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Typing of Australian isolates of Treponema hyodysenteriae by serology and by DNA restriction endonuclease analysis.

A total of 91 isolates of Treponema hyodysenteriae which were obtained from 62 piggeries located around Australia were typed by serology and by DNA restriction endonuclease analysis (REA). The isolates fell into eight serogroups, of which groups B and D were the most common. Isolates with different REA patterns were recognised within serogroups, whilst a few isolates with the same REA pattern were placed into different serogroups. Some of the latter isolates were either from the same piggery or from farms with epidemiological links, thus indicating the bacteria may have altered their antigenic properties. A total of 31 different REA patterns were recognised amongst the Australian isolates. These comprised eight major patterns, with four of these being subdivided on the basis of minor differences in banding. Where a number of isolates were obtained from individual piggeries these all had the same REA pattern, and in one piggery isolates with the same pattern were recovered over a five year period. Plasmid bands were observed in 70 of the Australian isolates (77%), and in six of the seven overseas isolates included in the study for comparison. These plasmids did not affect the REA pattern. Of the States from which substantial numbers of isolates were examined, the greatest number of different strains (12 amongst 19 piggeries) were found from Victoria, and there were 10 REA patterns in strains from 24 piggeries in Queensland. Despite the large total number of different strains of T. hyodysenteriae in Australia, only three were found in more than one State.

Animals↗

Treponema denticola as a model for polar adhesion and cytopathogenicity of spirochetes.

Recent studies suggest that the tip-oriented adhesion of Treponema denticola is a consequence of polar clustering of its adhesins on contact with the substratum and is compatible with viability. Such adhesion to cells stimulates a host of cytoskeletal and volume regulatory changes. These studies may give insight into mechanisms of colonization and cytopathogenicity of other pathogenic spirochetes.

Bacterial Adhesion↗

Bejel: acquirable only in childhood?

Bejel clearly has a long history in the Middle East and the Sudan, but was it transmitted to Europe? As the major manifestation of bejel is presence of periosteal reaction in 20-40% of afflicted populations, absence of significant population frequency of periosteal reaction in Europe would exclude that diagnosis. Examination of skeletal populations from continental Europe revealed no significant periosteal reaction at the time of and immediately subsequent to the Crusades. Thus, there is no evidence for bejel in Europe, in spite of clear contact (the mechanism of bejel transmission in children) between warring groups, at least during the Crusades. This supports the hypothesis that bejel is a childhood-acquired disease and apparently cannot be contracted in adulthood.

Africa↗

Characterization of the agent of swine dysentery based on deoxyribonucleic acid homology.

Chromosomal deoxyribonucleic acids (DNAs) of five strains formally assigned to Treponema hyodysenteriae and Treponema innocens have been compared. The results of DNA-DNA-hybridization indicate that all the strains belong to the same species. The very low guanine-plus-cytosine values between 24.7 and 29.7 mol% are regarded as further evidence in favour of the reclassification of the swine dysentery agent as Borrelia hyodysenteriae (comb. nov. Blaha).

Animals↗

A 43-kDa protein of Treponema denticola is essential for dentilisin activity.

A protease of Treponema denticola, dentilisin, is thought to be part of a complex with 43- and 38-kDa proteins. A sequence encoding a 43-kDa protein was located in the 3' region of the prcA gene upstream of the dentilisin gene (prtP). The 43-kDa protein was apparently generated from digestion of PrcA. To clarify the function of the protein, we constructed a mutant of the 43-kDa protein following homologous recombination. The mutant lacked detectable dentilisin activity. Immunoblot analysis demonstrated that the dentilisin protein was degraded in the mutant. The results of real-time polymerase chain reaction suggested that prtP mRNA expression in the mutant was somewhat decreased compared with the wild-type strain. These data suggest that the 43-kDa protein is involved in the stabilization of the dentilisin protein.

Bacterial Proteins↗

Molecular characterization of a chemotaxis operon in the oral spirochete, Treponema denticola.

