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At least 19 recordsLinked to original sources

Genetics of Treponema: characterization of Treponema hyodysenteriae and its relationship to Treponema pallidum.

Saturation reassociation assays with 125I-labeled treponemal DNAs show that Treponema hyodysenteriae is genetically unrelated to T. pallidum (Nichols), T. phagedenis biotype Reiter, and T. refringens biotype Noguchi. Pathogenic and nonpathogenic isolates of T. hyodysenteriae exhibited 28% sequence homology and had an extremely low guanine-plus-cytosine content (25.8%).

Base Sequence↗

Ultrastructural studies of treponemes: location of axial filaments and some dimensions of Treponema pallidum (Nichols strain), Treponema denticola, and Treponema reiteri.

Ultrathin sections of Treponema pallidum (Nichols strain), T. denticola (microdentium), and T. reiteri have been studied in the electron microscope to determine the location of the axial filaments and some of the dimensions of these organisms. The axial filaments of T. pallidum (Nichols strain) have been seen to be tubular in cross section with an overall diameter of 21.0 +/- 0.73 nm, and an electron-lucent core of 8.0 nm. The filaments were found to lie on the outside of the organism which had only one membranous structure surrounding the protoplasmic core. These findings were in contrast to those obtained for T. denticola and T. reiteri where the axial filaments did not exhibit a hollow core and were located between an outer membrane and an inner membrane surrounding the protoplasmic core. The outside diameter of T. denticola was determined to be 224.9 +/- 2.83 nm, and that of T. reiteri as 331.0 +/- 4.15 nm, contrasting with T. pallidum (Nichols strain) which had a diameter of 163.0 +/- 1.9 nm.

Animals↗

Evaluation of selective media for primary isolation of Treponema hyodysenteriae and Treponema innocens.

A total of 2450 samples of feces, intestinal contents and colon mucosal scrapings were bacteriologically examined. A total of 53 strains of Treponema sp. were isolated, and 45 strains of Bacteroides sp., 30 strains of E. coli, 30 strains of Micrococcus sp. and 10 strains of Streptococcus D isolates were randomly selected. Growth promoting studies showed statistically significant stimulation of Treponema sp. growth by yeast extract, chicken egg yolk and rumen fluid. Different growth inhibitors were also tested. For selective medium the following inhibitors were selected: spectinomycin, colistin, vancomycin, brilliant green. Optimal concentrations of these inhibitors in the medium were determined. Finally TSA medium supplemented with 0.05% yeast extract, 5% bovine blood, 0.01% DTT, 400 micrograms spectinomycin, and 250 micrograms/ml vancomycin, appeared to be optimal selective medium for intestinal Treponema sp. isolation. Quantitative studies showed that the number of Treponema C.F.U. on Songers et al. medium with spectinomycin and on spectinomycin-vancomycin medium, did not differ significantly. The number of overgrowing bacteria was statistically significantly lower on spectinomycin-vancomycin medium, than Songers et al. selective medium with spectinomycin. The TSA supplemented with blood, yeast extract 50 micrograms/ml of colistin and 1 microgram/ml of brilliant green was less selective than spectinomycin-vancomycin medium and inhibited some strains of Treponema sp. In the case of spectinomycin-vancomycin resistant of overgrowing bacteria, colistin-brilliant green medium may be suitable for isolation of Treponema sp.

Animals↗

Electron microscopic studies on the interaction between normal mice peritoneal phagocytes and Treponema hyodysenteriae, Treponema innocens and Bacteroides vulgatus.

One hundred and twenty female mice (CF1 strain) were divided into three groups of 40. The first group was injected intraperitoneally with broth cultures of Treponema hyodysenteriae. The second group was injected with a combination of T. hyodysenteriae and Bacteroides vulgatus. The third group was injected with Treponema innocens. Peritoneal wash from four mice of each group was collected at eight time intervals postinjection, then prepared for and examined by light and electron microscopy. Peritoneal wash from one mouse at each time interval was prepared for microbiological examination. Treponema hyodysenteriae produced peritoneal macrophage aggregation, transient neutrophilia and macrophage cytolysis. Cytolysis was characterized by rarefaction of the cytoplasm, vesiculation of the endoplasmic reticulum, mild swelling of the mitochondria and disruption of the nuclear and ctyoplasmic membranes. The combination of T. hyodysenteriae and B. vulgatus produced macrophage aggregation and marked neutrophil necrosis. Peritoneal macrophages phagocytized more T. hyodysenteriae than B. vulgatus during early postinjection intervals. Treponema innocens failed to produce cytotoxicity of peritoneal macrophages but did produce macrophage aggregation and transient neutrophilia. Treponema hyodysenteriae and T. innocens did not multiply in the mice peritoneal cavity and were reisolated up to 16 hours postinjection. Bacteroides vulgatus was reisolated up to 24 hours postinjection.

