Institute of Immunology, Medical Faculty Carl Gustav Carus, Technical University Dresden, Fetscherstr. 74, 01307 Dresden, Germany.
Mol Immunol. 2011 Dec;49(3):474-82. doi: 10.1016/j.molimm.2011.09.019. Epub 2011 Oct 19.
CD33 is an attractive immunotarget on the surface of tumor cells from patients with acute myeloid leukemia (AML). In a first attempt for immunotargeting of AML blasts we constructed two bispecific antibodies in the single chain bispecific diabody (scBsDb) format by fusing the variable domains of monoclonal antibodies directed against CD3 and CD33. Unfortunately, protein expression of both scBsDbs resulted in varying mixtures of fragmented and full length proteins. As the non-functional fragments competed with the functional full length antibodies we tried to understand the reason for the fragmentation. We found that the anti-CD3 and anti-CD33 antibody genes show striking sequence homologies: during B cell development the same V(h) J558 heavy and V(l) kk4 light chain genes were selected. Moreover, the closely related D genes DSP2 (9 and 11) were combined with the same JH4 gene. And finally, during VJ recombination of the light chain the same JK5 element was selected. These homologies between the two monoclonal antibodies were the reason for recombinations in the cell lines generated for expression of the scBsDbs. Finally, we solved this problem by (i) rearranging the order of the heavy and light chains of the anti-CD3 and anti-CD33 domains, and (ii) a replacement of one of the commonly used glycine serine linkers with a novel linker domain. The resulting bispecific antibody in a single chain bispecific tandem format (scBsTaFv) was stable and capable of redirecting T cells to CD33-positive tumor cells including AML blasts of patients.
CD33 是急性髓系白血病 (AML) 患者肿瘤细胞表面的一个有吸引力的免疫靶点。在首次尝试免疫靶向 AML blasts 时,我们通过融合针对 CD3 和 CD33 的单克隆抗体的可变结构域,构建了两种在单链双特异性二抗体 (scBsDb) 形式中的双特异性抗体。不幸的是,两种 scBsDbs 的蛋白表达都导致了碎片化和全长蛋白的混合。由于非功能片段与功能全长抗体竞争,我们试图了解碎片化的原因。我们发现抗 CD3 和抗 CD33 抗体基因显示出惊人的序列同源性:在 B 细胞发育过程中,相同的 V(h) J558 重链和 V(l) kk4 轻链基因被选择。此外,密切相关的 D 基因 DSP2(9 和 11)与相同的 JH4 基因结合。最后,在轻链 VJ 重组过程中,相同的 JK5 元件被选择。这两种单克隆抗体之间的同源性是 scBsDbs 表达细胞系中发生重组的原因。最后,我们通过 (i) 重排抗 CD3 和抗 CD33 结构域的重链和轻链的顺序,和 (ii) 用一种新的连接子结构域替代常用的甘氨酸丝氨酸接头之一,解决了这个问题。由此产生的在单链双特异性串联形式 (scBsTaFv) 中的双特异性抗体是稳定的,并能够将 T 细胞重新定向到 CD33 阳性肿瘤细胞,包括患者的 AMLblasts。