,显示MuIFN-α的抗病毒活性增强,但MuIFN-β的所有活性逐渐降低。用2-甲氧基-5-硝基苄基溴修饰色氨酸残基,使MuIFN-α的活性略有增强,但导致MuIFN-β的活性丧失。这些结果表明,氨基修饰试剂使MuIFN的两种主要类型均失活;然而,它们可以通过影响半胱氨酸和色氨酸残基的试剂来区分。生物学活性伴随着抗原性丧失这一事实意味着生物学位点和抗原位点可能相同或紧密相关。干扰素的化学修饰可能为将干扰素的特性与其一级结构联系起来提供一种有用的方法。