Animals↗

Immunity in experimental syphilis. IV. Serological reactivity of antigens extracted from gamm-irradiated Treponema pallidum and Treponema reiteri.

Miller, James N. (University of California School of Medicine, Los Angeles), J. H. De Bruijn, and J. H. Bekker. Immunity in experimental syphilis. IV. Serological reactivity of antigens extracted from gamma-irradiated Treponema pallidum and Treponema reiteri. J. Bacteriol. 91:583-587. 1966.-Ultrasonic lysate preparations extracted from virulent Treponema pallidum, Nichols strain, suspensions exposed to 652,800 R of gamma-irradiation exhibited a loss in the serological reactivity of their heat-labile antigens; the heat-stable components of both the lysate and residue antigens were unaffected. The activity of heat-stable, cardiolipin T. pallidum complement-fixing antigen obtained from similarly irradiated organisms was also unaltered. gamma-Irradiation of the cultivable Treponema reiteri with dosages as high as 6,500,000 R failed to alter serologically either the heat-labile or heat-stable component of its lipopolysaccharide-protein (Reiter protein) antigen. The reactivity of the lipopolysaccharide portion of the Reiter protein complex with an antiserum to T. pallidum Nichols indicates previously unsuspected antigenic differences between the rabbit-adapted Nichols strain of the organism and so-called "wild" human strains of T. pallidum in which this antigen is generally absent.

Animals↗

Reclassification of Treponema hyodysenteriae and Treponema innocens in a new genus, Serpula gen. nov., as Serpula hyodysenteriae comb. nov. and Serpula innocens comb. nov.

The intestinal anaerobic spirochetes Treponema hyodysenteriae B78T (T = type strain), B204, B169, and A-1, Treponema innocens B256T and 4/71, Treponema succinifaciens 6091T, and Treponema bryantii RUS-1T were compared by performing DNA-DNA reassociation experiments, sodium dodecyl sulfate-polyacrylamide gel electrophoresis of cell proteins, restriction endonuclease analysis of DNA, and 16S rRNA sequence analysis. DNA-DNA relative reassociation experiments in which the S1 nuclease method was used showed that T. hyodysenteriae B78T and B204 had 93% sequence homology with each other and approximately 40% sequence homology with T. innocens B256T and 4/71. Both T. hyodysenteriae B78T and T. innocens B256T exhibited negligible levels of DNA homology (less than or equal to 5%) with T. succinifaciens 6091T. The results of comparisons of protein electrophoretic profiles corroborated the DNA-DNA reassociation results. We found high levels of similarity (greater than or equal to 96%) in electrophoretic profiles among T. hyodysenteriae strains, moderate levels of similarity (43 to 49%) between T. hyodysenteriae and T. innocens, and no detectable similarity between the profiles of either T. hyodysenteriae or T. innocens and those of T. succinifaciens, T. bryantii, and Escherichia coli. Restriction endonuclease analysis of DNA was not useful in assessing genetic relationships since there was heterogeneity even between strains of T. hyodysenteriae. Partial 16S rRNA sequences of the intestinal spirochetes were determined by using a modified Sanger method and were compared in order to evaluate the phylogenetic relationships among these and other spirochetes.(ABSTRACT TRUNCATED AT 250 WORDS)

Bacterial Proteins↗

Subgingival distribution of Treponema denticola, Treponema socranskii, and pathogen-related oral spirochetes: prevalence and relationship to periodontal status of sampled sites.

