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HLA class II polymorphisms determine responses to bacterial superantigens.

The excessive immunological response triggered by microbial superantigens has been implicated in the etiology of a wide range of human diseases but has been most clearly defined for the staphylococcal and streptococcal toxic shock syndromes. Because MHC class II presentation of superantigens to T cells is not MHC-restricted, the possibility that HLA polymorphisms could influence superantigenicity, and thus clinical susceptibility to the toxicity of individual superantigens, has received little attention. In this study, we demonstrate that binding of streptococcal and staphylococcal superantigens to HLA class II is influenced by allelic differences in class II. For the superantigen streptococcal pyrogenic exotoxin A, class II binding is dependent on DQ alpha-chain polymorphisms such that HLA-DQA1*01 alpha-chains show greater binding than DQA1*03/05 alpha-chains. The functional implications of differential binding on T cell activation were investigated in various experimental systems using human T cells and murine Vbeta8.2 transgenic cells as responders. These studies showed quantitative and qualitative differences resulting from differential HLA-DQ binding. We observed changes in T cell proliferation and cytokine production, and in the Vbeta specific changes in T cell repertoire that have hitherto been regarded as a defining feature of an individual superantigen. Our observations reveal a mechanism for the different outcomes seen following infection by toxigenic bacteria.

Amino Acid Sequence↗

HLA class II polymorphism: implications for genetic susceptibility to autoimmune disease.

Our understanding of HLA class II polymorphism has undergone a rapid evolution in the last few years. As in so many areas of modern biology, this progress has depended largely on the application of recombinant DNA techniques to the study of this gene family. In particular, the recent development of methods of gene amplification by means of the polymerase chain reaction has allowed for the rapid assessment of polymorphism in the human population. In addition, the elucidation by x-ray crystallographic analysis of the three-dimensional structure of an HLA molecule has been a major step. These areas of progress have now begun to converge to allow a more detailed approach to the problem of class II polymorphism and disease susceptibility. As discussed in this review, the data so far indicate that a few amino acid substitutions in class II molecules may exert a critical influence on susceptibility to autoimmune diseases such as RA and IDDM. The mechanism by which these class II polymorphisms predispose to autoimmune disease is still unknown. It is tempting to speculate that differences in the binding affinity of HLA molecules for autoantigens might be involved; however, as yet no specific autoantigen has been identified for either RA or IDDM. Intriguingly, sequence similarities have been observed between some viral proteins and class II molecules, raising the possibility that these infectious agents might induce autoimmunity by "molecular mimicry." Examples include the human cytomegalovirus protein, IE2 as well as the Epstein Barr virus gp110 protein. Other possible mechanisms involve more complex immunoregulatory effects, such as the absence of suppressor functions that appear to be under the influence of the HLA genes. To some extent, the persistent ignorance about the cause of autoimmunity reflects a general lack of knowledge concerning exactly how HLA polymorphisms exert immunoregulatory effects. For example, in addition to influencing antigen presentation, MHC molecules also affect the overall T cell repertoire during thymic selection. The relative importance of HLA class II polymorphism in exerting immunoregulatory effects by means of thymic selection of the T cell repertoire is unknown. For autoimmune diseases such as RA and IDDM, there is a need to identify a specific functional abnormality that is causing the disease before the etiological significance of the emerging associations with class II polymorphisms become clear.(ABSTRACT TRUNCATED AT 400 WORDS)

Alleles↗

The polymorphism of HLA-DR3 in South African populations.

The polymorphism of HLA-DR3 was investigated in families and unrelated individuals of three population groups: South African (SA) Negroes, Cape Coloureds and SA Caucasoids. Serological and restriction fragment length polymorphism (RFLP) analysis indicated that DR3 could be subdivided into DRw17 (previously DR3.1) and DRw18 (previously DR3.2). In contrast, the two-dimensional (2-D) gel electrophoresis patterns could not distinguish between the DRB1 gene products of the HLA-DRw17 and DRw18 cells. Two DRB3 variants, correlating with the T-cell defined specificities Dw24 and Dw25 were identified at the genomic and product level. Of ten haplotypes studied with the newly defined HLA-DRw18 specificity, all had the DRB3 RFLP pattern associated with Dw24. HLA-DRw17 was found in all three population groups tested, although in the SA Negroes HLA-DRw18 was the prevalent DR3 subgroup. This subgroup was also present in the Cape Coloureds but was absent in the SA Caucasoids tested. HLA-DRw18 forms part of the most characteristic SA Negro haplotype, Bw42, DQw4, Dw"RSH," while HLA-DRw17 is part of the classic Caucasoid haplotype, B8, DQw2, Dw3.

