A simple vector system to improve performance and utilisation of recombinant antibodies
Open Access
- 7 December 2006
- journal article
- research article
- Published by Springer Nature in BMC Biotechnology
- Vol. 6 (1) , 46
- https://doi.org/10.1186/1472-6750-6-46
Abstract
Isolation of recombinant antibody fragments from antibody libraries is well established using technologies such as phage display. Phage display vectors are ideal for efficient display of antibody fragments on the surface of bacteriophage particles. However, they are often inefficient for expression of soluble antibody fragments, and sub-cloning of selected antibody populations into dedicated soluble antibody fragment expression vectors can enhance expression. We have developed a simple vector system for expression, dimerisation and detection of recombinant antibody fragments in the form of single chain Fvs (scFvs). Expression is driven by the T7 RNA polymerase promoter in conjunction with the inducible lysogen strain BL21 (DE3). The system is compatible with a simple auto-induction culture system for scFv production. As an alternative to periplasmic expression, expression directly in the cytoplasm of a mutant strain with a more oxidising cytoplasmic environment (Origami 2™ (DE3)) was investigated and found to be inferior to periplasmic expression in BL21 (DE3) cells. The effect on yield and binding activity of fusing scFvs to the N terminus of maltose binding protein (a solubility enhancing partner), bacterial alkaline phosphatase (a naturally dimeric enzymatic reporter molecule), or the addition of a free C-terminal cysteine was determined. Fusion of scFvs to the N-terminus of maltose binding protein increased scFv yield but binding activity of the scFv was compromised. In contrast, fusion to the N-terminus of bacterial alkaline phosphatase led to an improved performance. Alkaline phosphatase provides a convenient tag allowing direct enzymatic detection of scFv fusions within crude extracts without the need for secondary reagents. Alkaline phosphatase also drives dimerisation of the scFv leading to an improvement in performance compared to monovalent constructs. This is illustrated by ELISA, western blot and immunohistochemistry. Nine scFv expression vectors have been generated and tested. Three vectors showed utility for expression of functional scFv fragments. One vector, pSANG14-3F, produces scFv-alkaline phosphatase fusion molecules which offers a simple, convenient and sensitive way of determining the reactivity of recombinant antibody fragments in a variety of common assay systems.Keywords
This publication has 19 references indexed in Scilit:
- A Reagent Resource to Identify Proteins and Peptides of Interest for the Cancer CommunityMolecular & Cellular Proteomics, 2006
- Parallel, high-throughput purification of recombinant antibodies for in vivo cell assaysBiotechnology & Bioengineering, 2006
- Protein production by auto-induction in high-density shaking culturesProtein Expression and Purification, 2005
- Comparison of Methods for Image Analysis on cDNA Microarray DataJournal of Computational and Graphical Statistics, 2002
- Artificial Evolution of an Enzyme Active Site: Structural Studies of Three Highly Active Mutants of Escherichia coli Alkaline PhosphataseJournal of Molecular Biology, 2002
- Single-Chain Fv Fusion Proteins Suitable as Coating and Detecting Reagents in a Double Antibody Sandwich Enzyme-Linked Immunosorbent AssayAnalytical Biochemistry, 1997
- A scFv-alkaline phosphatase fusion protein which detects potato leafroll luteovirus in plant extracts by ELISAJournal of Virological Methods, 1997
- Isolation of Picomolar Affinity Anti-c-erbB-2 Single-chain Fv by Molecular Evolution of the Complementarity Determining Regions in the Center of the Antibody Binding SiteJournal of Molecular Biology, 1996
- Human Antibodies with Sub-nanomolar Affinities Isolated from a Large Non-immunized Phage Display LibraryNature Biotechnology, 1996
- Recombinant Colorimetric Antibodies: Construction and Characterization of a Bifunctional F(ab)2/Alkaline Phosphatase Conjugate Produced in Escherichia coliNature Biotechnology, 1993