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MHC and malaria: the relationship between HLA class II alleles and immune responses to Plasmodium falciparum.

In mice, immune responses to subunits of defined malaria antigens are regulated by genes mapping within the MHC and it has been suggested that such genetic restriction will be a major obstacle in the development of a human malaria vaccine. The relationship between class II human leukocyte antigen (HLA) genes and immune recognition of three candidate antigens for a vaccine against Plasmodium falciparum malaria has been investigated in a human population living in a malaria endemic area of West Africa. The study population was shown to be extremely heterogeneous for HLA class II alleles and marked differences in allelic frequency were detected between members of different ethnic groups. One class II DQA-DQB combination (serological specificity DQw2) was particularly common among members of the Fula ethnic group. This haplotype was significantly associated with higher than average levels of antibody to a peptide epitope, (EENV)6, of the malaria antigen Pf155/RESA. There was little evidence of association between HLA class II genotype and cellular proliferative or interferon gamma responses to the antigens tested. Overall, the number of significant associations between immune responses and specific HLA class II haplotypes was greater than would be expected by chance but less than would be expected if class II-dependent genetic restriction were a major factor governing human immune responses to malaria antigens. Thus, although some qualitative variation in the immune response to vaccine antigens may occur in ethnically different target populations, widespread HLA-associated nonresponsiveness to a multivalent subunit malaria vaccine is unlikely.

Adolescent↗

HLA class II DNA typing in Buerger's disease.

To analyze the genetic factors involved in the pathogenesis of Buerger's disease, the polymorphisms of HLA class II genes (HLA-DP, -DQ and -DRB) were investigated in 36 patients using polymerase chain reaction-restriction fragment length polymorphism (PCR-RFLP) method. HLA class I (B54 and B52) and HLA class II (DQ alleles) genes were also typed by polymerase chain reaction-sequence-specific oligonucleotide probe (PCR SSOP) method to confirm alleles. PCR-RFLP typing revealed that the frequencies of HLA class II genes, DRB1*0405, DQB1*0401, DQA1*03 and DPB1*0501, were significantly increased in the patients with Buerger's disease compared with the healthy controls. Further, DNA typing confirmed that HLA-B54 was associated with Buerger's disease. These results suggested that the haplotype of HLA-B54-DRB1*0405-DQB1*0401- DQA1*03-DPB1*0501 was associated with Buerger's disease in Japanese population.

Adult↗

DNA polymorphism of HLA class II genes in alopecia areata.

We investigated the DNA restriction polymorphism (RFLP) of the Major Histocompatibility Complex (MHC) class II genes: HLA-DQA, -DQB, -DPA, and -DPB in 20 Danish patients with alopecia areata (AA) and in healthy Danes. The frequency in AA of the DQB1*0301 and DQw7 associated DQB Bgl/II 4.2 kb fragment was increased to 65.0 per cent compared to 23.2 per cent in controls (RR = 6.1; p less than 10(-3)) suggesting that the previously reported associations between AA and both DR4 and DR5 is secondary to an association between AA and DQB1*0301, which codes for the beta-chain of the HLA-DQ molecule of the serologically defined HLA-DQw7 specificity. Individuals who carried both DQA1*0501 and DQB1*0301 seemed to have a further increased risk of developing AA compared to individuals carrying only one of these HLA class II genes. Analysis of the combined presence of DQB1*0301 and DPA1*0103 in AA suggests that an additive risk effect (synergism or interaction) exists between the DQB1*0301 and DPA1*0103 alleles which are situated at different HLA class II loci.

Alopecia Areata↗

Seronegative and weakly seropositive rheumatoid arthritis differ from clearly seropositive rheumatoid arthritis in HLA class II associations.