Alleles↗

Analysis of HLA class II polymorphism using polymerase chain reaction.

A simple, rapid, and precise method of typing HLA class II polymorphism would be valuable in the areas of disease susceptibility, tissue transplantation, individual identification, and anthropological genetics. Herein, we describe a method of analyzing class II sequence polymorphism based on polymerase chain reaction (PCR) amplification and hybridization with oligonucleotide probes. Many more DNA-defined alleles at the class II loci have been identified than can be distinguished by conventional serologic typing. Consequently, matching transplant donors and recipients by PCR/oligonucleotide typing should reduce graft rejection and graft-vs-host disease. Also, the ability to identify alleles conferring genetic predisposition to specific diseases (eg, insulin-dependent diabetes mellitus) is significantly enhanced by distinguishing the many alleles or "subtypes" within a serologic type (eg, DR4). One valuable property of sequence-based HLA typing strategies, like oligonucleotide probe hybridization, is that they reveal how and where two alleles differ, not simply that they can be operationally distinguished. The nature and location of HLA polymorphisms appears to be critical in disease association studies and are important in tissue typing for transplantation. New alleles at the DRB1, DPB1, and DQB1 loci are likely to be identified as this technology is applied to more and more samples, particularly in nonwhite ethnic groups. A new allele is uncovered as an unusual pattern of probe binding and then confirmed by sequencing. This pattern is observed because class II polymorphism is localized to specific regions and virtually all "new" alleles represent "shuffled" combinations of polymorphic sequences found in previously known alleles. Since these polymorphisms are in the region of probe binding, these new alleles can be detected without increasing the probe panel. Obviously, any new allele with a new polymorphic sequence in a region for which typing probes are not available would not be revealed by oligonucleotide typing. With the PCR primers and probes described here, 7 DQ alpha 1 alleles, 15 DQ beta 1 alleles, 18 DPB1 alleles, and 32 DRB1 alleles are distinguished. Additional primers and/or probes can, of course, increase the allelic discrimination of PCR/oligonucleotide probe typing. These horseradish peroxidase-labeled oligonucleotide probes are stable (> 2 years when stored at 4 degrees C) and the typing system is simple and robust. Although this dot blot/oligonucleotide hybridization procedure is a powerful and precise method of HLA class II typing, the complexity of the procedure increases as the number of probes required for analysis increases.(ABSTRACT TRUNCATED AT 400 WORDS)

Alleles↗

Differences in T cell receptor restriction fragment length polymorphisms in patients with rheumatoid arthritis.

OBJECTIVE: The purpose of this study was to determine whether a T cell receptor (TCR) polymorphism, either by itself or in combination with particular HLA polymorphism, leads to susceptibility to rheumatoid arthritis (RA). METHODS: Eight restriction fragment length polymorphisms (RFLPs) detected with TCR gene segments were investigated in 46 individuals with RA and were compared with data from normal control subjects. RESULTS: A statistically significant difference in the genotype frequencies of a Taq I RFLP detected with the TCR alpha constant region (C alpha) gene was noted. In addition, when the DR4+ subpopulations were examined, the allelic frequency of a 2-kb Bam HI fragment detected with a V beta 8 gene was increased in the samples from RA patients (P less than 0.0086). CONCLUSION: The results of this study suggest that germline differences in the TCR repertoire may be associated with RA, and that there is a contributory effect of DR4+ haplotypes with certain TCR haplotypes in susceptibility to RA.

Arthritis, Rheumatoid↗

Exploring the genetic role of the HLA-DPB1 locus in Chileans with intrahepatic cholestasis of pregnancy.

BACKGROUND/AIMS: Intrahepatic cholestasis of pregnancy is a rare disease of unknown etiology, with a strikingly higher prevalence in Chile than in most other countries. Although several studies suggest that a genetic predisposition is involved in the pathogenesis, no genetic disease-marker has so far been identified. Using a recently developed HLA-genotyping technique, we performed an association study with a highly polymorphic HLA class II gene in patients with recurrent intrahepatic cholestasis of pregnancy and normal control patients. METHODS: Genomic DNA was extracted from 26 unrelated patients with recurrent ICP and 30 unrelated multiparous women without a personal or family history of this disease among a Chilean population. The polymorphic second exon of the HLA-DPB1 gene was amplified by the polymerase chain reaction and hybridized with 25 sequence-specific oligonucleotide probes to assign the HLA-DPB1 alleles on the basis of known sequence variations. RESULTS: Out of more than 50 HLA-DPB1 alleles presently known, 13 were represented in the analyzed groups. Patients with ICP had a higher frequency of the allele DPB*0402 when compared to controls (69% vs 43%). This difference failed to reach statistical significance (x2 = 2.81, corrected p > 0.5). No significant differences were observed between the frequencies of other detected HLA-DPB1 alleles in the analyzed groups. CONCLUSION: In this study, we observed a high frequency of the allele HLA-DPB1*0402 among Chilean patients with recurrent ICP, but no association of the disease with HLA-DPB1 alleles. Therefore, HLA-DPB1 alleles do not play a major role in determining susceptibility or resistance to intrahepatic cholestasis of pregnancy.

