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首页> 外文期刊>Biochemical and Biophysical Research Communications >Impact of antibody subclass and disulfide isoform differences on the biological activity of CD200R and beta klotho agonist antibodies
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Impact of antibody subclass and disulfide isoform differences on the biological activity of CD200R and beta klotho agonist antibodies

机译:抗体亚类和二硫化物同种型对CD200R和βKlotho激动剂抗体的生物活性的影响

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Agonism of cell surface receptors by monoclonal antibodies is dependent not only on its ability to bind the target, but also to deliver a biological signal through receptors to the cell. Immunoglobulin G2 antibodies (IgG2s) are made up of a mixture of distinct isoforms (IgG2-A, -B and A/B), which differ by the disulfide connectivity at the hinge region. When evaluating panels of agonistic antibodies against CD200 receptor (CD200R) or beta klotho receptor ((beta klotho), we noticed striking activity differences of IgG1 or IgG2 antibodies with the same variable domains. For the CD200R antibody, the IgG2 antibody demonstrated higher activity than the IgG1 or IgG4 antibody. More significantly, for beta klotho, agonist antibodies with higher biological activity as either IgG2 or IgG1 were identified. In both cases, ion exchange chromatography was able to isolate the bioactivity to the IgG2-B isoform from the IgG2 parental mixture. The subclass-related increase in agonist activity was not correlated with antibody aggregation or binding affinity, but was driven by enhanced avidity for the CD200R antibody. These results add to the growing body of evidence that show that conformational differences in the antibody hinge region can have a dramatic impact on the antibody activity and must be considered when screening and engineering therapeutic antibody candidates. The results also demonstrate that the IgG1 (IgG2-A like) or the IgG2-B form may provide the most active form of agonist antibodies for different antibodies and targets. (C) 2017 Elsevier Inc. All rights reserved.
机译:单克隆抗体的细胞表面受体的激动主义不仅取决于其结合靶的能力,还取决于其通过对细胞的受体递送生物学信号。免疫球蛋白G2抗体(IgG2s)由不同同种型(IgG2-A,-B和A / B)的混合物组成,其在铰链区的二硫键差异不同。当评估针对CD200受体(CD200R)或βklotho受体的激动抗体面板((βklotho)时,我们注意到IgG1或IgG2抗体的醒目活性差异,具有相同的可变结构域。对于CD200R抗体,IgG2抗体表现出更高的活性IgG1或IgG4抗体。对于βklotho,对于βklotho,鉴定具有较高生物活性的激动剂抗体作为IgG2或IgG1的抗体。在这两种情况下,离子交换色谱法能够将生物活性与IgG2父母的IgG2-B同种型分离出来混合物。与抗体聚集或结合亲和力不相关的亚类相关的增强,但是通过增强CD200R抗体的可亲密的驱动。这些结果增加了越来越多的证据,表明抗体铰链区域的构象差异可以对抗体活性产生显着影响,并且在筛选和工程治疗中时必须考虑Ntibody候选人。结果还证明IgG1(IgG2-A类似)或IgG2-B形式可提供用于不同抗体和靶标的最活性的激动剂抗体形式。 (c)2017年Elsevier Inc.保留所有权利。

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