PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “HLA-DR beta-Chains”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

Predominant naturally processed peptides bound to HLA-DR1 are derived from MHC-related molecules and are heterogeneous in size.

Peptides bound to class I molecules are 8-10 amino acids long, and possess a binding motif representative of peptides that bind to a given class I allele. In the only published study of naturally processed peptides bound to class II molecules (mouse I-Ab and I-Eb), these peptides were longer (13-17 amino acids) and had heterogenous carboxy terminals but precise amino-terminal truncations. Here we report the characterization of acid-eluted peptides bound to HLA-DR1 by high-performance liquid chromatography, mass spectrometry and microsequencing analyses. The relative molecular masses of the peptides varied between 1,602 and 2,996 (13-25 residues), the most abundant individual M(r) values being between 1,700 and 1,800, corresponding to an average peptide length of 15 residues. Complete sequence data were obtained for twenty peptides derived from five epitopes, of which all but one were from self proteins. These peptides represented sets nested at both the N- and C-terminal ends. Binding experiments confirmed that all of the isolated peptides had high affinity for the groove of DR1. Alignment of the peptides bound to HLA-DR1 and the sequences of 35 known HLA-DR1-binding peptides revealed a putative motif. Although peptides bound to class II molecules may have some related features (due to the nonpolymorphic HLA-DR alpha-chain), accounting for degenerate binding to different alleles, particular amino acids in the HLA-DR beta-chains presumably define allelic specificity of peptide binding.

Amino Acid Sequence↗

Molecular genetic analysis of HLA-DR and HLA-DQ genes among anti-U1-70-kd autoantibody positive connective tissue disease patients.

OBJECTIVE: We have recently found that the presence of autoantibodies against the 70-kd polypeptide of U1 RNP (U1-70-kd) is associated with HLA-DR4 and DR2. To further characterize this association, we performed a molecular genetic analysis of HLA-DR and DQ genes among patients with autoantibodies against U1-70-kd. METHODS: The polymerase chain reaction (PCR), sequence-specific oligonucleotide hybridization, and solid-phase direct DNA sequencing of PCR-amplified DNA were utilized to analyze HLA-DRB1, DRB5, DQA1, and DQB1 genes. RESULTS: A comprehensive analysis of HLA-DRB1, DRB5, DQA1, and DQB1 from 27 patients and controls identified shared amino acids FDYFYQA (Phe, Asp, Tyr, Phe, Tyr, Gln, Ala) at positions 26, 28, 30-32, 70, and 73 of HLA-DRB1 on disease-associated haplotypes. CONCLUSION: A common cluster of shared amino acids, or a shared epitope, identified within HLA-DRB1 among anti-U1-70-kd autoantibody positive connective tissue disease patients may be important in regulating an autoimmune response to the U1-70-kd antigen.

Amino Acid Sequence↗

Susceptibility to primary biliary cirrhosis is associated with the HLA-DR8-DQB1*0402 haplotype.

In studies to date seeking associations between human leukocyte antigens (HLA) and primary biliary cirrhosis, no class I association but several different class II associations have been described. The aims of this study were to reassess the DR associations in primary biliary cirrhosis and to examine for the first time the role of DQB. DRB genotypes were determined on standard Taq1 restriction-fragment-length polymorphism analysis in 159 white northern European patients with the disease and 162 racially matched local controls. Polymerase chain reaction gene amplification and sequence-specific oligonucleotide analysis were used to determine DQB genotypes in 89 patients and 181 controls. An increased frequency of human leukocyte antigen DR8 was observed in the patient group (11% vs 4%; relative risk = 3.3; p < 0.01). Although we saw an increased frequency of the DQB1*0402 allele (11% vs. 3%; relative risk = 3.5; p < 0.025), this was not significant after correction for multiple testing. The strongest association was with the two-locus haplotype DR8-DQB1*0402 (11% vs. 2.2%; relative risk 5.5; p < 0.001). The DRB data reported here confirm the findings of previous studies, although the described association with DR8 is considerably weaker. The weak genetic contribution of human leukocyte antigen in the susceptibility to primary biliary cirrhosis is in contrast to its role in other autoimmune liver diseases.

