Movatterモバイル変換


[0]ホーム

URL:


Skip to content
1887
  • search icon
  • account icon
  • shopping cart icon
  • Research Article

    Free

    The major outer-membrane proteins ofChlamydia trachomatis serovars A and B: intra-serovar amino acid changes do not alter specificities of serovar- and C subspecies-reactive antibody-binding domainsFree

    Abstract

    The major outer-membrane protein (MOMP) ofChlamydia trachomatis is a promising candidate antigen for- andchlamydial vaccine development. We have sequenced the MOMP genes for a serovar A and a serovar B isolate and have compared these new sequences with those already reported. Intra-serovar changes in the inferred amino acid sequences of the surface-exposed variable segments known to be responsible for binding of neutralizing antibody were observed. Nevertheless, epitope mapping with solid-phase peptides showed that these intra-serovar changes did not affect the binding of serovar- and subspecies-specific, potentially protective antibodies. Variable segment 1 ofC. trachomatis serovar A contained two adjacent antibody-binding sites, one of which was C-subspecies specific while the other was serovar A specific. Therefore the subspecies binding site for C-complex organisms is in variable segment 1, whilst that for B-complex organisms is in variable segment 4. This work shows that MOMP sequences are relatively stable within the serovar categorization for isolates taken decades apart from different continents. Within a given serovar, however, limited interchange of functionally related amino acids may occur without impairing the binding of serovar-specific antibody.

    • Received:
    • Accepted:
    • Revised:
    • Published Online:
    © Society for General Microbiology, 1990
    Loading

    Article metrics loading...

    /content/journal/micro/10.1099/00221287-136-8-1559
    1990-08-01
    2025-11-27

    Metrics

    Download as PowerPoint
    Loading full text...

    Full text loading...

    /deliver/fulltext/micro/136/8/mic-136-8-1559.html?itemId=/content/journal/micro/10.1099/00221287-136-8-1559&mimeType=html&fmt=ahah

