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单克隆抗体的生物素化会阻止其激活补体经典途径的能力。

Biotinylation of monoclonal antibodies prevents their ability to activate the classical pathway of complement.

作者信息

Jokiranta T S, Meri S

机构信息

Department of Bacteriology and Immunology, University of Helsinki, Finland.

出版信息

J Immunol. 1993 Aug 15;151(4):2124-31.

PMID:7688394
Abstract

Biotinylation of mAb has become a standard procedure for a variety of applications that exploit the specific high affinity interaction between biotin and avidin. In the present study, we investigated how biotinylation of mAb affects their ability to sensitize target cells to C-dependent lysis in vitro. mAb were biotinylated by cross-linking biotin covalently with an N-succinimidyl ester to the epsilon-amino groups of lysine residues. Human RBC were treated with two rat mAb, either alone or together: one against glycophorin A (YTH89.1), another against CD59 (protectin; YTH53.1), an inhibitor of the membrane attack complex of C. Melanoma cells (G361) were attacked by a mouse mAb (27A) against an O-acetylated GD3 ganglioside. As compared with the nonbiotinylated mAb, the biotinylated forms of all the investigated mAb were much weaker in causing classical C pathway-mediated lysis of the target cells. Biotinylation did not reduce the ability of the mAb to bind to their Ag, nor of the anti-CD59 mAb to neutralize the C lysis-restrictive effect of CD59. In binding assays using 125I-labeled C1q, significantly less C1q bound to the biotinylated anti-glycophorin-A and anti-CD59 mAb than to the nonbiotinylated mAb. These data show that biotinylated antibodies do not activate the classical C pathway because binding of C1q to the antibody Fc-regions is blocked.

摘要

单克隆抗体(mAb)的生物素化已成为一种标准程序,用于多种利用生物素与抗生物素蛋白之间特定高亲和力相互作用的应用。在本研究中,我们调查了mAb的生物素化如何影响其在体外使靶细胞对补体(C)依赖性裂解敏感的能力。通过将生物素与N-琥珀酰亚胺酯共价交联到赖氨酸残基的ε-氨基上,对mAb进行生物素化。用人红细胞分别或同时用两种大鼠mAb处理:一种针对血型糖蛋白A(YTH89.1),另一种针对CD59(保护素;YTH53.1),后者是补体膜攻击复合物的抑制剂。黑色素瘤细胞(G361)用针对O-乙酰化GD3神经节苷脂的小鼠mAb(27A)攻击。与未生物素化的mAb相比,所有研究的mAb的生物素化形式在引起经典补体途径介导的靶细胞裂解方面要弱得多。生物素化并未降低mAb与抗原结合的能力,也未降低抗CD59 mAb中和CD59对补体裂解限制作用的能力。在使用125I标记的C1q的结合试验中,与未生物素化的mAb相比,与生物素化的抗血型糖蛋白A和抗CD59 mAb结合的C1q明显更少。这些数据表明,生物素化抗体不会激活经典补体途径,因为C1q与抗体Fc区域的结合被阻断。

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