A rapid method of cloning functional variable-region antibody genes in Escherichia coli as single-chain immunotoxins.
- 1 February 1990
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 87 (3) , 1066-1070
- https://doi.org/10.1073/pnas.87.3.1066
Abstract
We have devised a strategy based on polymerase chain reaction (PCR) for the rapid cloning of functional antibody genes as single-chain immunotoxins. RNA from a hybridoma producing an antibody (OVB3) that reacts with ovarian cancer cells was used as a template to make the first strand of a cDNA. Then a second strand was synthesized and amplified by using two sets of DNA primers that (i) hybridized to the ends of the light- and heavy-chain variable regions, (ii) encoded a linker peptide, and (iii) contained appropriate restriction enzyme sites for cloning. After 30 cycles of PCR, the DNA fragments containing sequences encoding the light- and heavy-chain variable regions were cloned into an Escherichia coli expression vector containing a portion of the Pseudomonas exotoxin gene. Clones encoding recombinant single-chain immunotoxins were expressed in E. coli and the protein product was assessed for its ability to bind to or kill cells bearing the OVB3 antigen. By using this approach it should be possible to rapidly clone the functional variable region sequences of many different antibodies from hybridoma RNA.This publication has 25 references indexed in Scilit:
- Use of bacteriophage T7 RNA polymerase to direct selective high-level expression of cloned genesPublished by Elsevier ,2004
- Single-Chain Antigen-Binding ProteinsScience, 1988
- Selective killing of HIV-infected cells by recombinant human CD4-Pseudomonas exotoxin hybrid proteinNature, 1988
- Reshaping Human Antibodies: Grafting an Antilysozyme ActivityScience, 1988
- Reshaping human antibodies for therapyNature, 1988
- Primer-Directed Enzymatic Amplification of DNA with a Thermostable DNA PolymeraseScience, 1988
- ImmunotoxinsCell, 1986
- Direct Cloning and Sequence Analysis of Enzymatically Amplified Genomic SequencesScience, 1986
- Replacing the complementarity-determining regions in a human antibody with those from a mouseNature, 1986
- Enzymatic Amplification of β-Globin Genomic Sequences and Restriction Site Analysis for Diagnosis of Sickle Cell AnemiaScience, 1985