OBJECTIVE: To study the role of HLA class II genes in conferring susceptibility to seronegative vs seropositive rheumatoid arthritis (RA). METHODS: The distribution of DRB1 and DPB1 alleles in 33 seronegative, 20 weakly seropositive, 79 distinctly seropositive patients with RA, and in 181 healthy controls was determined by genomic typing: IgM rheumatoid factor (RF) seronegativity was ascertained in Waalers' latex, and ELISA tests. RESULTS: DRB1*0101/2 (encoding variants of DR1) was associated with weakly seropositive RA (and possibly seronegative RA) but not the clearly seropositive disease. In contrast DRB1*0401 and DRB1*0408 (encoding the Dw4 and Dw14.2 variants of DR4, respectively) were associated with clearly seropositive RA but were not increased among patients having weakly seropositive or seronegative RA. DRB1*0404 (encoding the Dw14.1 variant of DR4) was increased to some extent in all examined RA subsets. The distribution of DPB1 alleles in the patients was as in the controls. CONCLUSION: Seronegative and weakly seropositive RA differ from clearly seropositive RA in HLA class II associations.

Adult↗

Distribution of HLA class II alleles among Norwegian Caucasians.

We report genomic HLA class II typing of 181 randomly selected Norwegian controls. Seventeen DRB1, 7 DQA1, 10 DQB1, 2 DPA1, and 16 DPB1 alleles were found in the tested population. HLA class II antigen and allele frequencies are given, as well as the distribution of DRB1, DQA1, DQB1 haplotypes. Linkage disequilibrium between some DPB1 alleles and DRB1 and/or DQB1 alleles are also reported.

Alleles↗

Human T-cell clones used to define functional epitopes on HLA class II molecules.

Polyclonal reagents have been used to define HLA class II molecules in conventional serologic and cellular typing. We generated human alloreactive T-cell clones to analyze the functional fine specificities of HLA class II molecules that might be important for the phenomenon of HLA and disease association. We chose to examine HLA-Dw14, an HLA-D specificity that has been associated with juvenile rheumatoid arthritis. In this paper we have presented data that suggest that conventional cellular typing does not reflect the distribution of T-cell epitopes on major histocompatibility complex class II molecules. We describe three alloreactive T-cell clones that have defined three separate Dw14-associated T-cell epitopes. Two of these epitopes were on a DR-region molecule; the third was located on a DQ-region product. In a panel of unrelated DR4-positive donors, these three DW14-associated determinants were present in a high frequency but were not linked to each other. Within the tested panel of DR4-positive cells, all possible combinatorial arrangements of these three allodeterminants were seen. The concurrent expression of any two of the three allodeterminants was equivalent to a positive typing response for Dw14. Our finding that HLA-Dw14 is not characterized by a unique allodeterminant but by the combinatorial recognition of independently distributed T-cell interaction sites suggests that analysis of HLA and disease association may be more clearly demonstrated through the use of human T-cell clones.

Antibodies, Monoclonal↗

Hyperinducibility of HLA class II expression of thyroid follicular cells from Graves' disease. A primary defect?

Thyroid follicular cells (thyrocytes) from Graves' disease (GD) patients' thyroid glands express HLA class II molecules "ectopically." This phenomenon has been attributed to induction by locally produced cytokines and may be relevant to disease pathogenesis. We have compared IFN-gamma-mediated induction of HLA class II in thyrocytes from glands affected with GD and a nonautoimmune disease (MNG), to investigate a possible differential regulation of HLA expression between these two pathologies. HLA induction has been measured in primary thyrocyte cultures and control autologous macrophages stimulated or not stimulated with IFN-gamma. Comparison of flow cytometric data using an improved algorithm demonstrated that expression of HLA class II molecules is more readily induced in thyrocytes from GD than from MNG thyroid glands. This higher inducibility was parallel to a faster and stronger induction of HLA class II message in GD thyrocytes but did not correlate with the levels of HLA class II or class I originally expressed by thyrocytes in the tissue or with the degree of lymphocytic infiltration of the gland. There was no association with a particular HLA class II allele or with the presence of IFN-gamma and IL-2 in the tissue, as assessed by reverse transcription-PCR. No differences in the induction of class II were found in macrophages from each group of patients. These results suggest that an intrinsic feature of thyrocytes from GD patients is an up-regulation of HLA class II expression and that this is a characteristic that may facilitate the triggering of autoimmunity to "hyperinducible" thyroid glands.