A chemotaxis gene cluster from Treponema denticola (Td), a pathogenic spirochete associated with human periodontal diseases, was cloned, sequenced, and analyzed. The gene cluster contained three chemotaxis (che) genes (cheA, cheW, and cheY) and an open reading frame (cheX) that is homologous with Treponema pallidum (Tp) and Borrelia burgdorferi (Bb) cheX. The Td che genes have the same transcriptional orientation with a sigma 70-like promoter located upstream of cheA and a stem-loop structure characteristic of a Rho-independent transcriptional terminator downstream of cheY. Primer extension analysis identified a transcriptional start point six nucleotides (nt) downstream of the -10 (TAAAAA) promoter sequence. Reverse-transcriptase-polymerase chain reaction (RT-PCR) data indicated that cheA through cheY are co-transcribed and suggested that transcription is terminated after cheY. The gene organization of the Td che operon is identical to that of the Tp che operon. Southern blot analysis indicated the presence of one copy of each che gene on the Td genome. The cheA, cheW, cheX, and cheY genes are 2403, 1332, 462, and 438nt long, respectively, and encode proteins with predicted molecular masses of 88.2, 49.7, 16.8, and 16. 0kDa, respectively. Functional domains of the T. denticola CheA and CheY proteins are highly conserved with those of the Escherichia coli (Ec) CheA and CheY proteins. Phylogenetic analysis of Td CheY indicated that it is closely related to Tp CheY and Bb CheY3.

Amino Acid Sequence↗

A spirochete isolated from a case of severe virulent ovine foot disease is closely related to a Treponeme isolated from human periodontitis and bovine digital dermatitis.

The isolation of spirochetes from severe ovine foot disease has been reported recently by our research group. In this study we describe the preliminary classification of this spirochete based on nucleotide sequence analysis of the PCR-amplified 16S rRNA gene. Phylogenetic analysis of this sequence in comparison with other previously reported 16S rRNA gene sequences showed that the spirochete belonged to the treponemal phylotype Treponema vincentii which has been associated with bovine digital dermatitis and human periodontal disease. Further work is required to define the common virulence determinants of these closely related treponemes in the aetiology of these tissue destructive diseases.

Animals↗

The frequent detection of a treponeme in bovine digital dermatitis by immunocytochemistry and polymerase chain reaction.

A study was carried out to determine whether spirochaetes are frequently associated with digital dermatitis in United Kingdom (UK) dairy cattle. Histopathological examination of lesions using a silver stain showed a large number of unidentified spirochaete-like organisms present in digital dermatitis hoof skin tissue in all examined biopsies. Immunocytochemical staining demonstrated that spirochaetes in skin lesions were identified by polyclonal antisera to Borrelia burgdorferi, Treponema denticola and Treponema vincentii (again all biopsies were positively stained), whereas monoclonal antibodies to B. burgdorferi and any Treponema pallidum did not stain any organisms in all biopsies. A PCR of 16S rRNA, previously shown to be specific for a new treponeme, was employed and produced positive results from 82.4% of digital dermatitis tissues. It is concluded that this spirochaete (or related spirochaetes), which is similar to human oral treponemes, is frequently associated with, and may be responsible for, pathological changes in digital dermatitis.

Animals↗

Analysis of lipopolysaccharide antigens of Treponema hyodysenteriae.

Lipopolysaccharide (LPS) extracts obtained from Treponema hyodysenteriae of serogroups A, B, D and E, and from T. innocens were examined by SDS-polyacrylamide gel electrophoresis (SDS-PAGE), silver-staining, and immunoblotting with hyperimmune rabbit sera. All organisms possessed multiple LPS bands, but their position and number differed. Immunoblotting of LPS with grouping sera identified three or four major antigenic LPS components in the 10-42 kDa range in all organisms: these components were largely specific to each type-organism of a serogroup, and presumably represented group antigens. Although some minor cross-reactivity occurred between LPS from organisms in the different groups, this was insufficient to merit changes to the current LPS serogrouping system for T. hyodysenteriae. Besides this LPS 'complex', other higher-molecular-weight material which appeared to be a common component of the treponemes examined was present in low concentrations. Organisms with different serotypes within a serogroup apparently possessed common LPS bands, but also had unique LPS bands which may account for their serotype specificity. One 'untypable' organism lacked group-specific LPS and was thought to be a mutant of a group B organism. The loss of serogroup LPS by the isolate suggested that this material is an external component of the cell wall. The availability of an atypical organism lacking LPS components may facilitate further studies on the pathogenesis of swine dysentery.

