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J D van Embden

Publications and source records attributed to J D van Embden.

At least 91 records · Page 5Linked to original sources

The mycobacterial 65 kD heat-shock protein and autoimmune arthritis.

Arthritis - induced experimentally in rats by immunization with mycobacteria has been shown to depend on specific T cell recognition of an epitope present on the mycobacterial 65-kD heat-shock protein. This particular epitope has been observed to have a structural mimicry with a cartilage-associated molecule present in the joints. Since the bacterial heat-shock proteins and the cartilage-associated molecules are of a conserved nature, one might infer from the experimental model that in humans similar mimicry could play a role in the initiation of autoimmune arthritis. Recent findings from the analysis of immunological reactivity to the 65-kD in rheumatoid arthritis patients seem to support such a role for the mycobacterial 65-kD heat-shock protein in human disease.

Amino Acid Sequence↗

Treponema pallidum subspecies pallidum (Nichols) and Treponema pallidum subspecies pertenue (CDC 2575) differ in at least one nucleotide: comparison of two homologous antigens.

In an attempt to identify antigenic differences between Treponema pallidum subsp. pallidum (T. pallidum) and Treponema pallidum subsp. pertenue (T. pertenue) a gene bank of T. pertenue was constructed in lambda vector EMBL3. Clones carrying the T. pertenue gene encoding a 190 kDa protein, TyF1, were selected and the DNA was expressed in E. coli. TyF1 was shown to be closely related, but slightly different from the previously cloned T. pallidum antigen TpF1. TyF1 and TpF1 are high molecular weight antigens of about 190 kDa, which dissociate into 19 kDa subunits after heat treatment in presence of SDS. The difference between the two proteins is most obvious after treatment with proteinase K, which yields a 115 kDa component from TyF1 and a 95 kDa component from TpF1, as determined by sodium dodecyl sulphate-polyacrylamide gel electrophoresis (SDS-PAGE). The structural genes encoding TyF1 and TpF1 were sequenced and the predicted amino acid sequences differed in a single amino acid residue at position 40, which is arginine in TyF1 and glutamine in TpF1. Similarities TyF1 and TpF1 with the previously described 4D antigen are discussed. The antibody response to TyF1 and TpF1 seems higher in syphilis patients than in yaws patients. The possibility of using the difference between these T. pallidum and the T. Pertenue antigens for serological discrimination of syphilis and yaws is discussed.

Antigens, Bacterial↗

Characterization of lipid-modified immunogenic proteins of Treponema pallidum expressed in Escherichia coli.

This study describes the sequence of the immunodominant Treponema pallidum surface protein TpD and its expression in Escherichia coli. The translated TpD DNA sequence revealed the presence of a putative site for lipid-modification downstream from the signal sequence of this membrane protein. Growth of TpD-expressing E. coli in the presence of radioactive palmitic acid revealed that TpD was lipid-modified. Three other, previously characterized cloned proteins of T. pallidum were also lipid-modified. The N-termini of two of three sequenced T. pallidum proteins contain a tetrapeptide sequence characteristic for lipoproteins in Gram-negative bacteria: Leu-X-Y-Cys. Only TpD differed from this consensus sequence in the substitution of the first residue by Phe. The apparent high incidence of lipoproteins among E. coli recombinants expressing T. pallidum antigens suggest an important role of lipoproteins in the induction of humoral immunity during syphilitic infection.

Amino Acid Sequence↗

Overproduction and purification of Treponema pallidum recombinant-DNA-derived proteins TmpA and TmpB and their potential use in serodiagnosis of syphilis.

We report the construction of expression plasmids carrying two Treponema pallidum genes encoding for the 42-kilodalton membrane protein TmpA (treponemal membrane protein A) and the 34-kilodalton membrane protein TmpB. Using the leftward promoter of bacteriophage lambda, which is controlled by a thermosensitive repressor, we obtained a high level of heat-inducible synthesis of TmpA and TmpB in Escherichia coli K-12. Both proteins were purified to near homogeneity, and the presence of antibodies to TmpA and TmpB in human sera was determined by an enzyme-linked immunosorbent assay. Whereas in all 44 serum samples from untreated patients in the secondary and early latent stages of syphilis, high levels of anti-TmpA antibodies were detected, only 34 serum samples contained anti-TmpB antibodies. As has been previously observed for TmpA, a correlation was found between the presence of anti-TmpB antibodies and anti-cardiolipin antibodies, suggesting that the level of antibodies to TmpB drops soon after successful antibiotic treatment. We concluded that, in contrast to TmpA, TmpB is not suitable for serodiagnostic purposes as a single antigen, because a significant fraction of sera from syphilitic patients was nonreactive with TmpB.