Adolescent↗

Linkage analysis of HLA class II genes in Swedish multiplex families with multiple sclerosis.

We assessed the influence of human leukocyte antigen (HLA) class II as susceptibility genes in multiple sclerosis (MS) by linkage analysis. Other research groups, who have shown negative results in studies on affected sibling pairs, have questioned the influence of the HLA class II genes, although they confirmed the association of the DR15,DQ6,Dw2 haplotype to MS. In this report, we find a significant lod score (>3) when using a 2-point linkage analysis of 49 small Swedish nuclear MS families with at least two affected family members, typed for HLA class II alleles by PCR amplification with sequence-specific primers. We obtained maximum lod scores when we used dominant or intermediate models with low penetrance. We found that the positive effect on the total lod score was not confined to those families carrying the presumed susceptibility HLA-haplotype Dw2. This observation supports the notion of a functional role of the HLA class II molecules themselves in MS. In addition, we observed significant transmission distortion and an intrafamilial association of the MS-associated class II haplotype HLA-Dw2. These results indicate that the HLA class II genes are of clear importance for MS in the studied population.

Disease Susceptibility↗

Chimeric IgA antibodies against HLA class II effectively trigger lymphoma cell killing.

Antibodies against human leukocyte antigen (HLA) class II, such as 1D10 or Lym-1, are currently being evaluated for the treatment of B-cell lymphomas. Previous studies have demonstrated that, in addition to IgG Fc receptors, the human myeloid IgA receptor (Fc(alpha)RI, CD89) also effectively triggered tumor cell killing. Therefore, we used the variable light and heavy chain sequences from another murine anti-HLA class II hybridoma, F3.3, to generate a panel of chimeric human/mouse antibodies, including human immunoglobulin A1 (IgA1), IgA2, IgG1, IgG2, IgG3, and IgG4. Antibody production was accomplished by stable transfection of baby hamster kidney cells, and binding activity and specificity were confirmed by enzyme-linked immunosorbent assay (ELISA) and Western blotting. All constructs demonstrated similar binding to HLA class II. Functional studies revealed that chimeric IgG1, IgA1, and IgA2 triggered similar levels of tumor cell lysis. Analyses of effector populations, however, demonstrated that killing by chimeric IgG1 constructs was triggered mainly by human mononuclear cells and complement, while IgA1 and IgA2 mediated effective lysis by polymorphonuclear neutrophils. Importantly, IgG1 and both IgA isotypes were equally effective at killing freshly isolated human chronic lymphocytic leukemia cells. Chimeric IgA antibodies against HLA class II may constitute attractive reagents for lymphoma therapy.

Animals↗

A trans-acting class II regulatory gene unlinked to the MHC controls expression of HLA class II genes.

Class II (or Ia) antigens are highly polymorphic surface molecules which are essential for the cellular interactions involved in the immune response. In man, these antigens are encoded by a complex multigene family which is located in the major histocompatibility complex (MHC) and which comprises up to 12 distinct alpha- and beta-chain genes, coding for the HLA-DR, -DQ and -DP antigens. One form of congenital severe combined immunodeficiency (SCID) in man, which is generally lethal, is characterized by an absence of HLA-DR histocompatibility antigens on peripheral blood lymphocytes (HLA class II-deficient SCID). In these patients, as reported here, we have observed an absence of messenger RNA for the alpha- and beta-chains of HLA-DR, -DQ and -DP, indicating a global defect in the expression of all class II genes. Moreover, the lack of expression of HLA class II mRNAs could not be corrected by gamma-interferon, an inducer of class II gene expression in normal cells. Family studies have established that the genetic defect does not segregate with the MHC. We conclude, therefore, that the expression of the entire family of class II genes is normally controlled by a trans-acting class II regulatory gene which is unlinked to the MHC and which is affected in the patients. This gene controls a function or a product necessary for the action of gamma-interferon on class II genes.

