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Biomedical subjects

P Toivanen

Publications and source records attributed to P Toivanen.

At least 145 records · Page 8Linked to original sources

Molecular mimickry between HLA B27 and Yersinia, Salmonella, Shigella and Klebsiella within the same region of HLA alpha 1-helix.

Two new examples of amino acid homology between HLA B27 and microbes triggering HLA B27-associated diseases are described. An outer membrane protein YadA (Yersinia adhesin, previously called Yop1) of Yersinia enterocolitica and Y. pseudotuberculosis shares a linear tetrapeptide with HLA B27. A cationic outer membrane protein OmpH of Salmonella typhimurium shares homology with five amino acids of HLA B27 in a non-linear fashion. The four amino acids of YadA are also notably included in the hexapeptide identical between Klebsiella pneumoniae nitrogenase and HLA B27, and three of them occur in the pentapeptide shared by a Shigella flexneri protein and HLA B27. Antibodies against synthetic peptides including HLA B27 homologues sequences of YadA and OmpH were observed in one-third of the patients with HLA B27 associated diseases. Antibodies were directed against a flanking sequence next to the amino acid sequences shared by arthritis-triggering microbes and HLA B27. The area of identity in each example of this molecular mimicry (Yersinia, Salmonella, Shigella and Klebsiella) is located in the same place on the HLA B27 molecule: between amino acids 70 to 78 in the variable region of alpha 1-helix. This area of HLA B27 molecule includes sites predicted to be important for binding processed antigens.

Adhesins, Bacterial↗

Intervening sequences (IVSs) in the 23S ribosomal RNA genes of pathogenic Yersinia enterocolitica strains. The IVSs in Y. enterocolitica and Salmonella typhimurium have a common origin.

The 23S ribosomal RNA (rRNA) was shown to be in two fragments in pathogenic Yersinia enterocolitica. The cleavage site in the structural gene of the 23S rRNA was occupied by an intervening sequence (IVS) of about 100 nucleotides, analogous to IVSs found in salmonellae (Burgin et al., 1990). Nucleotide sequences of IVSs of several Y. enterocolitica strains revealed that the IVSs of the highly virulent Y. enterocolitica serotypes strains, and the IVS of Salmonella typhimurium were about 90% similar. On the other hand, the IVSs of the highly and the poorly virulent Y. enterocolitica serotypes were only about 60% similar. These results give the impression that at some point during the IVS evolution, the highly virulent Y. enterocolitica and S. typhimurium both received their IVSs at about the same time from the same source, and that the poorly virulent serotypes received their IVSs earlier. We also found that strain LB5010, derived by extended mutagenization of S. typhimurium LT2, had lost the IVSs originally present in LT2, and that this loss had created a new 'hairpin loop' which substituted for the original 'hairpin loop'.

Base Sequence↗

D-D recombination diversifies the CDR 3 region of chicken immunoglobulin heavy chains.

The occurrence of D-D recombination during the embryonic differentiation of chicken B cells was studied. Ig heavy (H) chains were amplified by polymerase chain reaction from day-12 bursal cDNA, and 30 random V-D-J regions were analysed by DNA sequencing. No gene conversion events were observed in any of the V regions, indicating that diversification of the H chains by gene conversion is not yet activated at this stage of embryonic B-cell development. In contrast, the V-D-J joint regions were extremely heterogeneous. Most of the sequenced V-D-J joints were formed by direct joining of the single-germline V mu 1 gene, one of the multiple-germline D elements, and the single J gene. However, three V-D-J regions were clearly longer in size, and their D-region structure indicated recombination between two or three different germline D elements. Thus, the present data suggest that D-D recombination may have a role in diversification of the Ig H-chain repertoire.

Animals↗

Intracellular pathogens and professional phagocytes in reactive arthritis.

Reactive arthritis is a postinfectious complication which develops after certain infections, mostly gastrointestinal or urogenital. Antigenic structures of the causative microbes, but no live organisms, have been demonstrated in inflamed joints. The host factors as well as the microbial antigens responsible for the initiation of the arthritic process are unknown. The pathogenesis of reactive arthritis is discussed here with special reference to the intracellular life of the causative microbes and to monocytes/macrophages, which may be involved in early events of the arthritic process as well as in maintenance of the autoimmune type of responses.

Antigens, Bacterial↗

Risk of Yersinia infection among butchers.