Alleles↗

HLA class II gene polymorphism in Tunisians.

The polymorphism of HLA class II genes (HLA-DRB, DQB, DPB) was investigated in 101 Tunisians using polymerase chain reaction. (PCR) amplification and reverse dot blot (RDB) hybridization. Allele and haplotype frequencies, as well as DRB1-DQB1 linkage disequilibria, were calculated. A total of 26 DRB1 alleles were detected and the most prevalent variant was DRB1*0301 with an allelic frequency at 21.87%. In the DR1 group, DRB1*0102 was most frequent than DRB1*0101. In the DR4 group, DRB1*0403 was the most common allele and was associated with DQB1*0402. Interestingly this DRB1-DQB1 association has not been observed in other populations. With regard to the DR8 group, DRB1*0804 was the unique variant detected, whereas with the DR13 specificity, the most common variant was DRB1*1303 in Algerians also. Although the DQB1 polymorphism analysis showed an allelic distribution very close to that observed in caucasoids, many DRB1-DQB1 associations which have not been reported in studies of other populations, were described. Finally at the DPB1 locus DPB1*1701 and *1301 allele frequencies distinguish clearly this Tunisian sample from a French caucasoïd panel of 83 subjects. In conclusion, a specific distribution of HLA components in terms of gene and haplotype frequencies characterizises this Tunisian population. This specific pattern may reflect the great ethnic diversity of this community. All these informations may be helpful in the future for HLA and disease association studies.

Gene Frequency↗

The immunogenicity of a viral cytotoxic T cell epitope is controlled by its MHC-bound conformation.

Thousands of potentially antigenic peptides are encoded by an infecting pathogen; however, only a small proportion induce measurable CD8(+) T cell responses. To investigate the factors that control peptide immunogenicity, we have examined the cytotoxic T lymphocyte (CTL) response to a previously undefined epitope ((77)APQPAPENAY(86)) from the BZLF1 protein of Epstein-Barr virus (EBV). This peptide binds well to two human histocompatibility leukocyte antigen (HLA) allotypes, HLA-B*3501 and HLA-B*3508, which differ by a single amino acid at position 156 ((156)Leucine vs. (156)Arginine, respectively). Surprisingly, only individuals expressing HLA-B*3508 show evidence of a CTL response to the (77)APQPAPENAY(86) epitope even though EBV-infected cells expressing HLA-B*3501 process and present similar amounts of peptide for CTL recognition, suggesting that factors other than peptide presentation levels are influencing immunogenicity. Functional and structural analysis revealed marked conformational differences in the peptide, when bound to each HLA-B35 allotype, that are dictated by the polymorphic HLA residue 156 and that directly affected T cell receptor recognition. These data indicate that the immunogenicity of an antigenic peptide is influenced not only by how well the peptide binds to major histocompatibility complex (MHC) molecules but also by its bound conformation. It also illustrates a novel mechanism through which MHC polymorphism can further diversify the immune response to infecting pathogens.

Alleles↗

Genetic polymorphisms in Spanish rheumatoid arthritis patients: an association and linkage study.

HLA polymorphism accounts only for approximately one-third of the genetic predisposition to rheumatoid arthritis (RA). To investigate the role of other loci in the susceptibility to RA, we have performed an analysis of several polymorphisms in genes of immune-related function: IL-10 -1082, -819, -592 promoter single nucleotide polymorphisms (SNPs), IL-10G and IL-10R microsatellites, IL-6 -622 promoter SNP, FcgammaRIIIA Val/Phe-158 polymorphism, IL-1 receptor antagonist VNTR, and the IKBL+738 T/C mutation. The analysis has been performed on a case-control study and also on RA trios. IL-10G12 was found to be associated with RA in the case-control study (18% in RA patients vs 9% in controls: P=0.001; pc<0.05). This allele was also more often transmitted than not transmitted (10 vs 5). No other allele in the present study is found to be associated to RA. Our data suggest that most of the loci studied play no major role in the susceptibility to RA, the IL-10 gene being the sole exception.

