Joint disease ankylosing enthesopathy (ANKENT) naturally occurs in inbred mice with C57Bl/10 genetic background. ANKENT has many parallels to human ankylosing spondylitis (AS) and represents an animal model for AS. Environmental conditions (i.e., microbial load of the organism) are among the risk factors for ANKENT, similar to AS. The role of microflora in the development of ANKENT was investigated. ANKENT was tested in four experimental groups of germ-free mice associated with different numbers of various intestinal microbes and three control groups: germ-free, specific pathogen-free, and conventional (CV) mice. Mice were colonized either with anaerobic bacteria isolated from the intestine of a CV mouse or with bacterial strains obtained from the collection of microorganisms. Microbes were characterized and checked by microbiological cultivation methods and with the use of polymerase chain reaction amplification and rDNA sequence analysis. Joint disease developed in GF mice colonized with a mixture containing Bacteroides spp. and Enterococcus sp., and/or Veillonella sp. and Staphylococcus sp. No ANKENT appeared in males colonized with probiotic bacterium Lactobacillus sp. In control groups ANKENT occurred in SPF and CV animals; the GF animals remained healthy. The results confirmed that the germ-free conditions protect from joint inflammation, and thus microbes are necessary for ANKENT development. In colonized mice the ANKENT was triggered by luminal anaerobic bacteria, which are common components of intestinal microflora.
HLA-B27 is a relative risk factor for ankylosing spondylitis (AS) and is present in about 10% in European populations but in 95% of AS patients. Various data suggest that the HLA-B27 molecule itself could be the strongest risk factor, but there is no explanation for this association. To define differential antigen presenting features of HLA-B27 in healthy individuals and AS patients, a question that cannot be addressed by biochemical studies on cell lines, the HLA-B27 protein was purified from peripheral blood lymphocytes of AS patients and healthy controls and pool sequencing of the bound peptides was performed. Results show that peptides are rich in proline (Pro) and the content of arginine (Arg) is much lower in comparison with sequences listed in the register of peptides eluted from cell cultures. Statistically significant differences were detected in frequencies of a subset of amino acids, predominantly at positions in the middle of the peptides. The frequency of Glu was increased and Gln was decreased in peptides from AS patients. Detailed analysis of purity of the immunoisolated HLA molecules excluded that the peptides might originate from any co-purified HLA molecules other than B27. We conclude that statistically significant increase in the Glu/Gln ratio of peptides from AS patients, consistent with increased deamidation in vivo, may account for differential antigenicity of HLA-B27 in patients. Source protein(s) of deamidated peptides remain unknown.
BACKGROUND:Ankylosing enthesopathy (ANKENT) with progressive stiffening of ankle and tarsal joints of the hind limbs is a naturally occurring arthropathy in B10.BR mice. Some features are similar to those of the spondyloarthropathies in humans. OBJECTIVE:To study the role of sexual dimorphism and testosterone in the development of ANKENT. METHODS:The incidence of ANKENT was observed in non-castrated, castrated, and testosterone substituted castrated male mice, and in control and testosterone treated female mice. RESULTS:ANKENT occurred only in males; it did not develop in males castrated at age 2-3 months but occurred in castrated males injected with testosterone. Females injected with testosterone did not develop ANKENT. CONCLUSION:Testosterone can replace what castration eliminates, at least in the postpubertally castrated males, but is itself not sufficient to induce joint disease.
The sequences and profiles of peptides which bind to HLA-B∗2705 splenocytes and peripheral blood cells were compared with those previously published from in vitro long-term cell cultures. B∗2705 peptide profile analysed by solid-phase Edman degradation and 15 individual peptide sequences determined by LC–MS/MS were partially similar to those defined from in vitro long-term cell cultures. Arg at P2 was found in 11 of 15 sequenced peptides (73.3%). This value is lower in comparison with other published data. Two sequences were matching to unknown proteins, which displayed similarity with myosin. These are first data on peptide sequences isolated directly from HLA-B27 molecules without prior in vitro propagation of the cells.
A possible relationship between intestinal inflammation and joint disease development was investigated. Clinical symptoms of colitis--diarrhea and rectal bleeding--were confirmed by findings of inflammatory processes in the colon in dextran sodium sulfate-treated mice and joint ankylosing enthesopathy (ANKENT) developed in 12.8 % mice with chronic colitis and 13.6 % mice in the control group. Consequently no significant difference in ANKENT frequency was found between mice with and without chronic colitis and the occurrence of ANKENT in both groups was typical for conventional conditions. ANKENT cannot be triggered solely a generalized inflammatory process in the gut.