Amino Acid Sequence↗

Sensitivity and specificity of an enzyme-linked immunosorbent assay using the recombinant DNA-derived Treponema pallidum protein TmpA for serodiagnosis of syphilis and the potential use of TmpA for assessing the effect of antibiotic therapy.

The recombinant DNA-derived Treponema pallidum membrane protein TmpA, purified from Escherichia coli K-12, was used in an enzyme-linked immunosorbent assay (ELISA) to evaluate its suitability in a screening test for syphilis and to monitor the effect of antibiotic treatment. The sensitivity of the TmpA ELISA was 76% for primary syphilis, 100% for secondary syphilis, and 98% for early latent syphilis. All except 1 of 15 serum samples positive for yaws were positive in this test. A specificity of 99.6% was found by testing more than 938 donor samples. The sensitivity and specificity of the TmpA ELISA are comparable to that of the T. pallidum hemagglutination assay, and therefore the test may be useful for the diagnosis of untreated syphilis. After antibiotic treatment, the level of anti-TmpA antibodies in sera of syphilis patients dropped sharply within 1 year. Thus, TmpA might be a useful antigen for monitoring successful treatment of syphilis.

Acute Disease↗

Immunogenicity of three recombinant Treponema pallidum antigens examined in guinea pigs.

The immunogenicity of recombinant treponemal antigens TmpA, TmpB and TmpC incorporated in RIBI adjuvant and injected into inbred strain 2 guinea pigs has been examined. The immune status of these animals has been challenged by infection with Treponema pallidum, Nichols. The immune response evaluated by the fluorescent-antibody test, microhemagglutination test and ELISA demonstrated high titers of antibodies to the T. pallidum antigens. The immunoblot analysis proved that the antibodies were directed to the 43-(Tmp A) 34- (Tmp B) and 35-kdalton (Tmp C) polypeptides. Antibodies cross-reacting with Treponema phagedenis biotype Reiter were, however, also detected. In spite of high titers of antibodies the animals were not protected against challenging infection with 10(8) organisms of T. pallidum.

Adjuvants, Immunologic↗

Synovial fluid T cell reactivity against 65 kD heat shock protein of mycobacteria in early chronic arthritis.

The in vitro proliferative response against a recombinant 65 kD Mycobacterium bovis protein that has 100% homology with the 65 kD protein of M tuberculosis was tested in synovial fluid and peripheral blood mononuclear cells from patients with rheumatoid arthritis (RA) and other types of chronic arthritis. An acetone precipitate (AP) of M tuberculosis, and a purified protein derivative (PPD) of M tuberculosis were also tested. Responsiveness of synovial fluid lymphocytes to the mycobacterial antigens was found both in patients with RA and in patients with other forms of chronic inflammatory arthritis, but not among controls. T cell reactivity against mycobacterial antigens was nearly always higher in synovial fluid than in peripheral blood in those patients who showed reactivity. A significant association was found between responsiveness of synovial T cells to the 65 kD protein and AP, but no relation between responsiveness to the 65 kD protein and PPD. Both the number of 65 kD protein responders and the mean proliferative response of synovial T cells to the 65 kD protein were inversely correlated with duration of joint inflammation. Thus, a 65 kD-protein-specific reactivity of synovial T cells, mainly present in an early stage of joint inflammation, may be responsible for triggering chronic arthritis.

Adolescent↗

Cloning of the mycobacterial epitope recognized by T lymphocytes in adjuvant arthritis.

Adjuvant arthritis (AA) is a chronic disease inducible in rats by immunization with an antigen of Mycobacterium tuberculosis. After the isolation of arthritogenic T-cell lines and clones, it became possible to demonstrate that the critical M. tuberculosis antigen contained an epitope cross-reactive with a self-antigen in joint cartilage. Like AA rats, patients suffering from rheumatoid arthritis demonstrated specific T-lymphocyte reactivity to the M. tuberculosis fraction containing the cross-reactive epitope. To characterize the critical M. tuberculosis epitope we used AA T-cell clones to screen mycobacterial antigens expressed in Escherichia coli and genetically engineered truncated proteins and synthetic peptides. The AA T-cell clones recognized an epitope formed by the amino acids at positions 180-188 in the sequence of a Mycobacterium bovis BCG antigen. Administration of this antigen to rats induced resistance to subsequent attempts to produce AA.

Amino Acid Sequence↗

Antigenic relatedness of a strongly immunogenic 65 kDA mycobacterial protein antigen with a similarly sized ubiquitous bacterial common antigen.

