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[Human histocompatibility HLA system. Considerations in the light of current concepts. VIII. Polymorphism of HLA-related MIC system].

The recent advances about a new distinct family of polymorphic genes MIC (PERB11) "mapped" in the region of the major histocompatibility complex of antigens MHC were presented. Some aspects connected with their molecular organisation, degree of polymorphism, expression, and immunogenetical function were discussed. Special attention sacrificed to results of investigations over existence of particular MICA allele association with some diseases. Many relating problems, especially functional MICA and MICB genes are still in interests both clinicians, and immunogenetists.

Genotype↗

HLA-DRB1 and -DQB1 polymorphism in liver recipients: relationship between HLA-DQB1*0302 allele frequency and acute rejection.

Polymorphism of HLA-DRB1 and HLA-DQB1 loci was performed in fifty-three orthotopic liver graft recipients as well as in 108 unrelated healthy controls. Nonradioactive SSOPs were used to study PCR-amplified DNA from peripheral blood lymphocytes and biopsied material. The comparison frequency for DQB1 alleles did not reveal any significant differences between the total group of liver recipients and controls. However, when the liver recipients were subgrouped according to their rejection episode manifestations, increased and significant frequencies were observed for HLA-DQB1*0302 allele in patients showing acute rejection episodes compared to healthy controls or patients without acute rejection. This relationship did not appear influenced by the amino acid beta alanine residue in the 57th position. On the other hand, the study of the DRB1 allele frequencies did not show significant differences in any study. These results suggest that HLA-DQB1 genes could be important in the liver graft alloresponses, opening a way to a better understanding of the special tolerance state, normally observed in this type of transplant, leading us to consider the possible HLA-DQB1*0302 allele effect on tolerance rupture.

Alleles↗

Tumor necrosis factor, tumor necrosis factor receptors type 1 and 2, lymphotoxin-alpha, and HLA-DRB1 gene polymorphisms in human T-cell lymphotropic virus type I associated myelopathy.

We studied tumor necrosis factor (TNF), lymphotoxin-alpha (LT-alpha), and TNF receptors type 1 (TNFR-1) and type 2 (TNFR-2) gene polymorphisms as well as HLA class II DRB1 alleles in Japanese patients with human T-cell lymphotropic virus type I (HTLV-I) associated myelopathy (HAM) (n = 51), patients with adult T-cell leukemia/lymphoma (ATL) (n = 48), asymptomatic HTLV-I carriers (n = 50), and HTLV-I seronegative, normal controls (n = 112). There were significant differences between HAM patients and normal controls in the distributions of TNF promoter region polymophism at position --857, the LT-alpha gene NcoI polymorphism, and the T-G substitution in exon 6 of the TNFR-2 gene. The distribution of the NcoI polymorphism of the LT-alpha gene was also significantly different between HAM patients and asymptomatic HTLV-I carriers. In contrast, we failed to detect any difference in the frequency of DRB1, TNF promoter at position --1031, --863, or the TNFR-1 promoter --383 polymorphism. The results suggest that the TNF/LT-alpha gene region within the HLA class III of chromosome 6 and the TNFR-2 gene region located on chromosome 1p36 might contribute to susceptibility to HAM, and that aberrant expression or function of these cytokines and the receptor could be involved in the development of HAM.

Alleles↗

Determination of an appropriate size of unrelated donor pool to be registered for HLA-matched platelet transfusion.

HLA-matched platelet transfusions from related or unrelated donors are effective in correcting bleeding tendencies of alloimmunized thrombocytopenic patients. To supply HLA-matched platelets, registration of unrelated HLA-typed donors and selection of compatible donors are necessary and practical considering HLA polymorphism. In this study, the frequencies of each possible HLA phenotype and of corresponding possible compatible donors were calculated with a computer from the table of frequencies of HLA-A and -B haplotypes. Appropriate sizes of such donor pools were theoretically evaluated in Japanese as well as in European Caucasoid and in North American Caucasoid populations. To enable more than 80 percent of patients to get more than five completely compatible donors, only 5000 donor candidates would be necessary for the Japanese population, whereas 18,000 and 25,000, respectively, would be required for European Caucasoid and North American Caucasoid populations.

Blood Donors↗

High-resolution DNA melting curve analysis to establish HLA genotypic identity.

