克隆(编程)
分子生物学
噬菌体展示
重组DNA
生物
单克隆抗体
基因
分子克隆
免疫球蛋白轻链
抗体
多克隆站点
限制性酶
表达式向量
计算生物学
基因表达
遗传学
计算机科学
程序设计语言
作者
Anke Krebber,Susanne Bornhauser,Jörg Burmester,Annemarie Honegger,Jörg Willuda,Hans Rudolf Bosshard,Andreas Plückthun
标识
DOI:10.1016/s0022-1759(96)00208-6
摘要
A prerequisite for the use of recombinant antibody technologies starting from hybridomas or immune repertoires is the reliable cloning of functional immunoglobulin genes. For this purpose, a standard phage display system was optimized for robustness, vector stability, tight control of scFv-delta geneIII expression, primer usage for PCR amplification of variable region genes, scFv assembly strategy and subsequent directional cloning using a single rare cutting restriction enzyme. This integrated cloning, screening and selection system allowed us to rapidly obtain antigen binding scFvs derived from spleen-cell repertoires of mice immunized with ampicillin as well as from all hybridoma cell lines tested to date. As representative examples, cloning of monoclonal antibodies against a his tag, leucine zippers, the tumor marker EGP-2 and the insecticide DDT is presented. Several hybridomas whose genes could not be cloned in previous experimental setups, but were successfully obtained with the present system, expressed high amounts of aberrant heavy and light chain mRNAs, which were amplified by PCR and greatly exceeded the amount of binding antibody sequences. These contaminating variable region genes were successfully eliminated by employing the optimized phage display system, thus avoiding time consuming sequencing of non-binding scFv genes. To maximize soluble expression of functional scFvs subsequent to cloning, a compatible vector series to simplify modification, detection, multimerization and rapid purification of recombinant antibody fragments was constructed.
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