Adult↗

Islet cell antibody heterogeneity among type 1 (insulin-dependent) diabetic patients.

Conventional detection of islet cell antibodies is based on indirect immunofluorescence performed on frozen human pancreas sections. The number and nature of epitopes recognized by antibodies detected by such techniques are unknown. To determine the existence of heterogeneous fluorescence patterns of islet cell antibodies on pancreatic sections, we selected two sera showing a distinctive granular fluorescence. We then tested random sera from patients with Type 1 (insulin-dependent) diabetes mellitus for their ability to block ultimate binding of fluorescein isothiocyanate-labelled immunoglobulins purified from these two sera with a characteristic granular pattern. Among 102 subjects with recent-onset Type 1 diabetes, 79 had detectable anti-islet cell antibodies; 21 showed complete blockade of the binding to islets of granular fluorescein isothiocyanate-labelled immunoglobulins. The majority of these 21 patients were women carrying a DR3 non-DR4 DQB1*0201 allele, with under-representation of DRB1*0402 and 0405. Discrimination between islet cell antigenic specificities may help in identifying islet cell autoantibodies in autoimmune Type 1 diabetes.

Adult↗

High yields of anti-HLA human monoclonal antibodies can be provided by SCID mice.

In an attempt to develop a suitable model for increasing the yield of human anti-HLA mAbs, we have used mice with SCID for i.p. injection of two human-mouse heterohybridomas. HMP1 hybridoma secretes a DQB1*0201 allele-specific human mAb whereas HMP12 secretes a human mAb recognizing the DRB1*1101, 1102, 1103, and 1104 alleles. Both hybridomas could be grown in SCID mice as localized tumors with no apparent alteration in the morphology of the cells or in the immunoglobulin secretion. Ascitic fluid was produced that showed a 600- to 1000-fold increase in monoclonal antibody cytotoxic titer as compared with that obtained in tissue culture. HLA-DQB1* and DRB1* alleles recognized by ascites and supernatants from SCID-derived cultures were analyzed by microlymphocytotoxicity assay on a small panel of B-lymphoblastoid cell lines. The results show that HLA specificity was retained after in vivo passage.

Animals↗

Alloimmunization to platelet antigen HPA-1a (PIA1) is strongly associated with both HLA-DRB3*0101 and HLA-DQB1*0201.

Antibodies to the platelet HPA-1a antigen can elicit in the newborn a condition known as neonatal alloimmune thrombocytopenic purpura (NAITP). Previous studies based on RFLP analysis showed that 100% of HPA-1a-negative women who produced anti-HPA-1a antibodies (responders) were HLA-DRw52a (DRB3*0101). However, this specificity could also be found in some HPA-1a-negative women not producing anti-HPA-1a antibodies (nonresponders). We have analyzed in detail by PCR-SSOP the HLA-DR, -DQ, and -DP loci of 36 responders and 10 nonresponders. We found that while the allele DRB3*0101 was present in the vast majority of responders (91%), there were exceptions. Furthermore, the DQB1*0201 allele was found to be present in almost all responders (94%), but again was also found in nonresponders. The risk of alloimmunization to HPA-1a in an HPA-1b homozygous mother significantly increases with the presence of either allele, the odds ratio being 39.7 for DQB1*0201 and 24.9 for DRB3*0101. Sequencing of exon 2 of these two alleles from responders indicated no sequence difference when compared with the consensus sequences. This indicates that they do not represent variants when compared with the same alleles found in some nonresponders.

Alleles↗

HLA DQA, DQB, and DRB genotyping by oligonucleotide analysis: distribution of alleles and haplotypes in British caucasoids.