In gene libraries of Mycobacterium bovis BCG, Mycobacterium tuberculosis and Mycobacterium leprae recombinants were frequently found expressing an immunodominant 65 kDa protein antigen. In this study polyclonal and monoclonal antibodies against the 65 kDa antigen were found to react with a variety of different bacteria. Furthermore it is shown that the 65 kDa mycobacterial protein belongs to the family of antigens previously designated 'common antigen' due to their presence in a large variety of bacterial species. The molecular weight of this common antigen in 17 bacterial species was determined and it varied from 59 to 65 kDa. These bacteria included Gram-negative, Gram-positive and archae-bacteria, indicating that this antigen consists of members of an evolutionary well-conserved protein family. The 65 kDa protein was located in the cytoplasmic fraction of both Escherichia coli K12 and M. bovis BCG. Its function for the bacterial cell is presently unknown. The immunological relatedness of this common antigen to the MbaA protein might indicate a role in the etiology of rheumatoid arthritis, as was recently suggested for the mycobacterial 65 kDa antigen.

Antigens, Bacterial↗

Use of recombinant antigens expressed in Escherichia coli K-12 to map B-cell and T-cell epitopes on the immunodominant 65-kilodalton protein of Mycobacterium bovis BCG.

In gene libraries of Mycobacterium bovis BCG, Mycobacterium tuberculosis, and Mycobacterium leprae, recombinants were frequently encountered that expressed an immunodominant 65-kilodalton (kDa) protein antigen that was shown to react with a high proportion of mycobacterium-reactive human and murine T cells and murine monoclonal antibodies. In this study, recombinant antigens were used to map T-cell and B-cell epitopes on the M. bovis BCG 65-kDa protein that was previously designated MbaA. Four different T-cell-epitope-containing regions (amino acid residues 1 through 16, 17 through 61, 85 through 108, and 235 through 279) were defined that were recognized by seven T-cell clones from patients with tuberculoid leprosy. These regions are distinct from two previously described T-cell epitopes recognized by T cells from a tuberculosis patient. As T-cell clones restricted by different class II determinants were shown to be specific for different regions on the 65-kDa protein, the presented data suggested that the products of different human leukocyte antigen class II loci and alleles present different parts of MbaA to the immune system. B-cell epitopes recognized by 20 monoclonal antibodies were assigned to eight different regions of MbaA. Using 15 of these antibodies, we previously showed that MbaA was antigenically related to a common antigen present in many bacterial species. The dispersed localization of the involved epitopes defined here shows that various different parts of MbaA are indeed conserved. These results show that well-defined recombinant antigens are useful tools for the localization of both B- and T-cell-epitope-containing regions of a protein. Peptides synthesized from the sequences of such regions may then exactly define the epitopes relevant for the development of specific diagnostic tests or of vaccines against mycobacteria.

Antibodies, Bacterial↗

Characterization, sequence determination, and immunogenicity of a 64-kilodalton protein of Mycobacterium bovis BCG expressed in escherichia coli K-12.

We report the DNA sequence of a previously cloned Mycobacterium bovis BCG gene encoding an immunogenic 64-kilodalton protein. This protein, MbaA, was purified from overproducing Escherichia coli K-12 cells, and the presence of antibodies to MbaA in human sera was determined by an enzyme-linked immunosorbent assay. In about 80% of serum samples from tuberculosis patients and in about 60% of samples from BCG-vaccinated individuals, significant levels of anti-MbaA antibodies were found. Surprisingly, in about 30% of the control serum samples obtained from children, anti-MbaA antibodies were also observed. Guinea pigs sensitized with M. bovis BCG or MbaA showed a delayed-type hypersensitivity reaction after challenge with purified MbaA, supporting the previously observed strong reactivity of human T-cell clones with this, for mycobacteria, common antigen.

Animals↗

Cloning of Mycobacterium bovis BCG DNA and expression of antigens in Escherichia coli.

A gene bank of Mycobacterium bovis BCG DNA in Escherichia coli was constructed by cloning Sau3A-cleaved mycobacterium DNA fragments into the lambda vector EMBL3. The expression of mycobacterial antigens was analyzed by Western blotting with hyperimmune rabbit sera. Among 770 clones tested, several were found that produced various mycobacterial antigens in low amounts, with concentrations generally close to the detection limit. One particular clone was chosen for further investigation. This clone produced a 64-kilodalton (kDa) antigen. By placing the lambda promoter PL in front of the structural gene of this antigen, an overproducing E. coli strain was obtained. Rocket-line immunoelectrophoresis experiments showed that antigens cross-reacting with the 64-kDa protein are present in a wide variety of mycobacteria and also in so-called purified protein derivatives which are routinely used for skin tests. Preliminary experiments indicate the presence of antibodies against the 64-kDa antigen in sera from tuberculosis patients.

Antibodies, Bacterial↗

Genetic characterization and partial sequence determination of a Treponema pallidum operon expressing two immunogenic membrane proteins in Escherichia coli.

