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首页> 外文期刊>Protein engineering design & selection: PEDS >Domain order of a bispecific diabody dramatically enhances its antitumor activity beyond structural format conversion: The case of the hEx3 diabody
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Domain order of a bispecific diabody dramatically enhances its antitumor activity beyond structural format conversion: The case of the hEx3 diabody

机译:双特异性双抗体的结构域顺序大大增强了其抗肿瘤活性,超越了结构形式转换:hEx3双抗体的情况

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The domains of bispecific diabodies (BsDbs) can be ordered in four different ways; however, the influence of domain order on the cytotoxicity of BsDbs that retarget immune cells against tumor cells had not been addressed. We previously reported the marked antitumor effects of a humanized BsDb that targets epidermal growth factor receptor and CD3 (hEx3-Db). Here, we rearranged the domains of hEx3-Db to examine the influence of domain order on the function of BsDbs. We successfully prepared homogenous dimers of hEx3-Db in all four domain configurations. Interestingly, all three rearranged hEx3s inhibited cancer growth more effectively than did the original hEx3-Db, in which both components were in variable heavy domain (VH)-variable light domain (VL) order (redesignated as hEx3-HL), and the highest effects were observed with hEx3-LH (hEx3-Db with both components in VL-VH order). In addition, hEx3-LH had comparable in vitro growth inhibitory effects to those of the tandem single-chain variable fragment (scFv) format of hEx3-Db (hEx3-tandem scFv (taFv)), which we previously showed to have greater cytotoxicity than does hEx3-HL. Flow cytometry suggested that the enhanced cytotoxicity of hEx3-LH is attributable to structural superiority for cross-linking, similar to that of hEx3-taFv. Furthermore, hEx3-LH inhibited cancer growth in mice more effectively than did hEx3-taFv; this difference may be due to differences in antibody stability. Our results show that merely rearranging the domain order of BsDbs can enhance their effects beyond those with structural format conversion.
机译:双特异性双抗体(BsDbs)的域可以通过四种不同的方式进行排序。但是,尚未解决域顺序对重新靶向免疫细胞针对肿瘤细胞的BsDbs细胞毒性的影响。我们先前曾报道了针对人的表皮生长因子受体和CD3(hEx3-Db)的人源化BsDb的明显抗肿瘤作用。在这里,我们重新排列了hEx3-Db的域,以检查域顺序对BsDbs功能的影响。我们成功地在所有四个结构域配置中制备了hEx3-Db的同质二聚体。有趣的是,所有三个重排的hEx3都比原始的hEx3-Db更有效地抑制了癌症的生长,在原始的hEx3-Db中,两个成分均处于可变重域(VH)-可变轻域(VL)顺序(重新指定为hEx3-HL),并且hEx3-LH(hEx3-Db的两种成分均以VL-VH顺序显示)可观察到效果。此外,hEx3-LH的体外生长抑制作用与hEx3-Db的串联单链可变片段(scFv)形式(hEx3-串联scFv(taFv))相当,我们之前证明了其比细胞毒具有更大的细胞毒性。做hEx3-HL。流式细胞仪表明,与hEx3-taFv类似,hEx3-LH增强的细胞毒性可归因于交联的结构优势。此外,hEx3-LH比hEx3-taFv更有效地抑制了小鼠的癌症生长。这种差异可能是由于抗体稳定性的差异。我们的结果表明,仅重新排列BsDb的域顺序可以增强其效果,而不仅仅是采用结构格式转换的效果。

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