A precise method for comprehensive HLA DQA and DQB genotyping using gene amplification and hybridization with sequence-specific oligonucleotide (SSO) probes is described. Twenty-four SSO probes were used to detect all DQ allotypes defined by nucleotide sequence variation in the second exons of the DQ genes, using a standard set of conditions for all probes at each locus. Five hundred individuals were genotyped for 8 DQA1 and 16 DQB1 alleles by using this method and for 33 alleles of the DRB1, DRB3, DRB4, and DRB5 genes by using previously described SSO probes. The 4-locus DQB1-DQA1-DRB1-DRB3/4/5 haplotypes present were characterized on the basis of known linkage disequilibrium between class II alleles. Fifty-two different haplotypes that have previously been described were further characterized at the nucleotide sequence level and two novel haplotypes were identified. The distributions of these alleles and haplotypes in 177 randomly selected healthy Caucasoid controls from the United Kingdom are reported. These results identify further haplotypic diversity in the HLA class II region, even though strong linkage disequilibrium exists between the DR and DQ gene loci.

Adult↗

Distribution of HLA class II alleles among Scandinavian patients with systemic lupus erythematosus (SLE): an increased risk of SLE among non[DRB1*03,DQA1*0501,DQB1*0201] class II homozygotes?

HLA-DRB1, -DRB3, -DQA1 and -DQB1 alleles were determined by DNA typing in 51 Scandinavian patients with systemic lupus erythematosus (SLE) and 129 controls. DRB1*03,DRB3*0101,DQA1*0501,DQB1*0201 were significantly increased in the patient group, with relative risks (RR) of 2.80, 3.07, 3.55 and 2.12, respectively. These alleles are in strong linkage disequilibrium, and their possible relative contributions in predisposition to SLE are difficult to distinguish. The strongest association was found for DQA1*0501, which is in linkage disequilibrium with DRB1*03 as well as DRB1*11,12 (DR5). An increased frequency of DRB1*11,12 was observed (RR = 1.89, ns). No association with DRB1*15,16 (DR2) was found. The patients had a higher frequency of HLA class II homozygosity than the controls (RR = 5.05, p = 0.0005). When compared to the low-risk group (nonDRB1*03 class II heterozygotes), the cases homozygous for DRB1*03,DQA1*0501,DQB1*0201, known to be in linkage disequilibrium with the complement allele C4A*Q0, had the highest relative risk of developing SLE (RR = 16.39, p = 0.0002). However non[DRB1*03,DQA1*0501,DQB1*0201] class II homozygotes had a higher relative risk (RR = 4.68, p = 0.0147) than DRB1*03,DQA1*0501,DQB1*0201 heterozygotes, known to carry the C4A*Q0 allele (RR = 2.72, p = 0.0088). This may suggest that HLA class II molecules are directly involved in susceptibility to SLE.

Adolescent↗

Distribution of HLA-DQA1, -DQB1 and DRB1 alleles in black IDDM patients and controls from Zimbabwe.

We have used the XI Histocompatibility Workshop sequence-specific oligonucleotide probes to determine the DRB1, DQA1 and DQB1 genotypes by dot-blot hybridization of polymerase chain reaction (pcr)-amplified material from a homogenous black population in Zimbabwe. The DR4 subtype DRB1*0405, the DR3 subtype DRB1*0301, DQB1*0201 and DQB1*0302 and DQA1*0301 and DQA1*0501 were significantly increased in the IDDM group compared to the controls, whereas DRB1*11, DQB1*0602 and DQA1*0102 were significantly decreased. Taken together, the data show that susceptibility and resistance to IDDM are associated both with particular haplotypes and DQA1-DQB1 heterodimers without one or other being overriding.

Adult↗

The HLA-DRB1*0405 haplotype is most strongly associated with IDDM in Algerians.

Insulin-dependent diabetes mellitus (IDDM) in Caucasians is strongly associated with HLA-DR3-DQ2 and DR4-DQ8. In order to investigate the HLA class II associations with IDDM in Algerians, we have used polymerase chain reaction (PCR) and sequence specific oligonucleotide analysis (SSO) to identify DQA1, DQB1, and DRB1 alleles, haplotypes and genotypes in 50 unrelated IDDM patients and 46 controls from a homogeneous population in Western Algeria. Both DRB1*0301-DQA1*0501-DQB1*0201 (DR3-DQ2) and DRB1*04-DQA1*0301-DQB1*0302 (DR4-DQ8) haplotypes were found at increased frequencies among the patients compared to controls (45% vs. 13%, RR = 5.5, Pc < 10(-5) and 37% vs. 4%, RR = 12.9, Pc < 10(-4), respectively). Among the latter, in contrast to other Caucasian populations, only DRB1*0405-DQA1*0301-DQB1*0302 was significantly increased in the Algerian patients (25% vs. 1% in controls, RR = 30.3, Pc < 10(-3). Accordingly, the highest risk of disease was observed in DRB1*0301-DQA1*0501-DQB1*0201/DRB1*0405-DQA1+ ++*0301-DQB1*0302 heterozygotes (34% in patients vs. 0% in controls; RR = 49; Pc < 10(-3). This observation and its comparison with DR-DQ haplotypes in other ethnic groups suggest that the DRB1*0405 allele which encodes an Asp57-negative beta chain may contribute to IDDM susceptibility in a similar way as Asp57-negative DQ beta chains.

