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Updated: Aug 5, 2026

Profiling of Surface Protein Epitopes on Viral Particles by Multiplex Dual-Reporter Strategy
Published on: January 12, 2024
Combining gene amplification with SEAP-reporter to achieve high expression of recombinant omicron XBB.1.5 spike
1Structural Immunology Section, Laboratory of Immunogenetics, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Rockville, MD, 20852, USA.
Abstract:
Most stable mammalian recombinant protein expressions use labor-intensive ELISA with target specific antibodies for screening of high-expression clones. Some alternative antibody-free reporter systems, such as the ones using intracellular green fluorescent proteins, simplified the screening of expression clones but often resulted in limited expression yields. We have previously developed a glutamine synthetase (GS)-based amplifiable gene expression system to obtain high yield expression for some difficult to express recombinant proteins. Here, we further improved the GS-based expression system by adding a secreted embryonic alkaline phosphatase (SEAP)-based reporter to allow efficient, antibody-free selection of robust recombinant expression clones. We tested the GS and SEAP combined strategy on expression of a relatively difficult protein, the soluble trimeric SARS-CoV-2 Omicron XBB.1.5 spike protein and obtained greater than 130 mg/L yield of purified protein. This represents the highest expression of coronavirus spike trimer in HEK293 cells. Thus, the combination of gene amplification with a simple, robust selection results in a high throughput and high-yield recombinant protein expression system.

