首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >A general method for greatly improving the affinity of antibodies by using combinatorial libraries
【24h】

A general method for greatly improving the affinity of antibodies by using combinatorial libraries

机译:通过使用组合文库大大提高抗体亲和力的一般方法

获取原文
获取原文并翻译 | 示例
       

摘要

Look-through mutagenesis (LTM) is a multidimensional mutagenesis method that simultaneously assesses and optimizes combinatorial mutations of selected amino acids. The process focuses on a precise distribution within one or more complementarity determining region (CDR) domains and explores the synergistic contribution of amino acid side-chain chemistry. LTM was applied to an anti-TNF-alpha antibody, D2E7, which is a challenging test case, because D2E7 was highly optimized (K-d = 1 nM) by others. We selected and incorporated nine amino acids, representative of the major chemical functionalities, individually at every position in each CDR and across all six CDRs (57 aa). Synthetic oligonucleotides, each introducing one amino acid mutation throughout the six CDRs, were pooled to generate segregated libraries containing single mutations in one, two, and/or three CDRs for each V-H and V-L domain. Corresponding antibody libraries were displayed on the cell surface of yeast. After positive binding selection, 38 substitutions in 21 CDR positions were identified that resulted in higher affinity binding to TNF-alpha. These beneficial mutations in both V-H and V-L were represented in two combinatorial beneficial mutagenesis libraries and selected by FACS to produce a convergence of variants that exhibit between 500- and 870-fold higher affinities. Importantly, these enhanced affinities translate to a 15- to 30-fold improvement in in vitro TNF-alpha neutralization in an L929 bioassay. Thus,this LTM/combinatorial beneficial mutagenesis strategy generates a comprehensive energetic map of the antibody-binding site in a facile and rapid manner and should be broadly applicable to the affinity maturation of antibodies and other proteins.
机译:透视诱变(LTM)是一种多维诱变方法,可同时评估和优化所选氨基酸的组合突变。该过程集中于一个或多个互补决定区(CDR)域内的精确分布,并探索氨基酸侧链化学的协同作用。 LTM应用于抗TNF-α抗体D2E7,这是一个具有挑战性的测试案例,因为其他人对D2E7进行了高度优化(K-d = 1 nM)。我们在每个CDR的每个位置以及所有六个CDR(57 aa)中分别选择并掺入了9个代表主要化学功能的氨基酸。合并各自在六个CDR中引入一个氨基酸突变的合成寡核苷酸,以生成分离的文库,每个V-H和V-L结构域在一个,两个和/或三个CDR中包含单个突变。相应的抗体文库显示在酵母的细胞表面上。阳性结合选择后,鉴定出21个CDR位置有38个取代,从而导致与TNF-α的亲和力更高。在两个组合的有益诱变文库中代表了V-H和V-L的这些有益突变,并通过FACS进行了选择,以产生具有500到870倍更高亲和力的变体融合。重要的是,在L929生物测定中,这些增强的亲和力可将体外TNF-α中和作用提高15至30倍。因此,该LTM /组合有益诱变策略以简便和快速的方式生成了抗体结合位点的全面能量图,应广泛应用于抗体和其他蛋白质的亲和力成熟。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号