Apolipoprotein J (apoJ) is a 70 kDa glycoprotein associated with high-density lipoproteins (HDL) in human plasma (de Silva et al., 1990a). HDL transport more than 80% of the plasma cholesterol from extrahepatic tissues to the liver for excretion (Glomset, 1968). Wide tissue distribution of apoJ was determined by isolation of apoJ mRNA from a variety of human tissues. The presence of apoJ mRNA was mainly detected in the steroidogenic tissues, testis and ovary, and also in the brain (de Silva et al., 1990b). The apoJ molecule is a dimer which consists of two disulfide-linked subunits designated apoJα (34-36 kDa) and apoJβ (36-39 kDa) (de Silva et al., 1990c). For purification and characterization of the apoJ molecule, monoclonal antibodies were utilized. Six monoclonal antibodies specific for apoJ were generated and described (de Silva et al., 1990a, 1990c). ApoJ has extensive similarities to the human protein designated as SP-40,40 (or complement lysis inhibitor (CLI)) (Choi et al., 1989) and human TRPM-2/clusterin (Wong et al., 1994). The presence of SP-40,40 was also demonstrated within human seminal plasma at levels comparable to those in serum (Kirszbaum et al., 1989). Both these proteins, SP-40,40 and TRFM-2/clusterin, have been implicated in a variety of physiological processeses, including sperm maturation, lipid transport, membrane remodelling and inhibition of the complement cascade (Wong et al., 1994). ApoJ is also secondarily incorporated into the sperm membrane, as sperm travel through the male reproductive tract, and belongs to the sperm-coating proteins. Among monoclonal antibodies against human sperm proteins that we generated, a monoclonal antibody that specifically recognized apoJ was found. The monoclonal antibody was designated Hs-3.
The sperm-zona pellucida-binding assay in vitro was used as a functional test for zona pellucida-binding ability of boar spermatozoa after co-incubation with monoclonal antibodies against intra-acrosomal proteins. The effect of monoclonal antibodies ACR.2 against boar acrosin (55, 53, 45 and 38 kDa), and Hs-8 against boar intra-acrosomal protein (230, 110, 88, 60, 48 kDa) on boar spermatozoa-porcine oocyte binding was examined. The sperm-zona pellucida-binding was reduced when medium was supplemented with monoclonal antibodies during sperm-oocyte co-incubation, but not when capacitated spermatozoa were pretreated with monoclonal antibodies before incubation with oocytes. Our results show that the monoclonal antibodies (ACR.2, Hs-8) against intra-acrosomal proteins reduce the secondary sperm-zona pellucida-binding with statistically significant difference. This suggests the role of these proteins in the early phases of fertilization.
Background Murine ankylosing enthesopathy (ANKENT), an experimental model for human ankylosing spondylitis, is strongly dependent on the contact of ANKENT-prone mice (B10 or B10. BR genetic background) with microbes as no disease is observed under germfree (GF) conditions while about 20% of conventional (CV) males are afflicted. The disease is almost exclusively restricted to male mice, It affects only ankle and tarsal joints. Next risk factor for ANKENT is haplotype. Objectives To confirm a hypothesis that ANKENT-triggering agents are intestinal bacteria to identify the ANKENT-triggering strains by technique of controlled association of GF mice. Methods B10. BR males from a previously established GF colony were oligoassociated with a cocktail of anaerobic bacteria isolated from a diseased CV male. The mice were checked for ANKENT once a week. Lymphocyte phenotype in afflicted as well as healthy males was determined. Results Oligoassociation with the selected cocktail of bacteria resulted in ANKENT in > 20% of ex-GF males, which corresponds to the situation seen under CV conditions and exceeds the ANKENT incidence in specific-pathogen-free mice. Conclusion ANKENT-triggering agents are bacteria. The importance of viruses, protozoa and helmints in ANKENT onset can be excluded. Our findings strongly suggest that, similar to other spondylarthropathies, intestinal microflora has a inductive role in ANKENT pathogenesis. Supported by grant GACR 310/00/1371. Reference Rehakova, et al. Hum Immunol. 2000;61:555
Ankylosing enthesopathy (ANKENT) is a naturally occurring joint disease in mice with numerous parallels to human ankylosing spondylitis (AS). Similarities between AS and ANKENT include not only affected tissue (joint entheses) but also association of the disease with genetic background, including MHC genes, gender, and age. Young males with the C57Bl/10 background have been described to suffer from ANKENT and, among H-2 congenic strains, high frequency of afflicted joints has been recorded in B10.BR (H-2k) males. Interestingly, the incidence of ANKENT is higher in conventional (CV) males that in their specific-pathogen-free (SPF) counterparts. The latter finding suggests that microbes could play a role as an ANKENT-triggering agent. To further examine this hypothesis we have established a germ-free (GF) colony of B10.BR mice and observed ANKENT incidence in both GF males and their conventionalized (ex-GF) male littermates; 20% of ex-GF males developed ANKENT before 1 year of age. In contrast, no joint disease was observed under GF conditions (p < 0.0001). Our results show that live microflora is required in ANKENT pathogenesis.