Animals↗

Analysis of gene expression in Treponema denticola with differential display polymerase chain reaction.

Treponema denticola is an oral spirochete associated with the periodontal diseases. A great deal of the molecular components of T. denticola will be learned soon since its genome sequence project is on the way. One of the most important works after genome sequence is to analyze the function of these genes and their regulation. However, like many other oral pathogens, there are currently a very limited number of molecular and genetic tools available to study gene expression in T. denticola. In this article, we describe a method of adapting differential display polymerase chain reaction (ddPCR) for use in the T. denticola system. To test for effectiveness of this protocol, we used three different temperature conditions, 4 degrees C, 25 degrees C and 42 degrees C, to test for differential gene expression. With various ddPCR conditions, we found a number of genes that were expressed differentially. Some of these differentially expressed genes were cloned and sequenced and found to be homologous with the known temperature-regulated genes, including HtrA. The study indicates that the ddPCR method can be effectively used in T. denticola for analyzing gene expression under various conditions.

Bacterial Proteins↗

Inability of intact cells of Treponema denticola to degrade human serum proteins IgA, IgG and albumin.

Treponema denticola has been shown to be associated with periodontitis in man and animals. The organism ferments amino acids and thrives on the proteins in the periodontal pocket. Accordingly, T. denticola possesses various proteolytic enzymes, including a chymotrypsin-like protease, capable of hydrolyzing a whole range of proteins, including immunoglobulins. Yet, it is not clear whether the intact cells of T. denticola can degrade immunoglobulins and albumin. The purpose of this study was to clarify this point. Three strains of T. denticola were cultured in liquid medium, and cells were harvested by centrifugation. Protein degradation in cell suspensions was assayed by capillary electrophoresis and immunonephelometry. None of the T. denticola strains appeared to be able to degrade IgA, IgG, or albumin, while a strain of P. gingivalis completely hydrolyzed these proteins. The findings suggest that, in the periodontal pocket, T. denticola depends on proteinases from other bacteria for utilization of the available serum proteins. This is in accordance with clinical data showing a close relationship between T. denticola and strongly proteolytic bacteria, such as Porphyromonas gingivalis and Bacteroides forsythus.

Bacteroides↗

From tooth to hoof: treponemes in tissue-destructive diseases.

With the advent of new molecular and immunological tools, there is better understanding of the roles that difficult to cultivate bacteria, and not-yet-cultivated bacteria such as spirochaetes, play in polymicrobial diseases. Only relatively recently have studies implicated Treponema spirochaetes in human periodontal disease, a destructive condition of the tissues supporting the teeth. A number of different Treponema species have been isolated and their surface protein components that mediate adhesion, cytotoxicity, and tissue damage have been characterized. More recently Treponema strains closely related to human oral isolates have been cultivated from active lesions of digital dermatitis, an ulcerative condition affecting the feet of cows and sheep. This condition, like periodontal disease, appears to have a polymicrobial aetiology in which enrichment for Treponema may play a crucial part. This article reviews the known mechanisms by which Treponema interact with eukaryotic host cells and tissue proteins, and how these interactions may contribute to pathogenic diversity.

Animals↗

[Syphilis and human treponemes: a long evolutionary history revealed by paleogenomics].

