Orum H, Andersen P S, Oster A, Johansen L K, Riise E, Bjørnvad M, Svendsen I, Engberg J
Royal Danish School of Pharmacy, Department of Biology, Copenhagen.
Nucleic Acids Res. 1993 Sep 25;21(19):4491-8. doi: 10.1093/nar/21.19.4491.
We have developed efficient methodologies for construction and expression of comprehensive phage display libraries of murine Fab antibody fragments in E. coli cells. Our methods optimize several critical steps of the polymerase chain reaction (PCR) amplification of transcripts of the re-arranged immunoglobulin genes and of their subsequent assembly and expression: Firstly, we have designed exhaustive sets of PCR primers of low degeneracy for the amplification of transcripts of the Fab region of the heavy and light-chain genes. These primers proved effective in amplification of Fab gene fragments from a large panel of hybridoma cell lines of different specificity and family sub-type. Secondly, we have developed a 'jumping PCR' technique that effectively assembled and recombined the amplified heavy and light-chain gene fragments into a bi-cistronic operon. Thirdly, we have constructed expression vectors for insertion of the combinatorial Fab gene-cassette in fusion with a truncated version of the phage surface protein, gIIIp. The heavy chain and the light chain-gIII fusion are transcribed as a polycistronic mRNA from the lacZ promoter and efficient transcriptional control is provided by wildtype lacI present on the vector. The utility of the system was demonstrated by isolating several antigen-binding clones from hybridomas and libraries made from immunized mice.
我们已经开发出了高效的方法,用于在大肠杆菌细胞中构建和表达鼠源Fab抗体片段的全面噬菌体展示文库。我们的方法优化了重排免疫球蛋白基因转录本的聚合酶链反应(PCR)扩增及其后续组装和表达的几个关键步骤:首先,我们设计了多套低简并度的PCR引物,用于扩增重链和轻链基因Fab区域的转录本。这些引物在从大量不同特异性和家族亚型的杂交瘤细胞系中扩增Fab基因片段方面证明是有效的。其次,我们开发了一种“跳跃PCR”技术,可有效地将扩增的重链和轻链基因片段组装并重组为双顺反子操纵子。第三,我们构建了表达载体,用于插入与噬菌体表面蛋白gIIIp的截短版本融合的组合Fab基因盒。重链和轻链 - gIII融合体从lacZ启动子转录为多顺反子mRNA,并且由载体上存在的野生型lacI提供有效的转录控制。通过从杂交瘤和免疫小鼠制备的文库中分离出几个抗原结合克隆,证明了该系统的实用性。