Monoclonal antibody TG1 recognizes specifically antigens HLA-B27, B7, B22 and B17 on cell surface in cytotoxicity and cytofluorometry tests. When cell detergent extracts were subjected to SDS PAGE under mild conditions (no heating and no reduction of the sample) followed by Western blotting, TG1 detected exclusively a complex of B27 heavy chains with β2-microglobulin (as a 50 kDa band) whereas the other B-locus antigens (B7, B22, B17) were detected as free 43 kDa heavy chains under the same conditions. When the samples were boiled prior to SDS PAGE, TG1 detected again the 43 kDa free heavy chains of B7, B22 and B17 but no zone corresponding to B27 could be detected indicating that the epitope in free B27 chains is more sensitive to denaturation by SDS. Thus, our main finding is that the interaction of HLA-B27 heavy chain with β2-microglobulin appears to be stronger than that of the other HLA-B chains. The resistance of the HLA-B27/β2-microglobulin complex to the SDS dissociation is strikingly similar to the behavior of MHC class II molecules under similar conditions. Thus, it may be speculated that HLA-B27 complexes can be also more stable than other MHC class I molecules under more physiological dissociative conditions (e.g. in endosomal compartments). This feature might potentially influence antigen presentation by HLA-B27 and contribute to the well known disease linkage of HLA-B27.
A new monoclonal antibody designated Hs-14 was generated after immunization of BALB/c mice with the acid extract of human sperm. In indirect immunofluorescence Hs-14 mAb binds to the acrosome of permeabilized sperm cells and consequently recognizes some intra-acrosomal protein. Western blotting analysis revealed that under non-reducing conditions the Hs-14 mAb detects a protein with a molecular mass of 220 kDa. Under reducing conditions the Hs-14 recognizes several peptide bands within the range from 55 kDa to 110 kDa. Beside human sperm the antibody positively reacts also with sperm of some other mammalian species. Using Hs-14 mAb it is possible to evaluate the acrosomal integrity of spermatozoa and to reveal sperm pathology.
It has been found previously that irradiated, IL-2 gene-modified plasmacytoma (X63-m-IL-2) vaccines are more efficient in the therapy of the parental (X63-Ag8.653) plasmacytoma than live plasmacytoma vaccines. In this communication, we have demonstrated that irradiation of murine IL-2-producing plasmacytoma vaccines resulted in upregulation of CD80 molecule expression and IL-2 production. The expression of MHC class I antigens was not altered. The upregulation of the CD80 membrane molecule expression in X63-m-IL-2 cells was higher after irradiation with 150 Gy than after irradiation with 50 Gy. Comparable upregulation of the CD80 molecule expression has also been demonstrated after irradiation of the parental murine X63-Ag8.653 plasmacytoma cells. The results indicate that upregulation of the CD80 molecule expression and enhanced IL-2 production in irradiated X63-m-IL-2 cells was responsible for the higher therapeutic effectiveness of the irradiated plasmacytoma vaccine.
OBJECTIVE Use of monoclonal antibodies against sperm proteins in human medicine. DESIGN Experimental and clinical studies. SETTING Dep. Biology and Biochemistry of Fertilization, Institute of Molecular Genetics, Prague, Laboratory IVF, Iscare IVF, Prague, Dep. of Immunobiology, Institute for the Care of Mother and Child, Prague. METHODS Monoclonal antibodies against human sperm intra-acrosomal and cell surface proteins were used for quantitative analysis of these proteins by the immunofluorescence test in samples of human sperm of good and poor qualities. RESULTS The detection of intra-acrosomal proteins was decreased and, on the other hand, detection of surface proteins was the same or higher in pathological spermatozoa. CONCLUSIONS Monoclonal antibodies can be used for diagnostics of sperm pathology (quantitative detection of proteins) and for evaluation of the physiological state of sperm cells (state of acrosome before or after acrosome reaction). Finally, monoclonal antibodies could be useful for selection of a suitable method of fertilization (IUI, standard IVF, ICSI) in the laboratories of assisted reproduction.
