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In silico Driven Redesign of a Clinically Relevant Antibody for the Treatment of GD2 Positive Tumors

机译:在计算机上驱动的临床相关抗体治疗GD2阳性肿瘤的重新设计。

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摘要

Ganglioside GD2 is a cell surface glycolipid that is highly expressed on cancer cells of neuroectodermal origin, including neuroblastoma, retinoblastoma, melanoma, sarcomas, brain tumors and small cell lung cancer. Monoclonal antibodies (MoAb) that target GD2 have shown clinical efficacy in the treatment of GD2 expressing tumors, and are expected to be the new standard of care for the treatment of pediatric neuroblastoma. In this study, the crystal structure of anti-GD2 murine MoAb 3F8 was solved to 1.65 Å resolution and used as a template for molecular docking simulations of its antigen, the penta-saccharide head group of GD2. Molecular docking revealed a binding motif composed of 12 key interacting amino acid side-chains, involving an extensive network of interactions involving main-chain and side-chain hydrogen bonding, two Pi – CH interactions, and an important charged interaction between Arg95 of the H3 loop with the penultimate sialic acid residue of GD2. Based on in silico scanning mutagenesis of the 12 interacting amino acids from the docked 3F8:GD2 model, a single point mutation (Heavy Chain: Gly54Ile) was engineered into a humanized 3F8 (hu3F8) MoAb and found to have a 6–9 fold enhancement in antibody-dependent cell-mediated cytotoxicity of neuroblastoma and melanoma cell lines. With enhanced tumor-killing properties, the re-engineered hu3F8 has the potential be a more effective antibody for the treatment of GD2-positive tumors.
机译:神经节苷脂GD2是一种在神经外胚层起源的癌细胞(包括神经母细胞瘤,视网膜母细胞瘤,黑色素瘤,肉瘤,脑瘤和小细胞肺癌)上高度表达的细胞表面糖脂。靶向GD2的单克隆抗体(MoAb)在治疗GD2表达的肿瘤中已显示出临床疗效,并有望成为治疗小儿神经母细胞瘤的新护理标准。在这项研究中,抗GD2鼠MoAb 3F8的晶体结构解析为1.65Å分辨率,并用作其抗原(GD2的五糖首基)的分子对接模拟的模板。分子对接揭示了由12个主要相互作用的氨基酸侧链组成的结合基序,涉及广泛的相互作用网络,涉及主链和侧链氢键键合,两个Pi-CH相互作用以及H3的Arg95之间的重要带电相互作用用GD2的倒数第二个唾液酸残基进行循环。基于对接的3F8:GD2模型中12种相互作用氨基酸的计算机扫描诱变,将单点突变(重链:Gly54Ile)改造为人源化3F8(hu3F8)MoAb,发现增强了6-9倍抗体依赖性细胞介导的神经母细胞瘤和黑色素瘤细胞系的细胞毒性。经过重新设计的hu3F8具有增强的肿瘤杀伤特性,有望成为治疗GD2阳性肿瘤的更有效抗体。

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