Arthritis, Rheumatoid↗

[HLA-Cw alleles polymorphism and haplotypes in Guangdong Han population].

OBJECTIVE: To analyze the polymorphism and haplotypes of HLA-Cw and detect HLA-A, B, Cw and DRB1 allele frequencies in Guangdong Han population. METHOD: An auto semi-quantitative PCR with reverse sequence-specific oligonucleo- tide was adopted to explore the HLA-A, B, Cw and DRB1 genotypes of 185 bone marrow donors. RESULT: Eleven HLA-Cw alleles were obtained in which Cw*03 (0.2580), 07 (0.1887), 01 (0.1732), and 08 (0.1071) had much higher allele frequencies. A total of 7 HLA-Cw-A, 20 HLA-Cw-B and 10 HLA-Cw-DRB1 haplotypes were found. CONCLUSION: HLA-Cw alleles have richer polymorphisms and their linkage disequilibrium with HLA-A, B, DRB1 exhibits geographic genetic characteristics.

Alleles↗

Structure of the HLA-A*0204 antigen, found in South American Indians. Spatial clustering of HLA-A2 subtype polymorphism.

The primary structure of the HLA-A2 subtype A*0204 (isoelectric focusing variant A2.4) has been determined. cDNA encoding this subtype was amplified by the polymerase chain reaction. Four independent full-length cDNA clones encoding A*0204 were analyzed to obtain a consensus sequence for this subtype. A*0204 differs from A*0201 by a single nucleotide change of G to T through the coding regions, resulting in an Arg to Met change at position 97. This substitution accounts for the isoelectric focusing pattern of the subtype. The same change occurs in other HLA-A specificities in association with other changes in its vicinity. The absence of additional substitutions in A*0204 suggests that it could have arisen from A*0201 by point mutation, and that recurrent mutations may take place during HLA diversification. The spatial location of this change implies that A*0204 must be a functional variant. Comparison of its sequence with other HLA-A2 subtypes reveals that much of the HLA-A2 subtype polymorphism is generated by variations in four neighboring positions, including position 97, which are located in two adjacent beta-strands on the floor of the peptide binding site of the molecule.

Amino Acid Sequence↗

The expression of HLA antigens by cells in the human cornea.

Although antigens of the human major histocompatibility complex, HLA, appear to be involved in the rejection of corneal allografts, the expression of these antigens by cells of the human cornea remains controversial. Using sensitive immunoperoxidase techniques, we readily demonstrated class I HLA antigens on corneal epithelial, stromal, and endothelial cells, regardless of donor age. Moreover, the expression of class I antigens by epithelium increased markedly from the central to the peripheral cornea. Finally, class II HLA antigens were found on cells scattered throughout both central and peripheral epithelium as well as the stroma. A cornea obtained from a donor of known HLA type expressed all expected and no unexpected polymorphic HLA determinants in the cornea, in a pattern similar to that seen for monomorphic HLA determinants.

Adult↗

Bone marrow transplantation with unrelated donors: what is the probability of identifying an HLA-A/B/Cw/DRB1/B3/B5/DQB1-matched donor?

Patients transplanted with marrow from an HLA-ABDR serologically matched unrelated donor suffer from more post-transplant complications than those who are transplanted with marrow from an HLA-identical sibling. This is most likely due to either HLA-ABDR incompatibilities not resolved by standard techniques and/or HLA polymorphisms not tested for by routine tissue typing (HLA-Cw,-DQ). By resolving these incompatibilities by molecular techniques combined with the in vitro cytotoxic T lymphocyte precursor frequency (CTLpf) test, we have shown that a high degree of HLA compatibility is associated with increased patient survival. However, higher requirements for HLA matching decrease the number of available donors. We have estimated the probability of finding an HLA-A/B/Cw/DRB1/DRB3/DRB5/DQB1 compatible donor based on 104 consecutive unrelated bone marrow donor searches initiated between January 1995 and December 1997, with December 1998 as the endpoint. For 96 patients (92.3%), one or more ABDR-identical donors were listed in the Bone Marrow Donor Worldwide Registry (BMDW). After contacting the registries, we obtained at least one (mean, 5.36; range, 1-20; total, 461) blood sample for 86 patients. A highly compatible donor was identified for 33/86 patients (38.4%), after testing an average number of 4.5 donors/patients (range, 1-13). However, by accepting an HLA-DRB3 or -DQB1 or -Cw incompatibility, this number would be as high as 68.6%. Approximately half of the patients (n = 40) for whom a search had been initiated have been transplanted: 22 patients with a perfectly matched donor, 15 patients with an HLA-DRB3 or -DQB1 or -Cw mismatch and three with other mismatches. The average time needed to identify the most compatible donor was 4 months. Extremely long searches seemed to be less useful, because after testing the first seven, a more compatible donor was seldom found. These results show that even when requirements for compatibility are high, the chances of finding a donor remain considerably low.