The effect of seminal plasma and low molecular weight ACR.3 (17 kDa) protein on boar spermatozoa-porcine oocyte binding was examined. Boar seminal plasma that contains the sperm-adhesive ACR.3 protein was added to spermatozoa prior to their coincubation with oocytes, and the binding capacity of the spermatozoa so treated was compared to that of untreated cells. Similarly, purified ACR.3 protein, that binds to the egg zona pellucida, was added to noncapacitated spermatozoa, and the binding capacity of treated and untreated cells was again evaluated. In the two cases, the treatment of spermatozoa reduced their capacity to bind to the zona pellucida. We propose that the reduction in binding is due to competition for the ACR.3 binding sites on the zona pellucida between the soluble ACR.3 protein and the ACR.3 protein attached to the sperm surface. Furthermore, sperm-ZP binding was examined in the presence of ACR.3 monoclonal antibody, which specifically reacts with ACR.3 protein, Preliminary results show that addition of ACR.3 monoclonal antibody to a suspension of boar spermatozoa prior to their coincubation with oocytes did not markedly change sperm-zona binding in comparison with the control untreated spermatozoa. Our results suggest that ACR.3 protein may mediate the primary sperm-egg zona pellucida binding, and that it is one of the likely candidates for the primary sperm-ZP binding protein. (C) 1997 Wiley-Liss, Inc.
Monoclonal antibodies Ds-1 and Ds-2 specifically labelling dog sperm acrosome were prepared by immunization of mice with acetic acid extracts of dog spermatozoa. Electron microscopy and indirect immunofluorescence localized the site of Ds-1 and Ds-2 proteins inside the acrosomal vesicle. Ds-1 antibody detected 55, 76, 115, 120 and 190 kDa proteins under non-reducing conditions, and 73 kDa and 54 kDa proteins after reduction (p73/Ds-1 and p54/Ds-1). 92 kDa and 40 kDa proteins recognized by Ds-2 (p92/Ds-2 and p40/Ds-2) migrated at > 200 kDa in the absence of reducing agent. In vivo, p73/Ds-1 and p54/Ds-1 are therefore likely to be present both in free and complexed form, while all of p92/Ds-2 and p40/Ds-2 form disulfide-bonded complexes. Decrease in the rate of acrosomes stained with Ds-1 and Ds-2 was correlated with the progress of capacitation resulting in the increased rate of spontaneous acrosome reactions, as suggested by a dramatic effect of A23187. Monoclonal antibody to boar acrosin (ACR-2) recognized dog sperm acrosin homologue. A higher rate of ACR-2-negative spermatozoa was observed after capacitation and A23187 treatment compared to Ds-1 and Ds-2, indicating that proteins recognized by Ds-1 and Ds-2 are localized in a specific compartment of acrosome, distinct from acrosin and possibly representing fraction of acrosomal matrix.
We have generated a high-resolution genetic map, 0.071 cM per backcross animal, of the 13 cM T-H2 region of the mouse Chromosome (Chr) 17. The map contains two phenotypic loci, T and Hst1, 12 RFLP markers, and 24 microsatellite loci. The Hst1 gene was mapped to a chromosomal interval contained within a single 580-kb YAC clone. The FFEH11 YAC is 0.44 cM long and carries, besides the Hst1 gene, five polymorphic DNA markers and recombination breakpoints of six backcross animals. Two candidate genes for Hst1 were identified based on their location and testicular expression. These are Tbp and D17Ph4e. The submilliMorgan map of the T-H2 region revealed significant clustering of (CA)n loci. The clustering, if shown to be a common feature in the mouse genome, may cause gaps in the physical map of the mouse genome.
OBJECTIVE:To evaluate the number of males per cage as a possible risk factor for murine ankylosing enthesopathy (ANKENT)--a spontaneous joint disease with parallels to human seronegative spondylarthropathies--since ANKENT shows incomplete penetrance of genetic susceptibility factors among individuals living in a stable environment. METHODS:Frequency of ANKENT was compared among males housed with females, with other males, or alone. RESULTS:In three independent cohorts, a trend was observed that males housed with females rarely develop the disease, in contrast to males housed with other males (P < 0.25, P < 0.05, and P < 0.01). Furthermore, no males caged alone developed ANKENT, whereas disease did occur in males grouped together (P < 0.01). When healthy males (retired breeders) were recaged either alone or with other males, ANKENT developed among the grouped males only (P < 0.005). CONCLUSIONS:Caging males together is a relative risk factor for ANKENT. Grouped caging may perturb the immune system through endocrine pathways or modify microbiological load through behaviour (for example, infection due to biting).
HLA-B27 is a risk factor for several human diseases through a mechanism that is not yet understood. This article describes a naturally occurring joint disease in laboratory mice, ANKENT. ANKENT begins with mild inflammation and culminates in irreversible stiffening of the ankle and/or tarsal joints in one or both hind paws. The macroscopic and histologic features of ANKENT, its relationship to age, gender, and environment, and some immunologic aspects are considered. With respect to genetics, it is demonstrated that an HLA-B27 transgene is a relative risk factor for ANKENT. Its impact depends on the H-2 haplotype, reaching a relative risk value of 9.4 for C57Bl/10, H-2b males (p < 0.025). Several features of ANKENT are reminiscent of human AS: joint pathology, age and gender distribution, the presence of non-MHC as well as MHC risk factors (including HLA-B27), and the suspicion that environmental factors are involved.