Gene Expression Regulation↗

Enhancement of thyrocyte HLA class II expression by thyroid stimulating hormone.

HLA Class II molecules are expressed by human thyroid epithelial cells (thyrocytes) in thyroid autoimmunity, although these cells are normally Class II-. gamma-Interferon (gamma-IFN) is probably involved in this expression, as suggested by its ability to induce Class II in cultured normal thyrocytes. We have now found that thyroid stimulating hormone (TSH) enhances Class II expression induced in cultured thyrocytes by gamma-IFN, and effects similar to those of TSH were obtained with dibutyryl cyclic AMP. A proportion of thyrocytes also expressed Class II following treatment with TSH or dibutyryl cyclic AMP in the absence of gamma-IFN, but the optimal activity of these mediators then appeared to be dependent upon the occurrence of some pre-existing Class II expression. These findings give insights into how a variety of mediators may influence Class II expression in thyroid autoimmunity.

Autoimmune Diseases↗

[Molecular models of the interaction between T4 antigen and HLA class II antigens or the LAV virus].

HLA class II beta chains contain in their aminoterminal polymorphic domain a highly conserved tetrapeptide (RFDS) also present in protein F encoded by the LAV virus. Homology between this tetrapeptide and the fibronectin cell-attachment site (RGDS) has suggested a role in cell adhesion processes. I propose here that such a structure, that I call adhesiotope, would allow stabilization of intermolecular contacts between molecules present at the surface of interacting cells or viruses. Analysis of a three dimensional model of the T4 antigen suggests that the tetrapeptide RADS is located at the surface of the aminoterminal, immunoglobulin-like domain. A model is proposed in which interaction between the adhesiotopes present in class II antigens (RFDS) and T4 (RADS) is the molecular basis of conjugate formation between antigen presenting cells and T helper lymphocytes. The LAV virus, having the RFDS adhesiotope on its surface, would mimic class II antigens in their interaction with T4 and infect selectively T4 positive cells, resulting in the acquired immune deficiency syndrome.

Antigens, Differentiation, T-Lymphocyte↗

Beneficial effects of HLA class II incompatibility in living donor liver transplantation.

OBJECTIVE: To analyze the impact of HLA matching in both patient and graft evolution after LDLT. MATERIAL AND METHODS: Twenty recipients underwent LDLT with follow-up of 3 to 30 months. HLA typing was performed on all donor-recipient pairs; class I antigens were typed using serological methods and class II loci (DRB1 and DQB1) using low-resolution molecular typing. Recipient sera were cross-matched with donor lymphocytes. Antigen mismatches were analyzed for each locus individually, for each class as a whole and for HLA class I immunogenic triplets according to HLA Matchmaker software. RESULTS: Eighteen of 20 donor-recipient pairs were HLA haploidentical. All but one of the recipients had a negative cross-match before transplantation. While there was not a statistically significant correlation between HLA class I mismatches and the incidence of acute rejection episodes, HLA class II matching in DRB1 and DQB1 loci appeared to be associated with a higher incidence of acute rejection episodes after LDLT. Both host-versus-graft (HvG) and graft-versus-host (GvH) HLA class II compatibilities correlated with rejection episodes, especially for the GvH direction. CONCLUSIONS: HLA class II matching for DRB1 and DQB1 loci appears to be associated with a higher incidence of acute rejection episodes after LDLT. In this study, mismatches in class I HLA antigens are not related to an higher incidence of acute rejection episodes nor other complications after LDLT. Further studies are needed to unveil the role of HLA matching in LDLT.

Adolescent↗

Genetic susceptibility to multiple sclerosis in a Shanghai Chinese population. The role of the HLA class II genes.