The purpose of this study was to evaluate the risk of yersinia infection among butchers. Serum samples were collected from 146 abattoir workers, stratified into 3 groups according to exposure to swine throats and intestines. 100 healthy blood donors were used as controls. Antibodies against Yersinia enterocolitica O:3 and O:9 and Y. pseudotuberculosis I and III were measured using ELISA. Symptoms associated with yersiniosis were recorded in a questionnaire. Antibodies against Y. enterocolitica O:3 were observed more often in the sera of abattoir workers (19%), especially in butchers handling swine throats and intestines (27%), than in the sera of healthy blood donors (10%). During the 6 months preceding this study, 30-40% of the workers reported symptoms of abdominal pains and diarrhoea. However, the symptoms did not correlate with the occurrence of antibodies. One butcher had developed a yersinia-triggered prolonged reactive arthritis. Tonsil samples were collected from 120 pigs to determine the extent of yersinia contamination. Positive isolates were obtained from 54 pigs (45%). Y. enterocolitica O:3 was isolated from 31 pigs and Y. pseudotuberculosis III from 11 pigs. All of these strains shared characteristics typical for virulent strains. We conclude that yersinia infections are an occupational health risk to workers slaughtering swine in the abattoirs.

Abattoirs↗

Bacterial antibodies in ankylosing spondylitis.

Antibodies to Salmonellae, Yersiniae, Campylobacter jejuni, Borrelia burgdorferi, Klebsiella pneumoniae, Escherichia coli, Proteus mirabilis and Chlamydia trachomatis were measured by ELISA in the sera of 99 patients with ankylosing spondylitis. Increased prevalence of IgA and IgG class antibodies against K. pneumoniae and of IgA class against E. coli was observed in ankylosing spondylitis. No clear correlation between the disease activity and occurrence of antibodies was revealed. The results are in line with the previously published findings suggesting that K. pneumoniae may have a role in the aetiopathogenesis of ankylosing spondylitis.

Adolescent↗

Bursectomy of chicken embryos at 60 hours of incubation leads to an oligoclonal B cell compartment and restricted Ig diversity.

Chickens that have been surgically bursectomized at 60 h of embryonic development usually generate Ig producing B cells; however, the bursectomized chickens are incapable of specific antibody responses, even after repeated immunization. In the present work, we analyzed the molecular basis of this immunodeficiency. In the bursectomized chickens, DNA sequencing revealed a repertoire of Ig L and H chains with a low number of different V-J and V-D-J joints, indicating an oligoclonal B cell compartment. In addition, the L and H chains belonging to each B cell clone had similar gene conversion events in the V region. In situ hybridization to Harderian gland tissue sections showed, that B cells of the bursectomized chickens were, however, capable of terminal plasma cell maturation. Thus, in chickens that were lacking the bursal microenvironment, 1) only a few B cell precursors differentiated into mature Ig-producing B cells, 2) low rate of gene conversion resulted in restricted Ig diversity. Regarding the chicken B cell differentiation, the present data support a model that the induction of B cell differentiation is a bursa-independent event, whereas the bursa of Fabricius has a crucial role in the amplification and diversification of the embryonic B cell repertoire.

Amino Acid Sequence↗

Nurse cells of the bursa of Fabricius: do they exist?

Cell-cell interactions in B lymphocyte development have so far been incompletely characterized, mostly due to lack of a special organ for B cell maturation in the mammalian species. Certain well-known lymphostromal interactions in the thymus have raised the question whether similar interactions with nurse cells would also operate in the development of B cells. We have tested this hypothesis in the chicken bursa of Fabricius, an organ specific for the B cell maturation. To identify possible nurse cells, with viable lymphocytes enclosed, the cells in the bursa of Fabricius were dispersed with collagenase and trypsin. Light and electron microscopic examination of bursa cell suspensions showed four types of aggregates, identified by low magnification light microscopy as potential nurse cell-like complexes. Electron microscopy revealed that all aggregates consisted of epithelial cells, and complexes of epithelial cells with lymphocytes enclosed were not observed. These findings indicate that interactions similar to those seen in the avian and mammalian thymus between epithelial nurse cells and T lymphocytes are not a part of the avian B cell differentiation process.

Animals↗

Rearrangement of immunoglobulin light chain genes in the chicken occurs prior to colonization of the embryonic bursa of Fabricius.

We have applied polymerase-chain-reaction-directed immunoglobulin gene analysis to study the embryonic differentiation of chicken B cells. Immunoglobulin light chain DNA segments in the rearranged configuration were amplified from cells of the intraembryonic mesenchyme as early as day 7 of incubation. We showed by sequencing that the rearranged variable region genes in these early B-cell progenitors were not different from the germ-line V lambda 1 gene (the single functional light chain variable region gene in chickens). In the bursal B lymphocytes, on the other hand, clear gene conversion events were first observed at day 15 of embryonic development. The present data indicate that rearrangement of light chain genes in the chicken occurs independently of the bursa of Fabricius and that diversification of the variable region begins only later, when the surface immunoglobulin-positive B cells are proliferating in the bursal follicles.