Recent discoveries in paleogenomics have revolutionized our understanding of syphilis and other human treponematoses. Far from being a pathogen that suddenly appeared in Europe in the late Middle Ages, we now know that Treponema pallidum has been circulated among human populations for millennia. Ancient genomes recovered from pre-Columbian contexts in the Americas show that major treponemal lineages had already diversified well before the modern era, often in the absence of recognizable skeletal lesions. Genomic analyses further indicate that treponemal diversity is not the result of extensive genetic acquisition, but rather of small-scale modulation of a highly conserved genome, notably via antigenic variation involving the tpr gene family. Combined with data on endemic treponematoses, congenital syphilis, and historical pathology collections, these findings support a model in which syphilis, yaws, and bejel represent context-dependent expressions of an ancient treponemal continuum, with implications for diagnosis, epidemiology, and vaccine design.

Humans↗

Swine dysentery in a sow herd. II. Comparison of a direct fluorescent antibody test with selective culture in the laboratory diagnosis.

During and after an outbreak of swine dysentery (Doyle) two diagnostic techniques were compared: a direct fluorescent antibody test and a selective culture method. The latter was more sensitive, provided the animals were not medicated and the samples were processed on the day of collection. The widespread use of chemoprophylaxis makes selective culture as a diagnostic aid under Dutch conditions highly impractical.

Animals↗

Treponema maltophilum sp. nov., a small oral spirochete isolated from human periodontal lesions.

A novel culture medium for cultivation of fastidious oral anaerobes is described. This medium, OMIZ-Pat, consists of a rich chemically defined basal medium supplemented with asialofetuin, as well as yeast extract and Neopeptone fractions. Addition of 1 mg of rifampin per liter and 100 mg of fosfomycin per liter allowed routine isolation of spirochetes by a limit dilution method in 96-well plates containing liquid OMIZ-Pat. In addition to members of the four previously recognized species of oral treponemes (Treponema denticola, Treponema pectinovorum, Treponema socranskii, and Treponema vincentii), 26 previously undescribed spirochete strains belonging to one group were isolated. We propose the name Treponema maltophilum sp. nov. for these small spirochetes, which have two endoflagella; one endoflagellum is attached at each cell pole, and the endoflagella overlap in the middle of the cell. Growth of these organisms was dependent on a carbohydrate like D-arabinose, L-fucose, D-maltose, L-rhamnose, D-ribose, D-sucrose, or D-trehalose and was inhibited by fetal bovine serum. T. Maltophilum is distinguished from other oral Treponema species by its 16S rRNA sequence, its protein and antigen patterns as determined by sodium dodecyl sulfate-polyacrylamide gel electrophoresis and immunoblotting, and its characteristic alpha-glucosidase activity. The strains included in the new species on the basis of their 16S rRNA sequences are heterogeneous with respect to their alpha-fucosidase, and beta-glucuronidase activities, their dependence on N-acetylglucosamine, and their antigens as detected with patient antibodies. Strain BR is designated the type strain, and strains HO2A and PNA1 are reference strains of the new species.

Antibodies, Bacterial↗

Spirochetes from digital dermatitis lesions in cattle are closely related to treponemes associated with human periodontitis.

Digital dermatitis (DD), first described in 1974 by Cheli and Mortellaro (R. Cheli and C. Mortellaro, p. 208-213, in Proceedings of the 8th International Conference on Diseases of Cattle, 1974), is a major problem in diary cows and beef cattle causing significant economic losses worldwide. Lesions are typically found at the volar skin proximal to the heel bulbs. Microscopic examination of biopsies or touch preparations of these lesions revealed a variety of different bacterial morphotypes including significant numbers of spirochetes which often represent the predominant morphotype. We used comparative 16S rRNA sequence analysis to determine the diversity and phylogeny of these hitherto unclassified DD spirochetes. Results indicate that those lesions looked at so far contained at least five spirochetal phylotypes, all clustering within the genus Treponema. Phylotype DDKL-4 was nearly identical (99.4% similarity) to that of a nonpathogenic human treponeme, T. phagedenis. Two phylotypes DDKL-3 and DDKL-13 were closely related to those from treponemes commonly found in human periodontitis lesions, i.e., T. denticola and T. vincetii, exhibiting 95 and 98% similarity, respectively. The other two phylotypes, DDKL-12 and DDKL-20, had no close relatives to any cultivable treponemal species but clustered to previously described group IV oral treponemes. Preliminary analysis using in situ hybridization with fluorescently labeled oligonucleotide probes against smears from DD biopsies revealed that from all lesions analyzed so far, T. denticola-like spirochetes were detected in the highest proportion of all spirochetal morphotypes.