High-resolution melting curve analysis is a closed-tube fluorescent technique that can be used for genotyping and heteroduplex detection after polymerase chain reaction. We applied this technique at the HLA-A locus and suggest that this method can be used as a rapid, inexpensive screen between siblings prior to living-related transplantation. At any locus, there are seven general cases of shared alleles among two individuals, ranging from identical homozygous genotypes (all alleles shared) to two heterozygous genotypes that share no alleles. We studied each case using previously typed cell lines to show that identity or non-identity can be determined in all cases by high-resolution melting curve analysis. HLA genotype identity is suggested when two individuals have the same melting curves. Identity is confirmed by comparing the melting curve of a 1:1 mixture with the individual melting curves. Non-identity at the amplified locus changes the heteroduplexes formed in the mixture compared with the original samples and alters the shape of the melting curve. The technique was tested on DNA from a 17-member CEPH family. High-resolution melting curve analysis revealed six different genotypes in the family. The genotype clustering was confirmed by sequence-based typing. Although this technique does not sequence or determine specific HLA alleles, it does rapidly establish identity at highly polymorphic HLA loci. The technique may also prove useful for confirmation of HLA genotypic identity between unrelated individuals prior to allogeneic hematopoietic stem-cell transplantation.

Base Sequence↗

HLA-G gene polymorphism in a Japanese population.

Polymorphism of the HLA-G gene in a Japanese population was investigated employing polymerase chain reaction (PCR)-single-strand conformation polymorphism (SSCP) analysis, PCR sequence-specific oligonucleotide (SSO) analysis, and DNA direct sequencing. Nucleotide sequence variations in exons 2, 3, and 4 of the HLA-G gene in 54 healthy Japanese individuals were examined. In addition, seven Japanese samples carrying common HLA haplotypes were analyzed. In total, nine single-base substitutions compared with the sequence of G*01011 were identified: one in intron 1 (nucleotide position 970), one in exon 2 (the third base of codon 57: G --> A), three in intron 2 (1264, 1276, and 1292), three in exon 3 (the third base of codon 93: C --> T, the third base of codon 107: A --> T, and the first base of codon 110: C --> A), and one in intron 3 (2334). The substitution at codon 110 was non-synonymous and led to an amino acid substitution from leucine to isoleucine. The other three nucleotide substitutions in exons were synonymous. Through analysis of combinations of the exon 2, 3, and 4 nucleotide sequences we identified four alleles, which we provisionally designated GJ1, GJ2, GJ3, and GJ4. The allele frequencies were estimated to be 0.33, 0.16, 0.45, and 0.06, respectively. Nucleotide sequences of GJ1, GJ2, and GJ4 were identical to G*01011, the clone 7.0E, and G*01013, respectively. GJ3 was a newly observed allele and was officially designated G*0104 by the WHO Nomenclature Committee in January 1996. Strong positive associations were observed between HLA-G alleles and HLA-A, -B, or -DRB1 alleles.

Alleles↗

Gamma ray-induced mutants as a tool for the production and characterisation of monoclonal antibodies against HLA-alloantigens.

To simplify the screening procedure for murine monoclonal antibodies specific for polymorphic HLA determinants, spleen cells from a mouse immunized with the human cell line BJAB-B95.8.6 were fused with NS1 mouse myeloma cells, and hybridoma supernatants were screened for their reactivity on BJAB-B95.8.6 and two gamma ray-induced HLA-loss mutants of this line. The use of these HLA-loss mutants allowed the rapid identification of two new allospecific MOABs designated TU160 and TU161. Serological as well as biochemical studies revealed TU160 to be specific for HLA-A2, and TU161 for HLA-B13 molecules, respectively. Both MOABs were determined to be antibodies of the IgG class and were able to precipitate their antigens from lysates of radioactively labeled cells.

Animals↗

Restriction fragment length polymorphism of HLA-DR and HLA-DQ allotypes in four endogamous groups of western India.

HLA-DR and HLA-DQ allele frequencies in four populations (Brahmin, Maratha, Gujarati Hindu Patel, and Parsi) of Bombay, western India, were analyzed using TaqI RFLPs detected by the cDNA probes DRB, DQB, and DQA. Although the overall differences in the HLA-DR and HLA-DQ genotype frequencies among the populations were not statistically significant, several population-specific haplotypes were significant. Multivariate analyses using data on 2 loci (HLA-DR and HLA-DQ) produced a meaningful pattern of genetic affinity and differentiation that parallels the analysis made when frequency data on 23 loci (21 blood group and protein loci and 2 class II antigen loci) are used. The RST for class II loci was 0.006; the genetic differentiation increased to 0.01 when data on 23 polymorphic loci were analyzed. The genetic affinity analysis shows the isolated nature of the Parsi and close genetic affinity between the two local populations of Bombay. Although the RFLP technique has several limitations compared with newly defined PCR-based methods, our analysis shows that the RFLP technique is still a useful adjunct method for studying HLA polymorphisms for which only limited data from the populations of the Indian subcontinent are available.

