Home LiteratureArticle Details
PMID: 2902185 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Dissecting human T cell responses against Bordetella species.

The Journal of experimental medicine ·Vol. 168 ·No. 4 ·1988-10-01 ·Pages 1351-62

De Magistris MT, Romano M, Nuti S, Rappuoli R, Tagliabue A

Abstract

To identify the minimal structures that may be important for the creation of a synthetic and/or recombinant vaccine against whooping cough, human T cell clones were obtained against Bordetella antigens. Cloned peripheral blood T lymphocytes from an immune donor were grown in IL-2 and tested for proliferation in response to inactivated Bordetella species (B. pertussis, B. parapertussis, and B. bronchiseptica) and mutants deficient for the expression of virulence-associated antigens. All the T cell clones obtained were CD4+8- and recognized specifically the Bordetella antigens when presented by autologous B cells. On the basis of the responsiveness to the whole inactivated bacteria, it was possible to cluster the 12 clones obtained into four groups with the following specificity: (1) filamentous hemagglutinin (FHA); (2) B. pertussis-specific antigens; (3) virulence-associated Bordetella-specific antigens; and (4) nonvirulence-associated Bordetella-specific antigens. Using two new B. pertussis deletion mutants, clone 6 (representative of cluster 1) was found to recognize the COOH terminus of FHA. Furthermore, three out of four clones of cluster 3 were specifically stimulated by the soluble 69-kD protein from the outer membrane of B. pertussis. Surprisingly, none of the twelve clones obtained by stimulation in vitro with whole inactivated bacteria recognized pertussis toxin (PT), which is believed to be the most important protein to be included in an acellular vaccine. However, when a new generation of clones was obtained using soluble PT as the in vitro stimulus, it was observed that 11 clones of this group recognized this antigen. Thus, PT does not seem to be the most representative antigen on the whole inactivated bacteria, although T cell memory against PT exists in a donor who had the disease several years ago.

MeSH Terms
Adult Antibodies, Bacterial/analysis Antibody Specificity Antigens, Bacterial/immunology Bordetella/immunology,pathogenicity Bordetella pertussis/immunology,pathogenicity Clone Cells Enzyme-Linked Immunosorbent Assay Hemagglutinins/immunology Humans Lymphocyte Activation Pertussis Toxin T-Lymphocytes/immunology Virulence Virulence Factors, Bordetella/immunology
Chemicals
Antibodies, Bacterial Antigens, Bacterial Hemagglutinins Virulence Factors, Bordetella Pertussis Toxin
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
De Magistris M T
Lab. Immunopharmacology, Sclavo Research Center, Siena, Italy.
Romano M
Nuti S
Rappuoli R
Tagliabue A
References (13)
13 references, click to expand
  1. Enzyme-linked immunosorbent assay, Elisa. 3. Quantitation of specific antibodies by enzyme-labeled anti-immunoglobulin in antigen-coated tubes.
    J Immunol. 1972 Jul;109(1):129-35 PMID: 4113792
  2. Attack rates of notified whooping cough in immunised and unimmunised children.
    Br Med J. 1976 Jan 17;1(6002):128-9 PMID: 1247742
  3. Effect of vaccination on severity and dissemination of whooping cough.
    Br Med J (Clin Res Ed). 1981 Jun 13;282(6280):1925-8 PMID: 6263402
  4. Induction of a novel morphological response in Chinese hamster ovary cells by pertussis toxin.
    Infect Immun. 1983 Jun;40(3):1198-203 PMID: 6682833
  5. Human monoclonal antibodies to a genus-specific chlamydial antigen, produced by EBV-transformed B cells.
    J Immunol. 1983 Jun;130(6):2899-902 PMID: 6189902
  6. Tn5-induced mutations affecting virulence factors of Bordetella pertussis.
    Infect Immun. 1983 Oct;42(1):33-41 PMID: 6311749
  7. Cloning and nucleotide sequence analysis of the serotype 2 fimbrial subunit gene of Bordetella pertussis.
    Mol Microbiol. 1987 Sep;1(2):203-9 PMID: 2897065
  8. Adenylate cyclase activity of a 68,000-molecular-weight protein isolated from the outer membrane of Bordetella bronchiseptica.
    Infect Immun. 1985 Oct;50(1):199-206 PMID: 4044033
  9. Isolation and characterization of Ni-specific T cell clones from patients with Ni-contact dermatitis.
    J Immunol. 1985 Dec;135(6):3929-32 PMID: 2415590
  10. Pertussis toxin gene: nucleotide sequence and genetic organization.
    Science. 1986 Jun 6;232(4755):1258-64 PMID: 3704651
  11. Cloning and sequencing of the pertussis toxin genes: operon structure and gene duplication.
    Proc Natl Acad Sci U S A. 1986 Jul;83(13):4631-5 PMID: 2873570
  12. Cloning of the filamentous hemagglutinin of Bordetella pertussis and its expression in Escherichia coli.
    Infect Immun. 1987 Jan;55(1):154-61 PMID: 2878885
  13. Pertussis toxin. Affinity purification of a new ADP-ribosyltransferase.
    J Biol Chem. 1983 Dec 10;258(23):14647-51 PMID: 6315733
Article Info
Journal
The Journal of experimental medicine
Abbr.
J Exp Med
ISSN
0022-1007
Published
1988-10-01
Pages
1351-62
Language
English
Region
United States
NLM ID
2985109R
PMCID
PMC2189079
Subset
IM
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: [email protected]