    References

    1. BaehrW.,ZhangY.X.,JosephT.,SuH.,NanoF.E.,EverettK.D.E.,CaldwellH.D.1988; Mapping antigenic domains expressed byChlamydia trachomatis major outer membrane protein genes.Proceedings of the National Academy of Sciences of the United States of America 85:4000–4004
      [Google Scholar]
    2. BatteigerB.E.,NewhallW.J.,TerhoP.,WildeC.E.,JonesR.B.1986; Antigenic analysis of the major outer membrane protein ofChlamydia trachomatis with murine monoclonal antibodies.Infection and Immunity 53:530–533
      [Google Scholar]
    3. BavoilP.,OhlinA.,SchachterJ.1984; Role of disulfide bonding in outer membrane structure and permeability inChlamydia trachomatis.Infection and Immunity 44:479–485
      [Google Scholar]
    4. CaldwellH.D.,KromhoutJ.,SchachterJ.1981; Purification and partial characterization of the major outer membrane protein ofChlamydia trachomatis.Infection and Immunity 31:1161–1176
      [Google Scholar]
    5. CollettB.A.,NewhallW.J.,JersildV.R.A.,JonesR.B.1989; Detection of surface-exposed epitopes onChlamydia trachomatis by immune electron microscopy.Journal of General Microbiology 135:85–94
      [Google Scholar]
    6. ConlanJ.W.,ClarkeI.N.,WardM.E.1988; Epitope mapping with solid-phase peptides: identification of type-, subspecies-, species- and genus-reactive antibody binding domains on the major outer membrane protein ofChlamydia trachomatis.Molecular Microbiology 2:673–679
      [Google Scholar]
    7. ConlanJ.W.,FerrisS.,ClarkeI.N.,WardM.E.1989; Surface-exposed epitopes on the major outer-membrane protein ofChlamydia trachomatis defined with peptide antisera.Journal of General Microbiology 135:3219–3228
      [Google Scholar]
    8. GeysenH.M.,MeloenR.H.,BartelingS.J.1984; Use of peptide synthesis to probe viral antigens for epitopes to a resolution of a single amino acid.Proceedings of the National Academy of Sciences of the United States of America 81:3998–4002
      [Google Scholar]
    9. HatchT.P.,VanceD.W.,Al-HossainyE.1981; Identification of a major envelope protein inChlamydia spp.Journal of Bacteriology 146:426–429
      [Google Scholar]
    10. KarnJ.,BrennerS.,BarnettL.,CesareniG.1980; Novel bacteriophageλ-cloning vector.Proceedings of the National Academy of Sciences of the United States of America 77:5172–5176
      [Google Scholar]
    11. KuoC.C.,ChiE.Y.1987; Ultrastructural study ofChlamydia trachomatis surface antigens by immunogold staining with monoclonal antibodies.Infection and Immunity 55:1324–1328
      [Google Scholar]
    12. MessingJ.,CreaR.,SeeburgP.H.1981; A system for shotgun DNA sequencing.Nucleic Acids Research 9:309–321
      [Google Scholar]
    13. PickettM.A.,WardM.E.,ClarkeI.N.1987; Complete nucleotide sequence of the major outer membrane protein gene fromChlamydia trachomatis serovar L1.FEMS Microbiology Letters 42:185–190
      [Google Scholar]
    14. SaikiR.K.,ScharfS.,FaloonA.F.,MullisK.B.,HornG.T.,ErlichH.A.,ArnheimN.1985; Enzymatic amplification ofβ-globin genomic sequences and restriction site analysis for diagnosis of sickle cell anemia.Science 230:1350–1354
      [Google Scholar]
    15. SalariS.H.,WardM.E.1981; Polypeptide composition ofChlamydia trachomatis.Journal of General Microbiology 123:197–207
      [Google Scholar]
    16. SchachterJ.,DawsonC.R.1978Human Chlamydial Infections. Littleton, MA:: PSG Publishing.;
      [Google Scholar]
    17. StephensR.S.,TamM.R.,KuoC.,NowinskiR.C.1982; Monoclonal antibodies toChlamydia trachomatis: antibody specificities and antigen characterization.Journal of Immunology 128:1083–1089
      [Google Scholar]
    18. StephensR.S.,MullenbachG.,Sanchez-PescadorR.,AgabianN.1986; Sequence analysis of the major outer membrane protein gene fromChlamydia trachomatis serovar L2.Journal of Bacteriology 168:1277–1282
      [Google Scholar]
    19. StephensR.S.,Sanchez-PescadorR.,WagarE.A.,InouyeC.,UrdeaM.1987; Diversity ofChlamydia trachomatis major outer membrane protein genes.Journal of Bacteriology 169:3879–3885
      [Google Scholar]
    20. StephensR.S.,WagarE.A.,SchoolnikG.K.1988; High resolution mapping of serovar-specific and common antigenic determinants of the major outer membrane protein ofChlamydia trachomatis.Journal of Experimental Medicine 167:817–831
      [Google Scholar]
    21. WenmanW.M.,LovettM.A.1982; Expression inEscherichia coli ofChlamydia trachomatis antigen recognized during human infections. Nature; London:29668–70
      [Google Scholar]
    22. Yanisch-PerronC.,VieiraJ.,MessingJ.1985; Improved M13 phage cloning vectors and host strains: nucleotide sequences of the M13mpl8 and pUCl9 vectors.Gene 33:103–119
      [Google Scholar]
    23. YuanY.,ZhangY.X.,WatkinsN.G.,CaldwellH.D.1989; Nucleotide and deduced amino acid sequences for the four variable domains of the major outer membrane proteins of the 15 serovars ofChlamydia trachomatis.Infection and Immunity 57:1040–1049
      [Google Scholar]
    24. ZhangY.X.,StewartS.,JosephT.,TaylorH.R.,CaldwellH.D.1987; Protective monoclonal antibodies recognize epitopes located on the major outer membrane protein ofChlamydia trachomatis.Journal of Immunology 138:575–581
      [Google Scholar]
    /content/journal/micro/10.1099/00221287-136-8-1559
    Loading
    The major outer-membrane proteins of Chlamydia trachomatis serovars A and B: intra-serovar amino acid changes do not alter specificities of serovar- and C subspecies-reactive antibody-binding domains
    Microbiology136, 1559 (1990);https://doi.org/10.1099/00221287-136-8-1559
    /content/journal/micro/10.1099/00221287-136-8-1559
    /content/journal/micro/10.1099/00221287-136-8-1559
    Loading

    Data & Media loading...

    Most read this month

    Article
    content/journal/micro
    Journal
    5
    3
    false
    en
    Loading

    Most citedMost Cited RSS feed

    We Recommend

    Access key

    • Subscribed Subscribed content
    • Open Access Open Access content
    • Free Trial Free Trial content
    • Frees Free content

    Microbiology Horizons: the new interdisciplinary journal

    White text on illustration of petri dish reading Discover our new journal

    Find out more about our newest title, Microbiology Horizons, bringing together insights on new technologies and solutions in microbiology to address global challenges.

    Submit to our collection

    We are welcoming submissions to ouradvances in the biology of Actinomycetes collection, providing a home to a wide breadth of subjects within this area, such as those covered in the 20th International Symposium on the Biology of Actinomycetes. 

    This is a required field
    Please enter a valid email address
    Approval was a Success
    Invalid data
    An error occurred
    Approval was partially successful, following selected items could not be processed due to error
    Microbiology Society:
    http://instance.metastore.ingenta.com/content/journal/micro/10.1099/00221287-136-8-1559
    10.1099/00221287-136-8-1559
    SEARCH_EXPAND_ITEM

    [8]ページ先頭

    ©2009-2025 Movatter.jp