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在有和没有保护半抗原存在的情况下,N-溴代琥珀酰亚胺对抗二硝基苯酚(anti-DNP)抗体和抗二硝基苯酚-对氨基苯甲酰谷氨酸(anti-DNP-p-aminobenzoylglutamate)抗体的氧化作用

N-bromosuccinimide oxidation of anti-DNP and anti-DNP-p-aminobenzoylglutamate antibodies in the presence and absence of protecting hapten.

作者信息

Chism G E, Woehler M E, Lovins R E

出版信息

Immunology. 1975 Dec;29(6):1153-60.

Abstract

The reagent N-bromosuccinimide (NBS) has been employed to investigate the role of tryptophan in hapten binding in anti-DNP (H-1) and anti-DNP-p-aminobenzoylglutamate (DNP-ABG) (I-13) antibodies. In 0-1 M acetate (pH 4-0) buffer fifteen and sixteen moles of tryptophan in the anti-DNP and anti-DNP-ABG antibodies respectively were reactive toward NBS. The hapten DNP-lysine protected 1 tryptophan in antibody H-1 and three tryptophans in antibody I-13 from NBS modification. DNP-ABG protected three tryptophans in antibody H-1 and five tryptophans in antibody I-13 from NBS oxidation. NBS treatment of the unprotected antibodies resulted in a significant, but not total inhibition of hapten binding, while in the hapten protected antibody preparation no significant loss of binding occurred due to NBS treatment. The binding activity of the anti-DNP antibody H-1 was more sensitive to NBS oxidation than was the anti-DNAP-ABG antibody I-13. This was apparently due to the larger number of oxidizable tryptophans in I-13 making it less sensitive to overall tryptophan modification. The results of these investigations are discussed in terms of the antibody combining site model proposed by Haselkorn et al. (Haselkorn, Friedman, Givol and Pecht, 1974) derived from kinetic mapping of the antibody-combining site by chemical relaxation spectroscopy.

摘要

试剂N-溴代琥珀酰亚胺(NBS)已被用于研究色氨酸在抗DNP(H-1)和抗DNP-对氨基苯甲酰谷氨酸(DNP-ABG)(I-13)抗体中半抗原结合的作用。在0.1M醋酸盐(pH 4.0)缓冲液中,抗DNP和抗DNP-ABG抗体中分别有15和16摩尔的色氨酸与NBS发生反应。半抗原DNP-赖氨酸保护抗体H-1中的1个色氨酸和抗体I-13中的3个色氨酸不被NBS修饰。DNP-ABG保护抗体H-1中的3个色氨酸和抗体I-13中的5个色氨酸不被NBS氧化。用NBS处理未受保护的抗体导致半抗原结合显著但不完全抑制,而在半抗原保护的抗体制剂中,由于NBS处理未发生显著的结合丧失。抗DNP抗体H-1的结合活性比抗DNP-ABG抗体I-13对NBS氧化更敏感。这显然是由于I-13中可氧化色氨酸数量较多,使其对整体色氨酸修饰不太敏感。根据Haselkorn等人(Haselkorn、Friedman、Givol和Pecht,(1974))提出的抗体结合位点模型讨论了这些研究结果,该模型源自通过化学弛豫光谱对抗体结合位点进行的动力学图谱分析。

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