Bone Marrow Transplantation↗

Association between - 308 tumour necrosis factor promoter polymorphism and bronchial hyperreactivity in asthma.

BACKGROUND: Tumour necrosis factor (TNF) is a pivotal cytokine in the inflammation underlying asthma. The TNF gene is located in the polymorphic HLA class 3 region on chromosome 6p. Several polymorphisms in this region have been described and associated with alteration of TNF secretion in vitro. OBJECTIVE: In this study we tested the hypothesis that two such polymorphisms, lymphotoxin alpha NcoI B*1 and -308 TNF2 may be components of the genetic predisposition to asthma. METHODS: Five hundred and fifty-six random individuals were studied, comprising approximately equal numbers of asthmatic subjects, with or without atopy, and a nonatopic nonasthmatic control group. In addition, 355 subjects (172 asthmatics) from 60 multiplex families were typed at the LTalpha NcoI locus. RESULTS: There was an association between allele two of the -308 TNF polymorphism and bronchial hyperreactivity (OR 2.12, 95% CI 1.04-4.32, P = 0.036). However, there was no association with LTalpha NcoI alleles. To determine whether this was influenced by linkage disequilibrium within the MHC, 91 subjects with bronchial hyperreactivity and 85 control subjects were typed for class 2 and 3 alleles. Following identification of the extended TNF2 haplotype, we found no independent association of these alleles with BHR. CONCLUSIONS: We conclude that the -308 TNF2 promoter polymorphism may form a component of the genetic predisposition to BHR in asthma.

Adolescent↗

HLA and eye disease: a synopsis.

Human leukocyte antigen (HLA) gene products have been implicated in the pathogenesis of an increasing number of eye diseases, mainly inflammatory in nature. This perspective reviews the current hypotheses for why HLA polymorphisms are associated with specific eye diseases. Statistical problems in studies involving HLA associations are discussed, and possible solutions outlined. The relevance of HLA testing in routine ophthalmic practice, its practical and cost implications is also assessed.

Costs and Cost Analysis↗

[Immunologic modulation of tumor aggressiveness in cancer of the larynx. I. Genetic and molecular studies of HLA class I antigens].

A series of 60 primary laryngeal and hypopharyngeal tumours, 24 lymph node metastasis and normal tissue were evaluated in frozen sections for the expression of MHC class I antigens, using monoclonal antibodies. Normal distant mucosa of the larynx reacted to anti class I antibodies. In 13 primary tumours HLA class I antigens were not found. The remaining 47 showed a strong reaction to anti HLA-ABC (heavy chain) and anti beta 2-microglobulin, although in 5 cases staining was not observed with anti HLA-A locus specific monoclonal antibodies. Other tumour showed a selective loss of HLA-B antigens. These selective losses were confirmed using the correspondent anti-HLA polymorphic monoclonal antibodies. We have found differences in HLA class I expression when comparing primary tumours and autologous metastasis (3/15 cases). Finally, to further analyse the mechanism responsible for the HLA phenotypic changes observed, immunoprecipitation and SDS-PAGE of class I antigens, Northern and Southern blot analysis of MHC class I genes were performed. We have not detected class I gene rearrangement using HLA coding and locus specific non coding probes. However we have found a class I transcription defect in a class I negative tumour.

Carcinoma, Squamous Cell↗

HLA-G unique promoter region: functional implications.

In contrast to the highly polymorphic HLA class Ia genes that exhibit a broad somatic tissue distribution, the restricted constitutive expression of HLA-G to trophoblast and a subset of thymic epithelial cells suggests tight transcriptional control of this MHC class Ib gene. Transactivation of MHC class I genes is mediated by three major regulatory modules present in their promoter region namely enhancer A, ISRE, and SXY. The 220-bp promoter sequence of HLA-G comprises modified enhancer A and SXY modules and lacks the ISRE which renders this gene unresponsive to NK-kappaB, IRF1, and class II transactivator DNA-binding factors. A number of other HLA-G upstream regulatory elements have recently been described. Using different transgenic HLA-G mouse models under the control of the HLA-G promoter, several groups have shown by in situ hybridization and/or qualitative or quantitative RT-PCR that constitutive HLA-G transcriptional expression in placental tissue decreased with gestational time. This suggests that once the placenta is fully formed, the functions of HLA-G might not be so crucial.

Animals↗