Animals↗

Treponema lecithinolyticum sp. nov., a small saccharolytic spirochaete with phospholipase A and C activities associated with periodontal diseases.

Strong phospholipase A (PLA) and phospholipase C (PLC) activities as potential virulence factors are the outstanding characteristics of eight strains of small oral spirochaetes isolated from deep periodontal lesions. By qualitative dot-blot DNA-DNA hybridization and 16S rDNA sequence comparison, these spirochaetes form a distinct phylogenetic group, with Treponema maltophilum as its closest cultivable relative. Growth of these treponemes, cells of which contain two endoflagella, one at each pole, was autoinhibited by the PLA-mediated production of lysolecithin unless medium OMIZ-Pat was prepared without lecithin. N-Acetylglucosamine was essential and D-ribose was stimulatory for growth. All isolates were growth-inhibited when 1% foetal calf serum was added to the medium. Growth on agar plates supplemented with human erythrocytes produced haemolysis. In addition to PLA and PLC, the new isolates displayed strong activities of alkaline and acid phosphatases, beta-galactosidase, beta-glucuronidase, N-acetyl-beta-glucosaminidase and sialidase, intermediate activities of C4- and C8-esterases, naphthol phosphohydrolase and alpha-fucosidase and a distinctive 30 kDa antigen detectable on Western blots. This phenotypically and genotypically homogeneous group is proposed as a novel species, Treponema lecithinolyticum sp. nov., with isolate OMZ 684T designated as the type strain. A molecular epidemiological analysis using a T. lecithinolyticum-specific probe showed this organism to be associated with affected sites when compared with unaffected sites of periodontitis patients. This association was more pronounced in patients with rapidly progressive periodontitis than in those with adult periodontitis.

Adult↗

Treponema parvum sp. nov., a small, glucoronic or galacturonic acid-dependent oral spirochaete from lesions of human periodontitis and acute necrotizing ulcerative gingivitis.

Small oral spirochaetes with a strict dependence on either glucuronic acid (GluA) or galacturonic acid (GalA) were isolated from European patients with periodontitis and from Chinese patients with either gingivitis or acute necrotizing ulcerative gingivitis (ANUG). Thirteen such isolates were similar phenotypically to Treponema pectinovorum ATCC 33768T and this classification was confirmed by 16S rRNA sequencing. However, four isolates differed from T. pectinovorum by their small cell size, by a prominent beta-glucuronidase activity, by a distinct protein and antigen profile, by an inability to grow on pectin as sole source of carbohydrate and by a markedly enhanced growth rate when supplied with a second carbohydrate (L-arabinose, D-galactose, D-glucose, D-fructose, D-mannitol, D-mannose, pectin, D-ribose or D-xylose) in addition to the essential GluA/GalA. By 16S rRNA sequencing these four isolates clustered in the recently described phylotype 'Smibert-2'. T. pectinovorum (14 strains) and 'Smibert-2' (four isolates with beta-glucuronidase activity) could each be subdivided into two serotypes based on immunoblot reactivity with two mAbs. Representatives of the two groups, including T. pectinovorum ATCC 33768T, showed a 1:2:1-type periplasmic flagellar arrangement. 'Smibert-2' is described as a novel species, Treponema parvum sp. nov., with isolate OMZ 833T (= ATCC 700770T) proposed as the type strain and OMZ 842 (= ATCC 700773) as reference strain for a second serotype.

Acute Disease↗