Engineering human PON1 in an E. coli expression system.

Adv Exp Med Biol

Departments of Medicine (Div. of Medical Genetics) and Genome Sciences, University of Washington, Seattle, Washington, USA.

Published: September 2011

AI Article Synopsis

  • Recombinant human paraoxonase-1 (rHuPON1) is difficult to produce in bacterial systems, leading researchers to use eukaryotic methods or synthetic hybrid genes.
  • The study outlines a method to efficiently produce and purify stable and active rHuPON1 from E. coli, which can protect mice from harmful organophosphorus compounds.
  • Bacterial production avoids glycosylation issues seen in eukaryotic systems, making rHuPON1 a promising candidate for treating pesticide exposure and assessing variants for improved efficiency against nerve agents.

Article Abstract

Expression and purification of recombinant human paraoxonase-1 (rHuPON1) from bacterial systems have proven elusive. Most systems for successful production of recombinant PON1 have relied on either eukaryotic expression in baculovirus or prokaryotic expression of synthetic, gene-shuffled rabbit-mouse-human PON1 hybrid molecules. We review here methods and protocols for the production of pure, native rHuPON1 using an E. coli expression system followed by conventional column chromatographic purification. The resulting rHuPON1 is stable, active, and capable of protecting PON1 knockout mice (PON1(-/-)) from exposure to high levels of the organophosphorus (OP) compound diazoxon. Bacterially-derived rHuPON1 can be produced in large quantities and lacks the glycosylation of eukaryotic systems that produces immunogenic complications when used as a therapeutic. The rHuPON1 should be useful for treating insecticide OP exposures and reducing risks of other diseases resulting from low PON1 status. The ease of mutagenesis in bacterial systems will also allow for the generation and screening of rHuPON1 variants with enhanced catalytic efficiencies against nerve agents and other OP compounds.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3056878PMC
http://dx.doi.org/10.1007/978-1-60761-350-3_5DOI Listing

Publication Analysis

Top Keywords

coli expression
8
expression system
8
bacterial systems
8
rhupon1
6
pon1
5
expression
5
engineering human
4
human pon1
4
pon1 coli
4
system expression
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!