Animals↗

The lcrE gene is part of an operon in the lcr region of Yersinia enterocolitica O:3.

The low-calcium response (lcr) region of the virulence plasmid of Yersinia pestis, Yersinia pseudotuberculosis, and Yersinia enterocolitica has been associated with calcium-dependent growth of bacteria. Mutations in the previously identified lcrE locus within the lcr region lack the repressor control of production of the lcr specific proteins, Yersinia outer membrane proteins (Yops) and V and W antigens. We sequenced a 3.3-kilobase-pair BamHI-ClaI fragment of the lcrE locus of pYVO3, the virulence plasmid of Y. enterocolitica O:3. The sequence of lcrE locus revealed six tightly packed open reading frames (ORFs), one of which was identified as the structural gene, lcrE, of the 32.9-kilodalton outer membrane protein LcrE (formerly known as Yop4b or YopN). Detection of large (greater than 2.3-kilobase-pair) transcripts strongly supports the conclusion that the lcrE gene and ORF1 to -5 function as an operon. Transcription of the lcrE-containing operon and the adjacent lcrB locus was found to be divergent, and the corresponding transcripts overlapped about 1,200 nucleotides. This extremely long overlap of the 5' ends of the transcripts produced from face-to-face promoters is a new finding; the longest overlap thus far found has been a few hundred nucleotides. Temperature was found to play the major role in regulation of transcription of the lcrE-containing operon of pYVO3, whereas Ca2+ concentration seemed to affect it only moderately.

Amino Acid Sequence↗

B cell maturation in the chicken Harderian gland.

We have characterized maturation of B lymphocytes in the chicken Harderian gland. Expression of Ig genes was studied by using lambda L and mu H chain-specific DNA probes. In unstimulated chickens, the concentration of mu H chain and lambda L chain mRNA in the Harderian gland was observed to be greater than 8 times higher than in the bursa of Fabricius or spleen. By using in situ hybridization, the plasma cells expressing mu mRNA were located in central area of the gland packed around the tubules. Antibodies produced by the Harderian plasma cells were measured from the tears before and after antigenic stimulation. In unstimulated chickens high levels of total IgM, IgA, and IgG were observed. After ocular stimulation with tetanus toxoid, specific antitetanus IgG and IgA antibodies appeared in the tears but IgM antibodies were barely detectable. These results indicate that after antigenic stimulation the Harderian B cells rapidly mature through IgM secretion to the production of IgG or IgA. Southern blot analysis of the Harderian total genomic DNA showed strong rearrangement in the lambda L chain locus. In contrast, the band indicating major rearrangement in the mu H chain locus gave a very poor hybridization signal, indicating deletion of C mu genes in the Harderian gland DNA. As a conclusion, our present data indicate for the Harderian gland a role in terminal B cell differentiation and Ig class switch.

Animals↗

Tolerance to class I major histocompatibility complex antigens in chicken B cell chimeras. Effect of B cell depletion on transferability of tolerance.

B cells from bursa of Fabricius of newly hatched chickens are able to reconstitute the B cell compartment of chemically bursectomized chickens. The resulting B cell chimerism can be detected with monoclonal antibodies against donor B cell alloantigen. Chimeric chickens accept donor-type skin grafts and are unresponsive to donor major histocompatibility complex (MHC) antigens in graft-vs.-host splenomegaly assay and mixed lymphocyte reaction. To study the capability of B cells to induce tolerance to selected MHC antigens, we transplanted class I or total MHC-incompatible bursa cells into cyclophosphamide-treated recipients. The recipients of class I or total MHC-incompatible bursa cells were equally tolerant of donor-MHC antigens. To further analyze the mechanisms of tolerance to class I antigens vs. total MHC, spleen cells from tolerant chickens were transferred to irradiated, histocompatible secondary hosts. The secondary recipients were also unresponsive to bursa cell donor-strain MHC antigens. However, if the chimeric B cells were depleted before the spleen cell transfer, the transfer of tolerance to total MHC was severely inhibited. Instead, most recipients of B cell-depleted spleen cells tolerant of class I antigens were still tolerant of bursa cell donor MHC. Our results indicate differences in the transferability of tolerance to class I antigens vs. entire MHC, although in primary recipients of bursa cells the tolerance is similar. These data suggest that a mechanism that is not dependent on the presence of donor cell chimerism contributes to the maintenance of tolerance to donor class I antigens. The transfer of tolerance to total MHC disparity requires the presence of chimeric cells indicating that donor alloantigen expression is needed for induction of tolerance in the secondary hosts.

Animals↗