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Molecular analysis of the gene encoding an antigenic polypeptide of Trichinella spiralis infective larvae

Published online by Cambridge University Press:  05 June 2009

Kazuo Sugane
Affiliation:
Department of Parasitology, Faculty of Medicine, Shinshu University, Asahi 3-1-1, Matsumoto City, Nagano Prefecture, Japan
Tadashi Matsuura
Affiliation:
Department of Parasitology, Faculty of Medicine, Shinshu University, Asahi 3-1-1, Matsumoto City, Nagano Prefecture, Japan

Abstract

The gene encoding an antigenic polypeptide of Trichinella spiralis infective larvae was studied using recombinant DNA techniques. cDNA synthesized from poly(A)-rich mRNA from T. spiralis infective larvae was ligated into phage vector λgt11 DNA and packaged in vitro. The phages were propagated on Escherichia coli and a λgt11 expression library was constructed. A cDNA clone encoding a 46 kDa antigenic polypeptide was selected by immunoscreening of the library and identified by the epitope selection method. A clone containing nearly full-length cDNA for a 46 kDa protein was isolated. The gene encoding this 46 kDa antigenic polypeptide was characterized by DNA and RNA blot analysis using the cDNA as a probe. The gene was transcribed to mRNA with approximately 1400 nucleotides and translated to 46 kDa polypeptide. The antigenic polypeptide was excreted/secreted as a 46 kDa native antigen. The antigenic β-galactosidase fusion protein synthesized by bacteria had no cross-reactivity with other parasite-infected sera.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1990

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References

REFERENCES

Feinberg, A. P.& Vogelstein, B. (1983) A technique for radiolabelling DNA restriction endonuclease fragments to high specific activity. Analytical Biochemistry, 132, 613.Google Scholar
Gubler, U. & Hoffman, B. J. (1983) A simple and very effective method for generating cDNA libraries. Gene, 25, 263269.CrossRefGoogle Scholar
Huynh, T. V., Young, R. A. & Davis, R. W. (1984) Constructing and screening cDNA libraries in λgt10 and λgt11. In: DNA cloning. (Editor D. M. Glover), pp. 4978, IRL Press: Oxford, UK.Google Scholar
Irving, D. O. & Howell, M. J. (1981) Preparation and in vitro translation of mRNA from Fasciola hepatica.Molecular and Biochemical Parasitology, 4, 337348.CrossRefGoogle ScholarPubMed
Kessler, S. W. (1975) Rapid isolation of antigens from cells with a staphylococcal protein A-antibody absorbent: Parameters of the interaction of antibody-antigen complexes with protein A. Journal of Immunology, 115, 16171624.CrossRefGoogle Scholar
Keulen, H. V., Loverde, P. T., Bobek, L. A. & Rekosh, O. M. (1985) Organization of the ribosomal RNA genes in Schistosoma mansoni. Molecular and Biochemical Parasitology, 15, 215230.CrossRefGoogle ScholarPubMed
Mills, C. K. & Kent, N. H. (1965) Excretions and secretions of Trichinella spiralis and their role in immunity. Experimental Parasitology, 16, 300310.CrossRefGoogle ScholarPubMed
Parkhouse, R. M. E. & Clark, N. W. T. (1983) Stage-specific secreted and somatic antigens of Trichinella spiralis. Molecular and Biochemical Parasitology, 9, 319327.Google ScholarPubMed
Pelham, H. R. B. & Jackson, R. J. (1976) An efficient mRNA dependent translation system from reticulocyte lysate. European Journal of Biochemistry, 67, 247256.CrossRefGoogle Scholar
Sanger, H., Nicklen, S. & Coulson, A. R. (1977) DNA sequencing with chain terminating inhibitors. Proceedings of the National Academy of Sciences (USA), 74, 54635467.CrossRefGoogle ScholarPubMed
Silberstein, D. S. & Despommier, D. D. (1984) Antigens from Trichinella spiralis that induce a protective response in the mouse. Journal of Immunology, 132, 898904.CrossRefGoogle ScholarPubMed
Silberstein, D. S. & Despommier, D. D. (1985) Effect on Trichinella spiralis of host responses to purified antigens. Science, 227, 948950.CrossRefGoogle ScholarPubMed
Sugane, K., Matsuura, T. & Maekawa, H. (1987) Translation products of mRNA from infective larvae of Trichinella spiralis include an antigenic polypeptide. Journal of Helminthology, 61, 18.CrossRefGoogle ScholarPubMed
Towbin, H., Staehelin, T. & Gordon, J. (1979) Electrophoretic transfer of proteins from polyacrylamide gels to nitrocellulose sheets: procedure and some applications. Proceedings of the National Academy of Sciences (USA), 76, 43504354.Google Scholar
Weinberger, C, Hollengerg, S. M., Ong, E.S., Harmon, J. M., Brower, S. T, Cidlowski, J., Thompson, E. B., Rosenfeld, M. G. & Evans, R. M. (1985) Identification of human glucocorticoid receptor complementary DNA clones by epitope selection. Science, 228, 740742.Google Scholar