Consanguinity↗

[Genetic of the 21 hydroxylase deficiency].

A dose genetic linkage exist between the HLA complex (especially HLA-B), and the 21 hydroxylase deficiency form of adrenal hyperplasia. By their polymorphisms HLA antigens can be used as "markers" to follow the segregation of 21-OH deficiency in families, to diagnose the heterozygous offspring and eventually to offer a prenatal diagnosis to couples at risk. In late onset forms of 21-OH deficiency the same genetic linkage has been demonstrated with a high frequency of HLA-B14 antigen.

Adrenal Hyperplasia, Congenital↗

HLA-DPB1 gene polymorphism and multiple sclerosis: a large case-control study in the southwest of France.

The polymorphism at the HLA-DPB1 locus has been characterized in a large number of patients with multiple sclerosis (n = 112) and in healthy controls (n = 115). Both patients and controls lived in the southwest of France (in the Pyrénées Atlantiques) and had similar ethnic background. The typing procedure involved the selective amplification of the second exon of the DPB1 locus by polymerase chain reaction, followed by hybridization of the amplified DNA with 14 sequence-specific oligonucleotide probes. Individual alleles were identified by the pattern of hybridization of the different probes. The distribution of the DPB1 alleles was not significantly different in multiple sclerosis patients and controls (p = 0.11). This does not corroborate the reported association of multiple sclerosis with the primed lymphocyte typing (PLT)-defined DPw4 specificity and is not in favour of a role played by polymorphic residues of the DP molecule in susceptibility to multiple sclerosis.

Alleles↗

HLA class II polymorphism contributes to specify desmoglein derived peptides in pemphigus vulgaris and pemphigus foliaceus.

Susceptibility to Pemphigus, an autoimmune disease of the skin, has been previously linked to DRB1*0402, 1401/04 and DQB1*0503 in pemphigus vulgaris (PV), to DRB1*0102, 0404, 1402/06 in endemic pemphigus foliaceus in Brazil and to DRB1*04 in Italian patients suffering from pemphigus foliaceus (PF). The disease is caused by autoantibodies against desmoglein (Dsg1 in PF, Dsg3 in PV). Molecular typing of 57 French patients suffering from PV (37) and from PF (20) confirmed previous results concerning PV and showed that DRB1*0102 and 0404 are susceptible molecules to PF in France. We have analysed the characteristics of the 'pockets' of the susceptibility-associated molecules to PV and PF and we showed that (i) in PV, two kinds of Dsg3 derived peptides may be presented by HLA-DR according to HLA polymorphism (DRB1*0402 or DRB1*14/0406), (ii) the same Dsg1 peptides may be presented by DRB1*0102, DQB1*0404 or DRB1*14 in PF, (iii) the DRB1*14/0406 PV-related molecules may be able to present Dsg1 and Dsg3 peptides thereby providing an explanation for the cases of PV with combined responses to Dsg1 and to Dsg3 which are typified by a muco-cutaneous clinical phenotype.

Alleles↗

Human leukocyte antigen-A, -B, and -Cw polymorphism in a Berber population from North Morocco using sequence-based typing.

Class I human leukocyte antigen (HLA) polymorphism was examined in a Berber population from North Morocco, named Metalsa (ME). All data were obtained at high-resolution level, using sequence-based typing. The most frequent alleles were: HLA-A*0201 and A*0101; HLA-B*44 (B*4403 and B*4402); B*0801 and the B*50 allele group (B*5001 and B*5002); HLA-Cw*0602; and Cw*07 group (Cw*070101, Cw*070102, Cw*0702, Cw*0704, and Cw*0706), and Cw*040101. The novel HLA-B*570302 allele was identified. It differs at position 486 and position 855 from B*570301, resulting in synonymous Thr and Val. The analysis also evidenced some alleles common in Africans (A*3402, A*6802, A*7401, B*1503, B*4102, B*4202, B*7801, B*5802, Cw*1701, and Cw*1703) and some uncommon alleles (A*3004, B*2702, B*2703, B*5001,02, B*3503, and Cw*0706). The predominant HLA-A-Cw-B-DRB1-extended haplotypes in ME population were A*0101-Cw*0501-B*4402-DRB1*0402, A*240201-Cw*0701-B*0801-DRB1*030101, A*2301-Cw*040101-B*4403-DRB1*040501, A*0201-Cw*040101-B*4403-DRB1*1302, and A*3002-Cw*0602-B*5002-DRB1*0406. This study demonstrates a strong relatedness of ME to other Moroccan and North African populations, some characteristics of sub-Saharan Africans and evidenced the influence of various immigrations during centuries. Nevertheless, this study highlights some unique genetic traits of the ME population compared to other ethnic groups within Morocco, which could be of great interest for clinical aims, transplantation, and diseases.

