Interference of rheumatoid factor activity by aspartame, a dipeptide methyl ester.

P. Ramsland, B. F. Movafagh, M. Reichlin, A. Edmundson
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Abstract

Circulating autoimmune complexes of IgM rheumatoid factors (RF) bound to the Fc portions of normal, polyclonal IgG antibodies are frequently present in humans with rheumatoid arthritis (RA). The sweet tasting methyl ester of L-Asp-L-Phe (aspartame or APM) was found to relieve pain and improve joint mobility in subjects with osteo- and mixed osteo/rheumatoid arthritis [Edmundson, A. B. and Manion, C. V. (1998). Clin. Pharmac. Ther. 63, 580-593]. These clinical observations prompted the testing of the inhibition by APM of the binding interactions of human IgM RFs with IgG Fc regions. The propensity of APM to inhibit IgM RF binding was assessed by competitive enzyme immunoassays with solid-phase human IgG. Ten RA serum samples and three purified monoclonal cryoglobulins, all of which had RF activity, were tested in this system. We found that the presence of APM significantly reduced the binding of IgM RFs. The inhibitory propensity of APM with monoclonal RF cryoglobulins was increased by the addition of CaCl(2) to the binding buffer. Similar inhibition of the binding of RA derived RFs to IgG was observed for Asp-Phe and its amidated derivative, indicating that the methyl ester is not required for APM's interaction with IgM antibodies. A human (Mez) IgM known to bind octameric peptides derived from the Fc portion of a human IgG(1) antibody was tested for binding of dipeptides by the Pepscan method of combinatorial chemistry. The relative binding constants of Asp-Phe and Phe-Asp were ranked among the highest values for 400 possible combinations of the 20 most common amino acids. Possible blocking interactions of APM were explored by computer-assisted docking studies with the model of a complex of an RF Fab with the Fc of a human IgG(4) antibody. Modeling of ternary immune complexes revealed a few key residues, which could act as molecular recognition sites for APM. A structural hypothesis is presented to explain the observed interference with RF reactivity by APM. Extrapolations of the current results suggest that APM may inhibit the binding of IgG in a substantial proportion of IgM RFs. Interference of RF reactivity, especially in RA patients, may alleviate the pain and immobility resulting from chronic inflammation of the joints.
阿斯巴甜二肽甲酯对类风湿因子活性的干扰。
IgM类风湿性因子(RF)与正常多克隆IgG抗体Fc部分结合的循环自身免疫复合物在类风湿关节炎(RA)患者中经常存在。L-Asp-L-Phe(阿斯巴甜或APM)的甜味甲酯被发现可以缓解骨关节炎和混合性骨/类风湿性关节炎患者的疼痛并改善关节活动[Edmundson, a.b.和Manion, c.v.(1998)]。中国。医药。[j].地理学报,1999,18(3):558 -593。这些临床观察提示了APM对人IgM RFs与IgG Fc区结合相互作用的抑制作用的测试。通过与固相人IgG的竞争酶免疫分析来评估APM抑制IgM RF结合的倾向。本系统检测了10份RA血清和3个纯化的单克隆冷球蛋白,均具有RF活性。我们发现APM的存在显著降低了IgM RFs的结合。在结合缓冲液中加入CaCl(2)可增强单克隆RF冷球蛋白对APM的抑制倾向。在RA衍生的RFs与IgG的结合中,Asp-Phe及其修饰衍生物也被观察到类似的抑制作用,这表明APM与IgM抗体的相互作用并不需要甲酯。已知一种人(Mez) IgM能结合源自人IgG(1)抗体Fc部分的八聚体肽,用组合化学的Pepscan方法检测其与二肽的结合。在20种最常见的氨基酸的400种可能组合中,Asp-Phe和ph - asp的相对结合常数排名最高。通过计算机辅助对接研究,利用RF Fab与人IgG(4)抗体Fc的复合物模型,探索了APM可能的阻断相互作用。三元免疫复合物的建模揭示了一些关键残基,这些残基可能作为APM的分子识别位点。提出了一个结构假设来解释观察到的APM对射频反应性的干扰。目前结果的推断表明,APM可能在相当大比例的IgM rf中抑制IgG的结合。干扰射频反应性,特别是在类风湿性关节炎患者中,可以减轻关节慢性炎症引起的疼痛和不活动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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