Engineering multiple-domain forms of the therapeutic antibody CAMPATH-1H: effects on complement lysis.

Therapeutic immunology Pub Date : 1994-10-01
J Greenwood, S D Gorman, E G Routledge, I S Lloyd, H Waldmann
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Abstract

Antibody-mediated lysis of cells involves a complex interaction between the cell, the target antigen, the antibody and host effector mechanisms. One such mechanism, complement-mediated cell lysis, requires the interaction of C1q with the antibody heavy chain constant regions, and in particular the CH2 domain. Here we investigate the potential benefit of multiple-domain forms of the therapeutic monoclonal antibody CAMPATH-1H. This antibody is directed against the CDw52 antigen expressed by human lymphocytes and has proven lytic abilities both in vitro and in vivo. Using target cells with either high or low antigen density, engineered antibodies that contained additional domains in tandem (CH2, hinge-CH2 or Fc intramolecular repeats) showed no improvement in complement-mediated lysis when compared with controls. However, a homodimeric form of the antibody that was engineered by mutation of a serine residue to cysteine near the carboxy-terminal of the CH3 domain, exhibited markedly improved lysis using target cells expressing antigen at low density. Interestingly, no improvement was seen using cells expressing antigen at high density. These results suggest that dimeric forms of antibodies could be useful for converting cells with low density antigens into useful targets for therapy.

工程治疗性抗体campaign - 1h的多结构域形式:对补体裂解的影响。
抗体介导的细胞裂解涉及细胞、靶抗原、抗体和宿主效应机制之间复杂的相互作用。其中一种机制,补体介导的细胞裂解,需要C1q与抗体重链恒定区,特别是CH2结构域的相互作用。在这里,我们研究了治疗性单克隆抗体campaign - 1h的多结构域形式的潜在益处。该抗体针对人淋巴细胞表达的CDw52抗原,在体内和体外均有裂解能力。使用具有高或低抗原密度的靶细胞,与对照相比,含有串联附加结构域(CH2,铰链-CH2或Fc分子内重复序列)的工程抗体在补体介导的裂解方面没有改善。然而,在低密度表达抗原的靶细胞中,通过将靠近CH3结构域羧基端的丝氨酸残基突变为半胱氨酸而形成的同二聚体形式的抗体表现出明显改善的裂解效果。有趣的是,在高密度表达抗原的细胞中没有发现任何改善。这些结果表明,二聚体形式的抗体可能有助于将具有低密度抗原的细胞转化为有用的治疗靶点。
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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