Adult↗

HLA class II polymorphism in Aka Pygmies and Bantu Congolese and a reassessment of HLA-DRB1 African diversity.

HLA-DRB1, -DQB1 and -DPB1 polymorphisms were investigated in two African populations, the Basse Lobaye Aka Pygmies of the Central African Republic, and a Bantu-speaking group from the Democratic Republic of Congo Kinshasa. Allelic and haplotypic frequency distributions reveal marked differences between the two populations in spite of their geographical proximity: the Aka exhibit high frequencies for several alleles, especially at the DPB1 locus (0.695 for DPB1*0402), probably due to rapid genetic drift, while the Bantu distributions are more even. Genetic distances computed from DRB1 allelic frequencies among 21 populations from North and sub-Saharan Africa were applied to a multidimensional scaling analysis. African populations genetic structure is significantly shaped by linguistic differentiation, as confirmed by an analysis of molecular variance. However, selective neutrality tests indicate that many African populations exhibit an excess of heterozygotes for DRB1, which is likely to explain the genetic similarity observed between some North African and Bantu populations. Overall, this study shows that natural selection must be taken into account when interpreting the patterns of HLA diversity, but that this effect is probably minor in relation to the stochastic events of human population differentiations.

Adult↗

Helicobacter pylori infection: CagA-specific antibodies are associated with clinical outcome, but not with HLA-class II polymorphisms of the host.

In order to investigate the interrelation between immunogenetic host and bacterial factors the T-cell receptor (TCR) polymorphism TCRBV6S1 A/B, HLA-DRB1 alleles and cagA status was analyzed in 380 unrelated German individuals. H. pylori infection with cagA-positive bacterial strains was significantly associated with peptic ulcer disease in the German cohort. Patients homozygous for the non-functional TCRBV6S1B allele and presenting with peptic ulcer disease showed no CagA-specific antibodies in the majority of cases. There was no association between HLA-DRB1 alleles and the CagA status of infected individuals, although certain alleles show significant association to the infection status in different populations.

Alleles↗

Modulation on immunogenicity by HLA-B27 subtype polymorphism.

Cells from the same HLA-B27- individual, PA, were stimulated in vitro in primary mixed lymphocyte culture, with either B*2705+ or B*2704+ lymphoblastoid cell lines, in independent experiments. Cytolytic T lymphocytes (CTL) were cloned at limiting dilution and the clones obtained were screened for anti-B27 alloreactivity. Most of the CTL clones generated against the B*2705+ stimulator cells were directed against the B*2705 antigen. In contrast, no anti-B27 CTL clones were found among those derived against the B*2704+ stimulator cells. This was not due to a poor cytotoxic response against these cells because a large proportion of the T cell clones derived from this stimulation were cytotoxic. B2704 differs from B*2705 by only two amino acid changes at positions 77 and 152. Previous studies (Aparacio, P. et al., Eur. J. Immunol. 1988.18: 203) have shown that none of the anti-B*2705 CTL clones derived from donor PA and amenable to detailed characterization cross-reacted with B*2704, suggesting that most of this cytotoxic response was directed against an immunodominant determinant contributed for by residues 77 and/or 152 from B*2705. The present results further suggest that the changes at these positions in B*2704 alter this determinant in such a way that B*2704 becomes less immunogenic for the particular individual PA. Furthermore, a similar poor anti-B*2704 CTL response was obtained from a second B27- responder individual, AE, stimulated with another B2704+ cell line. The single anti-B*2704 CTL clone, 64.8P, isolated from this second individual, displayed an unusual reaction pattern in that it cross-reacted with all B27 subtypes with changes only at or close to positions 77 and 152, including B*2705. Significantly, the only HLA-B27 subtype that was not recognized by CTL 64.8P was B*2703, which differs from B*2705 only at residue 59. This residue is located in the three-dimensional structure at the opposite end from residues 77 and 152 at the surface of the antigen-binding groove of the class I molecule. Thus, the area around residues 77 and 152 is not an essential part of the epitope recognized by CTL 64.8P.