Aims of this study were to comprehensively describe the intraoral distribution of the spirochete morphogroup and of 7 antigenically distinct oral treponema, and to relate their presence to periodontal status. Periodontal tissues were evaluated at 4 sites on every tooth except third molars and 76 subjects were classified according to the worst periodontal condition at any one site: Group 1, gingivitis (n = 13); Group 2, early periodontitis (n = 38); and Group 3, advanced periodontitis (n = 25). Subgingival plaque was collected from each half of every tooth evaluated clinically. Spirochetes were identified with phase contrast microscopy and specific treponema were detected immunochemically using monoclonal antibodies to Treponema denticola serovars A-D, T. socranskii subspecies bucalle, T. socranskii subspecies socranskii, and T. pallidum (pathogen-related oral spirochetes, PROS). The counting protocol was conservative and probably underestimated the actual presence of organisms. Spirochetes were found at one or more sites in approximately 60% of subjects in all groups. PROS were found in approximately 40% of subjects in all groups while T. denticola (predominantly serotype B) and T. socranskii (exclusively T. socranskii subsp. buccale) were more frequently observed in Group 2 (roughly 25% for both treponema) than in Groups 1 or 3. Overall, spirochetes were detected in less than 15% of the 4,040 sites examined. Spirochetes were found at more sites of periodontitis (group mean range 20 to 40%) than of gingivitis (6 to 20%), and were only infrequently found at sites of periodontal health (4 to 10%). Spirochetes were identified most often in plaque from around molars and they were usually found in only one of two samples from individual teeth. Results of this study suggest that although spirochetes are most often found associated with periodontitis, their distribution is restricted and most periodontitis sites do not harbor spirochetes.

Adult↗

Antigenic cross-reactivity between Borrelia burgdorferi, Borrelia recurrentis, Treponema pallidum, and Treponema phagedenis.

The antigenic cross-reactivity between different Borrelia and Treponema species was determined by the indirect immunofluorescence antibody test and sodium dodecyl sulphate-polyacrylamide gel electrophoresis followed by immunoblotting. The protein profiles of Borrelia burgdorferi, Borrelia recurrentis, Treponema pallidum, and Treponema phagedenis revealed essential differences. Using immunoblotting, rabbit immune sera to B. burgdorferi and B. recurrentis exhibited strong cross-reactivities to heterologous borrelial antigens and, to a lesser extent, to treponemal antigens. Immune sera to T. pallidum and T. phagedenis reacted with heterologous treponemal antigens, but exhibited lesser cross-reactivities to borrelial antigens. Five B. burgdorferi and seven T. pallidum major antigens were not cross-reacting with antisera raised against T. pallidum and B. burgdorferi, respectively. However, absorption of the investigated antisera with a T. phagedenis ultrasonicate eliminated cross-reacting borrelial and treponemal antibodies.

Absorption↗

Treponema phagedenis encodes and expresses homologs of the Treponema pallidum TmpA and TmpB proteins.

We cloned and sequenced the genes from Treponema phagedenis Kazan 5 encoding proteins homologous to the TmpA and TmpB proteins of Treponema pallidum subsp. pallidum Nichols (hereafter referred to as T. pallidum). Although previous reports suggested that the TmpA and TmpB proteins were specific for T. pallidum, we found that homologs for both were expressed in T. phagedenis Kazan 5 and Reiter. The TmpA protein from T. phagedenis contained the consensus sequence that bacterial lipoproteins require for posttranslational modification and subsequent proteolytic cleavage by signal peptidase II and showed 42% amino acid sequence identity with the TmpA protein from T. pallidum. The TmpB proteins of T. phagedenis and T. pallidum had similar amino acid sequences at their amino- and carboxy-terminal ends. The central portions of both of these proteins contained four repeats of the amino acid sequence EAARKAAE. The TmpB protein from T. phagedenis had an additional amino acid sequence repeat (consensus sequence KAAKE/D) that was not found in the TmpB protein from T. pallidum; this repeat was most remarkable, as it occurred 17 times in succession. These repeated amino acid sequences probably created an extensive alpha-helix region within the TmpB proteins. As with T. pallidum, the stop codon of the T. phagedenis tmpA gene overlapped the start codon of its tmpB gene. Northern blot analysis showed that the T. phagedenis tmpA and tmpB genes were probably transcribed into a single 2.5-kb mRNA molecule. Western blot (immunoblot) analysis demonstrated that both proteins were expressed by T. phagedenis. The high degree of amino acid sequence conservation seen with the TmpA and TmpB proteins from two different Treponema species suggests that they may play crucial roles in the biology of these organisms.

