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Human IgG1 Cγ1 Domain Is Crucial for the Bioactivity of the Engineered Anti-CD20 Antibodies

机译:人IgG1Cγ1域对于工程化的抗CD20抗体的生物活性至关重要

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In this study, we discussed the necessity of human lgG1 Cγ1 domain for recombinant antibody using computeraided homology modeling method and experimental studies. The heavy (VH) and light (VL) chain variable regions of 1-28, a murine IgM-type anti-CD20 mAb, were ligated by linker peptide (Gly4Ser)3 to form the single-chain Fv fragment (scFv). Then, the engineered antibody (LH1-3) was generated by fusing scFv with the entire IgG1 heavy constant regions. The 3-D structure of LH1-3 was modeled using computer-aided homology modeling method and the binding activity of LH1-3 was evaluated theoretically. Compared to the 3-D structure of the Fv fragment of the parent antibody, the conformation of the active pocket of LH1-3 was remained because of the rigid support of Cγ1.Further experimental results of flow cytometry showed that the engineered anti-CD20 antibody possessed specifically binding activity to CD20-expressing target cells. The anti-CD20 antibody fragments could also mediate complement-dependent cytotoxicity (CDC) of human B-lymphoid cell lines. Our study highlights some interests and advantages of a methodology based on the homology modeling and analysis of molecular structural properties.
机译:在这项研究中,我们讨论了使用计算机辅助同源性建模方法和实验研究重组人IgG1Cγ1结构域的必要性。将1-28的鼠类IgM型抗CD20 mAb重链(VH)和轻链(VL)可变区与接头肽(Gly4Ser)3连接,形成单链Fv片段(scFv)。然后,通过将scFv与整个IgG1重恒定区融合来生成工程抗体(LH1-3)。使用计算机辅助同源性建模方法对LH1-3的3-D结构进行建模,并从理论上评估LH1-3的结合活性。与亲本抗体Fv片段的3-D结构相比,由于Cγ1的刚性支持,保留了LH1-3活性口袋的构象。流式细胞术的进一步实验结果表明,工程化的抗CD20抗体具有与表达CD20的靶细胞特异性结合的活性。抗CD20抗体片段也可以介导人B淋巴样细胞系的补体依赖性细胞毒性(CDC)。我们的研究突出了基于同源性建模和分子结构特性分析的方法学的一些利益和优势。

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