Antibodies, Monoclonal↗

Binding specificity of a class II-restricted hepatitis B epitope by DR molecules from responder and nonresponder vaccine recipients.

A small but significant proportion of people who receive the hepatitis B vaccine do not produce anti-hepatitis B antibodies, a phenomenon associated with certain human leukocyte antigen (HLA) class II haplotypes. We were interested in determining whether natural allelic differences between two HLA-DR4 molecules associated with responder versus nonresponder subtypes differed with respect to binding of an immunodominant hepatitis B surface antigen (HBsAg) peptide as measured using a resonant mirror biosensor. In contrast to our original hypothesis, we found a ten-fold difference in the affinity in favor of the nonresponder DRB1*0401 allele, with a KD of 6.89 x 10(-8) M versus a KD of 6.71 x 10(-7) M for the responder DRB1*0404 allele. Half-times of dissociation were 1.3 min and 7.7 min, respectively, although association rate constants for both HLA class II molecules were similar (approximately 10(4) M(-1)s(-1)). Of particular interest was the observation of different on-rates during the association phase, suggesting that stoichiometry of binding was not 1:1 or that different structural forms of the HLA-peptide complex exist. Our observations indicate that whereas HBsAg peptide binding to HLA class II molecules is influenced by HLA polymorphism, the nonresponse to hepatitis B vaccine associated with this HLA-DR4 subtype is not a result of failure of processed HBsAg to bind HLA class II molecules.

Alleles↗

Expression of major histocompatibility complex antigens and replacement of donor cells by recipient ones in human liver grafts.

The disappearance of certain cell populations of donor origin and their replacement by recipient-specific cells constitutes a possible explanation for the relatively mild course of acute rejection despite lack of MHC compatibility in human orthotopic liver transplantation (OLT). In the present report, graft biopsies of 12 OLT patients from a total of 42 patients were studied for expression of MHC antigens after transplantation using monoclonal antibodies to HLA-ABC and HLA-DR. The patients were selected based upon donor-recipient mismatching for HLA-A2, B7, Drw52, or DQw1. Monoclonal antibodies to these 4 polymorphic HLA antigens and monoclonal antibodies to HLA-ABC and -DR were applied to frozen tissue sections and visualized using an immunoperoxidase technique. Expression of HLA-ABC and -DR on, respectively, hepatocytes and bile duct epithelium were observed in posttransplant graft conditions such as viral infections, cholangitis, and acute rejection. However, no specific pattern of MHC antigen distribution was observed for these various pathological graft conditions. Disappearance of DR-positive Kupffer cells of donor origin and immigration of recipient ones was encountered in the early posttransplant biopsies. This Kupffer cell replacement coincided with a reversible episode of acute rejection. The disappearance of highly immunogenic cellular components as HLA-DR positive Kupffer cells of graft origin may be one of the mechanisms contributing to the mild rejection response observed in human liver transplantation.

Antibodies, Monoclonal↗

HLA class I and class II DNA typing and the origin of Basques.

Seven HLA class I and class II loci (HLA-A, B, C, DRB1, DQA1, DPA1 and DPB1) were typed at the DNA level in two populations of the Iberian Peninsula (100 Basque and 88 Catalan individuals) in order to unravel their genetic relationship and to compare these results with other European and Mediterranean populations. For the first time, the frequencies of alleles and haplotypes for the class I HLA loci at the DNA level in these populations are presented. The most frequent haplotype in both populations is A*29-Cw*1601-B*44-DRB1*0701-DQA1*0201-DPA1*0103-DPB 1*0401. Neither population differed markedly from the highly homogeneous European and Mediterranean genetic landscape. The Basques, a European outlier population according to classical genetic markers, appear to lie within the genetic European variation with a slight uniqueness and show no clear relationship to North African populations, as has been postulated in some previous HLA studies. Here, the range of possibilities provided by the highly polymorphic HLA system is stressed by using genetic distances, phylogenetic trees and principal component analyses in order to reconstruct population history.

Alleles↗