Amino Acid Sequence↗

The antigenic interrelationship between the endoflagella of Treponema phagedenis biotype Reiter and Treponema pallidum Nichols strain. I. Treponemicidal activity of cross-reactive endoflagellar antibodies against T. pallidum.

Treponemicidal activity against Treponema pallidum, Nichols strain, by anti-endoflagellar antibodies and the presence of antigenic interrelationships between the endoflagella of Treponema phagedenis biotype Reiter (TPR) and T. pallidum have been demonstrated. SDS-PAGE profiles of purified endoflagella from both organisms were similar, identifying five polypeptide bands for TPR (37,000, 33,000 doublet, 30,000, and 27,000 daltons) and five polypeptide bands for T. pallidum (35,000, 33,000 doublet, 30,000, and 27,000 daltons). Antiserum against TPR endoflagella identified identical bands on Western blots of TPR, T. pallidum, and the respective endoflagellar preparations. Western blots confirmed the presence of antibodies in normal human serum (NHS) against the 33,000 dalton treponemal endoflagellar proteins. The complement-dependent treponemicidal activity of NHS against T. pallidum was completely removed by absorption with purified TPR endoflagella. Furthermore, rabbit antisera against TPR endoflagella were reactive in the Treponema pallidum immobilization (TPI) test. These findings demonstrate that anti-endoflagellar antibodies are treponemicidal against T. pallidum. A possible mechanism for this activity is discussed in relation to the subsurface location of endoflagella.

Animals↗

Visualization of an extracellular mucoid layer of Treponema denticola ATCC 35405 and surface sugar lectin analysis of some Treponema species.

Slime layers and capsules are common amongst medically relevant bacteria. We herein report that Treponema denticola, which has been associated with periodontitis, synthesizes or acquires an extracellular polysaccharide layer that we have observed through electron microscopy using the polysaccharide-specific dye Alcian blue and phosphotungstate. We have also visualized this extracellular layer by dark-field microscopy of Alcian blue-stained spirochete cells. A representative strain of each of the oral spirochete species T. denticola, Treponema vincentii and Treponema socranskii were differentiated by concanavalin A, phaseolus, lotus A and arachis lectins in a microtiter plate immunoassay for the detection of surface sugars.

Bacterial Capsules↗

Description of Treponema azotonutricium sp. nov. and Treponema primitia sp. nov., the first spirochetes isolated from termite guts.

Long after their original discovery, termite gut spirochetes were recently isolated in pure culture for the first time. They revealed metabolic capabilities hitherto unknown in the Spirochaetes division of the Bacteria, i.e., H(2) plus CO(2) acetogenesis (J. R. Leadbetter, T. M. Schmidt, J. R. Graber, and J. A. Breznak, Science 283:686-689, 1999) and dinitrogen fixation (T. G. Lilburn, K. S. Kim, N. E. Ostrom, K. R. Byzek, J. R. Leadbetter, and J. A. Breznak, Science 292:2495-2498, 2001). However, application of specific epithets to the strains isolated (Treponema strains ZAS-1, ZAS-2, and ZAS-9) was postponed pending a more complete characterization of their phenotypic properties. Here we describe the major properties of strain ZAS-9, which is readily distinguished from strains ZAS-1 and ZAS-2 by its shorter mean cell wavelength or body pitch (1.1 versus 2.3 micro m), by its nonhomoacetogenic fermentation of carbohydrates to acetate, ethanol, H(2), and CO(2), and by 7 to 8% dissimilarity between its 16S rRNA sequence and those of ZAS-1 and ZAS-2. Strain ZAS-9 is proposed as the type strain of the new species, Treponema azotonutricium. Strains ZAS-1 and ZAS-2, which are H(2)-consuming, CO(2)-reducing homoacetogens, are proposed here to be two strains of the new species Treponema primitia. Apart from the salient differences mentioned above, the genomes of all three strains were similar in size (3,461 to 3,901 kb), in G+C content (50.0 to 51.0 mol%), and in possession of 2 copies of the gene encoding 16S rRNA (rrs). For comparison, the genome of the free-living spirochete Spirochaeta aurantia strain J1 was analyzed by the same methods and found to have a size of 3,719 kb, to contain 65.6 mol% G+C, and also to possess 2 copies of the rrs gene.

Animals↗