Algeria↗

Association of amino acid sequences in the HLA-DQB1 first domain with antitopoisomerase I autoantibody response in scleroderma (progressive systemic sclerosis).

Previous studies in Caucasians with progressive systemic sclerosis (PSS) have suggested associations of antitopoisomerase I (antitopo I) autoantibodies with either serologically defined HLA-DR2 or DR5. To better define class II HLA associations with the antitopo I response, 161 PSS patients (132 Caucasians and 29 American blacks) were studied for antitopo I autoantibodies by immunodiffusion and immunoblotting, and their HLA-DRB1, DRB3, DQA1, and DQB1 alleles were determined by restriction fragment length polymorphic analysis and DNA oligotyping. Among Caucasians with antitopo I, HLA-DR5(DRB1*1101-*1104), DRB3*0202 and DQw3 (DQw7,8,9) were significantly increased in frequency. In American blacks, however, only HLA-DQB1*0301(DQw7) was significantly increased. The presence of HLA-DQB1*0301(DQw7) and other HLA-DQB1 alleles bearing the uncharged polar amino acid residue tyrosine at position 30 of the outermost domain was found in all antitopo I-positive Caucasian PSS patients compared with 66% of antitopo I-negative PSS patients (pc = 0.007) and 70% of normal controls (pc = 0.008), as well as all antitopo I-positive black patients. The association with HLA-DQB1 was independent of HLA-DR5(DRB1*1101-*1104) or any other HLA-DRB1, DRB3, or DQA1 alleles. Alternative or additional candidate epitopes for this autoimmune response include alanine at position 38 and threonine at position 77 of these same DQB1 alleles. These data suggest that genetic predisposition to the antitopo I response in PSS is associated most closely with the HLA-DQB1 locus.

Alleles↗

Phenotype frequencies of the class II (DR, DQ) DNA alleles by the patterns of sequence-specific primer mixtures (SSPM) in four different populations and the probable haplotypes between DRB1 allele and DQB1 allele.

From this study, it is clear that: 1. Most alleles of DRB1, DRB3, DRB4, DRB5, and DQB1 can be identified by 19 combinations of primers. 2. Among a total of 81 alleles, 54 of 64 were contained in the DRB1, B3, B4 and B5 loci, and all 17 DQB1-locus alleles were identified by this method. From this extensive population study and past serological experience, it is clear that: 3. SSPM, which uses only primers, not probes, is another tool that can be utilized to detect polymorphisms or microvariations in DNA sequence within the same locus.

Alleles↗

Allele-specific methylation in the 5'-regulatory region of class II DQ beta genes in the human major histocompatibility complex (MHC): relationship to autoimmune disease susceptibility.

The DNA methylation state of the 5'-regulatory region of human HLA-DQ beta genes was examined. Two restriction enzymes were utilized to detect methylated (meCG) dinucleotides in the 5'-regulatory region of the DQ-beta genes: the restriction enzyme Msp I, which recognizes CCGG and CmeCGG, and Hpa II recognizes only the unmethylated CG sequence. DNA samples were prepared from 95 HLA-typed individuals including 40 B-lymphoblastoid cell lines and peripheral blood leukocytes of 55 individuals. Of these samples, 20 were from parents of individuals with insulin-dependent diabetes. Allele specific methylation was observed in particular DR-associated DQ-beta gene alleles. The DQw8 (DQw3.2) allele, most DQw7 (DQw3.1) alleles, and the DR3-associated DQw2 allele were all unmethylated. The parental methylation state was stably transmitted to offspring. Because these DQ alleles are highly associated with several autoimmune diseases, our results raise the possibility that the regulation of expression of these particular DQ-beta alleles might be different from that of other alleles, and that the 5'-regulatory DNA sequences of these particular DQ beta alleles may be responsible for, or contribute to, susceptibility to autoimmune diseases.

