Production of a recombinant antibody fragment in whole insect larvae
- 17 April 2007
- journal article
- research article
- Published by Springer Nature in Molecular Biotechnology
- Vol. 36 (1) , 44-51
- https://doi.org/10.1007/s12033-007-0014-4
Abstract
Infection of insect cells with baculovirus expression constructs is commonly used to produce recombinant proteins that require post-translational modifications for their activity, such as mammalian proteins. However, technical restraints limit the capacity of insect cell-based culture systems to be scaled up to produce the large amounts of recombinant protein required for human pharmaceuticals. In this study, we designed an automated insect rearing system and whole insect baculovirus expression system (PERLXpress™) for the expression and purification of recombinant proteins on a large scale. As a test model, we produced a recombinant mouse anti-botulinum antibody fragment (Fab) in Trichoplusia ni larvae. A recombinant baculovirus co-expressing the Fab heavy and light chains together with N-terminal sequences from the silkworm hormone bombyxin, to direct proteins into the secretory pathway, was constructed. Fifth instar larvae were reared and infected orally with recombinant (pre- occluded) baculovirus using the automated system and harvested approximately after 4 days. The total yield of recombinant Fab was 1.1 g/kg of larvae, resulting in 127 mg of pure Fab in one production run. The Fab was purified to homogeneity using immobilized metal affinity chromatography, gel filtration, and anion exchange chromatography. The identity of the purified protein was verified by Western blots and size-exclusion chromatography. Purified recombinant Fab was used to detect botulinum toxin in ELISA experiments, demonstrating that the heavy and light chains were properly assembled and folded into functional heterodimers. We believe that this is the first demonstration of the expression of a recombinant antibody in whole insect larvae. Our results demonstrate that a baculovirus-whole larvae expression system can be used to express functionally active recombinant Fab fragments. As the PERLXpress™ system is an automated and linearly scalable technology, it represents an attractive alternative to insect cell culture for the production of large amounts of human pharmaceuticals.Keywords
This publication has 32 references indexed in Scilit:
- Demonstration by heterologous expression that the Leishmania SCA1 gene encodes an arabinopyranosyltransferaseGlycobiology, 2005
- The NA/K-ATPase and its isozymes: what we have learned using the baculovirus expression systemFrontiers in Bioscience-Landmark, 2005
- Large‐scale overproduction, functional purification and ligand affinities of the His‐tagged human histamine H1 receptorEuropean Journal of Biochemistry, 2004
- Establishment of a Large-Scale Purification Procedure for Purified Recombinant Bovine Interferon-.TAU. Produced by a Silkworm-Baculovirus Gene Expression SystemThe Journal of Veterinary Medical Science, 2004
- Spontaneous excision of BAC vector sequences from bacmid-derived baculovirus expression vectors upon passage in insect cellsJournal of General Virology, 2003
- Generation of an HFRS patient-derived neutralizing recombinant antibody to Hantaan virus G1 protein and definition of the neutralizing domainJournal of Medical Virology, 2002
- Development and Application of Chymase Inhibitors: Recombinant Human Chymase Produced by Silkworm-Baculovirus Expression System: Its Application for a Chymase Detection KitThe Japanese Journal of Pharmacology, 2002
- Purification of Human Interleukin-2 Fusion Protein Produced in Insect Larvae Is Facilitated by Fusion with Green Fluorescent Protein and Metal Affinity LigandBiotechnology Progress, 1999
- Influence of promoter and signal peptide on the expression and secretion of recombinant porcine LH extracellular domain in baculovirus/lepidopteran cells or the caterpillar systemJournal of Molecular Endocrinology, 1995
- Cloning of a Gene Encoding Bombyxin, an Insulin‐Like Brain Secretory Peptide of the Silkmoth Bombyx mori with Prothoracicotropic ActivityDevelopment, Growth & Differentiation, 1989