The association of MS with the HLA class II loci DR and DQ was investigated in subjects of Shanghai Chinese and British Caucasian origin. Our aim was to determine whether common alleles predispose to the disease in both races. In the Caucasian population MS was significantly positively associated with the putative haplotype DRB1*1501, DQA1*0102, DQB1*0602. In contrast, HLA class II alleles were not found to predispose to the disease in the Shanghai Chinese, suggesting that this haplotype is unlikely to be a universal susceptibility determinant. The absence of a disease association with the HLA-DR and -DQ genes in the Chinese population has a number of possible explanations. Our study suggests that other genetic and/or environmental components may be more important in determining susceptibility to MS in this race.

Asian People↗

Immunogenetics of rheumatoid arthritis and primary Sjögren's syndrome: DNA polymorphism of HLA class II genes.

We investigated the DNA restriction fragment length polymorphism (RFLP) of the Major Histocompatability Complex (MHC) class II genes: HLA-DRB, -DQA, -DQB, DPA, and -DFB in 24 patients with rheumatoid arthritis (RA), in 19 patients with primary Sjögren's syndrome (primary SS), and healthy Danes. The frequencies of DNA fragments associated with the following HLA class II genes were increased in RA when compared to normal controls: DRB1*04 (DR4) (relative risk, RR = 7.4, P less than 10(-3), DRB4*0101 (DRw53) (RR = 9.6, P less than 10(-3), DQA1*0301 (RR = 9.6, P less than 10(-3), DQB1*0301 (DQw7) (RR = 2.8, P less than 0.05, 'corrected' P greater than 0.05), and DQB1*0302 (DQw8) (RR = 4.5, P less than 10(-2). Negative associations were found between RA and DRB1*1501 (DR2/DRw15) (RR = 0.2, P less than 10(-2) and DQB1*0602 (DQw6) (RR = 0.2, P less than 10(-2), 'corrected' P greater than 0.05). The frequencies in RA of other HLA class II associated DNA fragments including DPA and DPB and the antigens DPw1-w6 defined by primed lymphocyte stimulation, did not differ significantly from those in controls. In primary SS, the frequency of HLA-B8 was significantly increased (RR = 9.0, P less than 10(-3). Positive associations were found between primary SS and DNA fragments associated with DRB1*03/13 (RR = 6.8, P less than 10(-3), DRB3*0101 (DRw52) (RR = 5.7, P less than 10(-2), DQA1*0501 (RR = 6.8, P less than 10(-3), DQB1*0201 (DQw2) (RR = 11.6, P less than 10(-5), and DQB1*0602 (DQw6) (RR = 2.7, P less than 0.05, 'corrected' P greater than 0.05).(ABSTRACT TRUNCATED AT 250 WORDS)

Arthritis, Rheumatoid↗

DNA polymorphism of HLA class II genes in pauciarticular juvenile rheumatoid arthritis.

We investigated the DNA restriction fragment length polymorphism (RFLP) of the major histocompatibility complex (MHC) class II genes: HLA-DRB, -DQA, -DQB, DPA, and -DPB in 54 patients with pauciarticular juvenile rheumatoid arthritis (PJRA) and in healthy Danes. The frequencies of DNA fragments associated with the following HLA class II genes were increased in PJRA when compared to normal controls: DRB1*08 (DRw8) (35.2% vs 10.3%, RR = 4.6, p less than 10(-3), DRB3*01/02/03 (DRw52) (76.3% vs 48.1%, RR 3.5, p less than 10(-3)), DQA1*0401 (41.0% vs 7.4%, RR = 7.9, p less than 10(-3)), DQA1*0501 (55.6% vs 29.7%, RR = 3.0, p less than 10(-2), DQB1*0301 (DQw7) (46.2% vs 17.5%, RR = 4.0; p less than 10(-2)), DPA1*0201 (44.2% vs 7.9%, RR = 8.7, p less than 10(-5)), and DPB1*02 (DPw2) (40.7% vs 7.1%, RR = 8.5, p less than 10(-6)). The frequency of DRB1*11 was not significantly increased. The frequencies of DNA fragments associated with the following HLA class II genes were decreased in PJRA although not statistically significantly so after 'correction' of p values: DRB1*04 (14.8% vs 40.2%, RR = 0.27; p less than 10(-3)), DRB1*07 (0% vs 25.9%, RR = 0.04, p less than 10(-3)), DRB4*0101 (DRw53) (25.9% vs 53.6%, RR = 0.31, p less than 10(-3)), DQA1*0102 (11.6% vs 36.0%, RR = 0.25, p less than 10(-4)), and DQA1*0201 (2.6% vs 34.2%, RR = 0.05, p less than 10(-2)).(ABSTRACT TRUNCATED AT 250 WORDS)

