Affiliation:
1. Department of Basic Veterinary Sciences, Section of Microbiology, FIN-00014 University of Helsinki
2. MTT Agrifood Research Finland, Food Research, FIN-31600 Jokioinen, Finland
Abstract
ABSTRACT
So far, the inability to establish viable
Lactobacillus
surface layer (S-layer) null mutants has hampered the biotechnological applications of
Lactobacillus
S-layers. In this study, we demonstrate the utilization of
Lactobacillus brevis
S-layer subunits (SlpA) for the surface display of foreign antigenic epitopes. With an inducible expression system,
L. brevis
strains producing chimeric S-layers were obtained after testing of four insertion sites in the
slpA
gene for poliovirus epitope VP1, that comprises 10 amino acids. The epitope insertion site allowing the best surface expression was used for the construction of an integration vector carrying the gene region encoding the c-Myc epitopes from the human c-
myc
proto-oncogene, which is composed of 11 amino acids. A gene replacement system was optimized for
L. brevis
and used for the replacement of the wild-type
slpA
gene with the
slpA
-c-
myc
construct. A uniform S-layer, displaying on its surface the desired antigen in all of the S-layer protein subunits, was obtained. The success of the gene replacement and expression of the uniform SlpA-c-Myc recombinant S-layer was confirmed by PCR, Southern blotting MALDI-TOF mass spectrometry, whole-cell enzyme-linked immunosorbent assay, and immunofluorescence microscopy. Furthermore, the integrity of the recombinant S-layer was studied by electron microscopy, which indicated that the S-layer lattice structure was not affected by the presence of c-Myc epitopes. To our knowledge, this is the first successful expression of foreign epitopes in every S-layer subunit of a
Lactobacillus
S-layer while still maintaining the S-layer lattice structure.
Publisher
American Society for Microbiology
Subject
Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology
Cited by
67 articles.
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