Alleles↗

Regulation of the expression of ICAM-1 on human monocytes and monocytic tumor cell lines.

In this study we investigated the mechanisms regulating expression of ICAM-1 that plays an important role for Ag presentation, on peripheral blood monocytes, and three myelomonocytic cell lines representing different stages of monocyte maturation. ICAM-1 expression on freshly isolated monocytes was low in all donors tested. After 16- to 20-h incubation, about a 20-fold increase was observed, whereas ICAM-1 expression on lymphocytes did not change. This marked increase in Ag expression was specific for ICAM-1, because expression of other monocyte Ag remained unchanged (alpha-chain of lymphocyte function-associated Ag-1) or decreased (ICAM-2, alpha-chains of CR3 and CR4, their common beta-chain and Fc gamma RI) during overnight incubation; only HLA-DR showed a slight increase. Enhanced expression of ICAM-1 was not caused by adherence; it was also not due to trace amounts of IFN-gamma possibly present under our culture conditions. Endotoxin contamination of the medium was excluded as a cause for the enhanced expression, and neither LPS nor its antagonist polymyxin B were able to alter ICAM-1 expression. Whole blood culture almost completely prevented up-regulation of ICAM-1 expression, thus apparently mimicking the in vivo situation. Culture of monocytes together with other PBMC had no significant influence on monocyte ICAM-1 levels. From 12 different cytokines tested for their ability to modulate "spontaneous" up-regulation of ICAM-1 in culture, only IFN-gamma was found to increase expression about twofold. This effect was also observed in whole blood culture. All other cytokines had no significant effect. In contrast, ICAM-1 expression on two of the three cell lines (KG1 and HL60) was inducible by TNF-alpha to a much higher degree than by IFN-gamma, whereas the results with U937 were comparable with those obtained for normal monocytes. The protein- and RNA-synthesis inhibitors cycloheximide and actinomycin D prevented expression of ICAM-1 in a dose-dependent fashion. In Northern blot experiments no difference in the amounts of mRNA was observed between freshly isolated and cultured monocytes, indicating that "spontaneous" induction of ICAM-1 is regulated at a posttranscriptional level. In contrast, stimulation with IFN-gamma caused a significant increase of detectable RNA comparable to that observed for Ag expression. These results disclose a very special regulation of ICAM-1 expression on monocytes which could be consistent with the view that ICAM-1 is actively down-regulated in vivo until the monocyte leaves the circulation.

Antigens, CD↗

Characterization of a novel T-cell lymphoma cell line established from a patient with systemic lupus erythematosus-associated lymphoma.

A malignant lymphoma developed in a 46-year-old male patient who had had systemic lupus erythematosus (SLE) for 18 years. The lymphoma was at disease stage IV at initial examination, and the patient died shortly thereafter. The lymphoma cells were cultured in vitro, and a continuous cell line, named SMZ-1, was established. The SMZ-1 cells, as well as the parental lymphoma cells, were of helper/inducer T-cell immunophenotype; they were positive for CD2, CD3, and CD4 antigens, and negative for CD8. Expression of CD5 and CD7 antigens was observed in a small percentage of the cells. The activation markers identified by antibodies against CD25, CD71, and HLA-DR antigens were positive. Cytogenetic analysis revealed that the SMZ-1 cells had a characteristic translocation between chromosomes 6 and 14 [t(6;14)(p21.1;q24)]. Southern blot analysis of DNA extracted from the cells demonstrated clonal rearrangement of the T cell receptor beta-chain gene. Integration of the human T-cell lymphotrophic virus type I (HTLV-I) genome was negative. The SMZ-1 cell lines should thus provide a useful model for characterization of peripheral T-cell lymphomas.

Antibodies, Monoclonal↗