Arthritis, Juvenile↗

HLA class II genes in primary sclerosing cholangitis and chronic inflammatory bowel disease: no HLA-DRw52a association in Swedish patients with sclerosing cholangitis.

The familial predisposition to chronic inflammatory bowel disease and the increased concordance rate in monozygotic twins with Crohn's disease, suggest that genetic factors influence disease susceptibility. A 100% association with the supertypic HLA class II specificity DRw52a was recently described in white North American patients with primary sclerosing cholangitis, with or without concurrent ulcerative colitis. HLA class II alleles of the DR, DQ, and DP subregions were determined by genomic typing techniques in a large group of Swedish patients with ulcerative colitis or Crohn's disease as well as in a series of patients with primary sclerosing cholangitis. No statistically significant HLA class II association was observed in any of the investigated diseases or when the patients were subgrouped according to disease site or occurrence of extraintestinal manifestations, except an insignificant increase of the DRw17, DQw2 haplotype in patients with primary sclerosing cholangitis. The failure to confirm the well established DRw17 association in Swedish patients with sclerosing cholangitis probably represents a statistical type II error. Furthermore, this study did not verify the recently described strong DRw52a association in sclerosing cholangitis--52% of the patients were DRw52a positive compared with 28% of the controls (p less than 0.05, pc NS). This discrepancy was probably caused by different typing techniques. The DRw52a specificity was determined directly by hybridising HLA-DRB3 genes, group specifically amplified by the polymerase chain reaction, with an allele specific oligonucleotide probe, whereas in the previously mentioned study DRw52a was assigned by indirect serological criteria, which overestimate the frequency of this allele.

Blotting, Southern↗

HLA class II influences the immune response and antibody diversification to Ro60/Sjögren's syndrome-A: heightened antibody responses and epitope spreading in mice expressing HLA-DR molecules.

Abs to Ro/SSA Ags in the sera of patients with systemic lupus erythematosus and Sjögren's syndrome are influenced by the HLA class II genes. To investigate the role of individual HLA class II genes in immune responses to human Ro60 (hRo60), mice lacking murine class II molecules and carrying either HLA genes DR2(DRB1*1502), DR3(DRB1*0301), DQ6(DQA1*0103/DQB1*0601), or DQ8(DQA1*0301/DQB1*0302), were immunized with rhRo60. The results show that hRo60 induces strong T and B cell responses in DR2, DR3, and DQ8 mice in comparison to weaker responses in DQ6 mice. In all mice, the majority of the dominant T cell epitopes were located in the amino portion (aa 61-185) and the carboxy portion (aa 381-525) of the hRo60 molecules. In contrast, the early dominant B cell epitopes were located in the middle and carboxy portion of the hRo60 molecule (aa 281-315 and 401-538). In DR2, DR3, and DQ8 mice, the B cell epitopes subsequently spread to the amino and carboxy portion of the hRo60 molecule but were limited to the middle and carboxy portion in DQ6 mice. The DR2 and DR3 mice produced the highest titers of immunoprecipitating Abs against hRo60 and native mouse Ro60. In addition, only DR2 mice exclusively produced immunoprecipitating Abs to native mouse Ro52 and Abs to mouse La by slot blot analysis, whereas in other strains of mice Abs to mouse La were cross-reactive with the immunogen. The results of the present study demonstrate the importance of HLA class II in controlling the immune responses to the Ro-ribonucleoprotein.

Amino Acid Sequence↗