A detailed physical and genetic map of a previously cloned 5.5-kilobase segment of Treponema pallidum DNA is described. This segment expressed two proteins that are cell membrane associated in Escherichia coli. The structural genes of these treponemal membrane proteins, tmpA and tmpB, are coordinately expressed, and transcription in E. coli can start from at least two different treponemal promoters. The tmpA and tmpB proteins are the products of in vivo proteolytic cleavage from precursor proteins which are 2 and 4 kilodaltons larger, respectively, than the mature proteins. Because the sizes of the corresponding proteins produced in T. pallidum were identical to those of the mature membrane proteins in E. coli, we concluded that a similar proteolytic processing takes place in both E. coli and T. pallidum. Although tmpA and tmpB were controlled by the same transcription signals, tmpB was expressed to a higher extent than tmpA, and only the tmpB product could be overproduced by placing the left lambda promoter in front of the structural genes. The nucleotide sequence of the T. pallidum tmpA gene was established. This is the first T. pallidum gene sequenced. Codon usage and the nature of transcriptional and translational signals are discussed. The deduced amino acid sequence indicated the presence of a sequence that was characteristic for a signal peptide. This sequence information allowed the construction of hybrid genes coding for proteins having beta-galactosidase enzyme activity as well as TmpA epitopes. The enzyme-linked antigen was expressed at a high level in E. coli when transcriptional and translational signals from coliphage lambda were used. In this case the protein produced was a sandwich protein consisting of 21 amino acids of the lambda cro protein, 204 amino acids of the T. pallidum TmpA protein, and 1,020 amino acids of the E. coli lambda-galactosidase. The potential use of this enzyme-linked antigen for the serodiagnosis of syphilis is discussed.

Amino Acid Sequence↗

Monoclonal antibodies to Treponema pallidum.

Three successive fusions of mouse myeloma cells and spleen lymphocytes of a mouse immunized with Treponema Pallidum resulted in one hybridoma producing anti T. pallidum antibodies for each fusion. The mice were immunized with live pallidum cells respectively 1, 3 and 5 months before fusion and with antigen purified on density gradients 4, 3 and 2 days before fusion. Hybridomas cultures were tested for antibody production with an Enzyme Linked Immunosorbent Assay (ELISA) and a Western blotting technique. Two of the three anti T. pallidum antibody producing hybridomas were found with the ELISA, the third was found with a Western blotting technique. These hybridomas were also tested for the production of antibodies to rabbit antigens and T. phagedenis antigens in the ELISA: none appeared to be positive. Two of the hybridomas produce antibodies to a T. pallidum protein antigen of a molecular weight of 46 000: one hybridoma produces antibodies to a T. pallidum protein antigen of a molecular weight of 44 000 as determined by the Western blotting. Antibodies against these antigens are found during almost all stages of syphilis in man. One of the hybridomas produces monoclonal antibodies that react with treponemal antigen from E. coli cells, prepared by recombinant DNA technology as appeared in the Western blotting technique and this antibody will be used for purification of the 44 000 protein.

Animals↗

Penicillinase-producing gonococci in the Netherlands in 1981.

In 1981 1180 penicillinase producing strains of Neisseria gonorrhoeae (PPNG) were isolated in the Netherlands, an incidence of approximately 10% of all gonococcal isolates. Determination of the plasmid pattern of 915 of these strains brought to light important shifts of predominant plasmid patterns in a short period of time. Significant differences between the large cities point to local spread of PPNG strains from different origins. The susceptibility of the PPNG strains to clinically relevant antibiotics varied with the plasmid pattern; this stresses the necessity of permanent surveillance of gonococcal infections and of regular evaluation of the recommendations for antimicrobial treatment.

Africa↗

Molecular cloning and expression of Treponema pallidum DNA in Escherichia coli K-12.

A gene bank of Treponema pallidum DNA in Escherichia coli K-12 was constructed by cloning SauI-cleaved T. pallidum DNA into the cosmid pHC79. Sixteen of 800 clones investigated produced one or more antigens that reacted with antibodies from syphilitic patients. According to the separation pattern of the antigens produced on sodium dodecyl sulfate-polyacrylamide gels, six different phenotypes were distinguished among these 16 clones. These antigens reacted also with anti-T. pallidum rabbit serum. No antibodies against the cloned antigens were found in normal rabbit serum and in nonsyphilitic human serum. The antigens produced by the E. coli K-12 recombinant DNA clones comigrated in sodium dodecyl sulfate-polyacrylamide gels with antigens extracted from T. pallidum bacteria, suggesting that the treponemal DNA is well expressed in E. coli K-12. Several of the cosmid recombinant plasmids have been subcloned, resulting in smaller T. pallidum recombinant plasmids which are more stably maintained in the cell and produce more treponemal antigen. Monoclonal antibodies were raised against T. pallidum, and one hybridoma produced antibodies that reacted not only with an antigen from T. pallidum but also with the antigen produced by one of the E. coli clones.

Antigens, Bacterial↗