Ribosome Display of Combinatorial Antibody Libraries Derived from Mice Immunized with Heat-Killed Xylella fastidiosa and the Selection of MopB-Specific Single-Chain Antibodies

Author:

Azizi Armaghan1,Arora Arinder23,Markiv Anatoliy1,Lampe David J.4,Miller Thomas A.2,Kang Angray S.15

Affiliation:

1. University of Westminster, School of Life Sciences, London, United Kingdom

2. University of California, Riverside, Department of Entomology, Riverside, California, USA

3. University of New Mexico, Department of Biology, Albuquerque, New Mexico, USA

4. Duquesne University, Department of Biological Sciences, Pittsburgh, Pennsylvania, USA

5. Queen Mary University of London, Barts & The London School of Medicine and Dentistry, Institute of Dentistry, London, United Kingdom

Abstract

ABSTRACT Pierce's disease is a devastating lethal disease of Vitus vinifera grapevines caused by the bacterium Xylella fastidiosa . There is no cure for Pierce's disease, and control is achieved predominantly by suppressing transmission of the glassy-winged sharpshooter insect vector. We present a simple robust approach for the generation of panels of recombinant single-chain antibodies against the surface-exposed elements of X. fastidiosa that may have potential use in diagnosis and/or disease transmission blocking studies. In vitro combinatorial antibody ribosome display libraries were assembled from immunoglobulin transcripts rescued from the spleens of mice immunized with heat-killed X. fastidiosa . The libraries were used in a single round of selection against an outer membrane protein, MopB, resulting in the isolation of a panel of recombinant antibodies. The potential use of selected anti-MopB antibodies was demonstrated by the successful application of the 4XfMopB3 antibody in an enzyme-linked immunosorbent assay (ELISA), a Western blot assay, and an immunofluorescence assay (IFA). These immortalized in vitro recombinant single-chain antibody libraries generated against heat-killed X. fastidiosa are a resource for the Pierce's disease research community that may be readily accessed for the isolation of antibodies against a plethora of X. fastidiosa surface-exposed antigenic molecules.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

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