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Polyclonal Antibody Production for Membrane Proteins via Genetic Immunization. | LitMetric

AI Article Synopsis

  • * A new method using genetic immunization in mice successfully created antibodies targeting 71% of tested membrane proteins, confirming the potential of this DNA-gold micronanoplex technique.
  • * Researchers also developed an easy in vitro method for expressing and capturing membrane proteins to assist in antibody characterization, paving the way for more research on important therapeutic membrane proteins.

Article Abstract

Antibodies are essential for structural determinations and functional studies of membrane proteins, but antibody generation is limited by the availability of properly-folded and purified antigen. We describe the first application of genetic immunization to a structurally diverse set of membrane proteins to show that immunization of mice with DNA alone produced antibodies against 71% (n = 17) of the bacterial and viral targets. Antibody production correlated with prior reports of target immunogenicity in host organisms, underscoring the efficiency of this DNA-gold micronanoplex approach. To generate each antigen for antibody characterization, we also developed a simple in vitro membrane protein expression and capture method. Antibody specificity was demonstrated upon identifying, for the first time, membrane-directed heterologous expression of the native sequences of the FopA and FTT1525 virulence determinants from the select agent Francisella tularensis SCHU S4. These approaches will accelerate future structural and functional investigations of therapeutically-relevant membrane proteins.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4764931PMC
http://dx.doi.org/10.1038/srep21925DOI Listing

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