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101.
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Abstract: Although many studies have established an association between insulin-dependent diabetes mellitus (IDDM) and the class II region of the human major histocompatibility complex (MHC), it has been difficult to assign susceptibility to a single locus. Recently, two antigen-processing genes, TAP1 and TAP2 , have been identified within the region. Previous studies have reached conflicting conclusions as to the role of these genes in IDDM; it is uncertain whether an increased frequency of the allele TAP2A and a concomitant decrease in TAP2B are independent disease associations or secondary to linkage disequilibrium (LD) between TAP2A and HLA-DR3 . To further investigate this question, we have characterized TAP1 and TAP2 alleles in 129 IDDM patients from Sardinia, a population with limited genetic heterogeneity and a high disease incidence. When compared to 90 random controls, the only significant difference was a decrease in the minor allele TAP2C in patients. However, when HLA-DR and - DQ matched controls were compared, this difference disappeared. Further analysis suggested that TAP2C was in LD with HLA-DRB1*1401 and subtypes of HLA-DRB1*11 , alleles which were not observed in the IDDM population. LD was also observed between other TAP and HLA-DR alleles, in particular between TAP2A and HLA-DR3 in both patients and controls. Our data supports the conclusion that there is no primary association between TAP2 alleles and IDDM, and that previously reported associations may be due to LD with other class II loci. 相似文献
104.
Sophie Caillat-Zucman Eric Bertin Jos Timsit Christian Boitard Roger Assan Jean-Franois Bach 《European journal of immunology》1993,23(8):1784-1788
HLA class II association with insulin-dependent diabetes mellitus (IDDM) is well established but is still difficult to map to a particular locus. Polymorphism of the genes coding for transporter associated with antigen processing (TAP1 and TAP2), and located in the HLA class II region, was studied in 167 IDDM patients (116 adult-onset and 51 childhood-onset patients) and 98 normal controls using oligotyping after genomic amplification. A dominant protective effect was observed for theTAP2*0201 allele [relative risk (RR)=0.3, corrected probability (pc) < 0.001]. Conversely, susceptibility to IDDM was associated with apparent homozygosity for the TAP2*0101 allele (RR=3.4, pc < 0.001). Protection was independent from but additive to the protection conferred by the DRB1*02 DQB1*0602 haplotype (RR=0.06, pc<0.05), and antagonistic to the DRB1*03 DQB1*0201 and DRB1*04 DQB 1*0302 haplotypes predisposing effect (RR=1.1, not significant), arguing in favor of an absence of linkage disequilibrium between TAP2 and HLA class II genes. This was assessed by x2 analysis. TAP1 allelic distribution was not different among diabetics and controls. A significant association was observed between the presence of TAP2*0101 and that of islet cell antibodies (p < 0.05). These data suggest that the TAP2 gene, which encodes protein required for delivery of antigen peptides to class I molecules in the endoplasmic reticulum, could modulate the autoimmune response leading to β cell destruction. From a practical point of view, they make the combined screening of HLA class II and TAP2 loci a highly valuable tool in IDDM prediction. 相似文献
105.
Two new alleles, HLA-A*0108 and B*4031, were identified in north-western European Caucasoid subjects. A*0108 differed from A*010101 by a single substitution (C to T) at position 216 in exon 3, resulting in an amino acid difference of Arg to Trp at position 163. It was present on a haplotype with B*1501/60/70/71; Cw*0303; DRB1*1301; DRB3*0202; DQA1*0103; DQB1*0603 and its product reacted as a normal HLA-A1 specificity. B*4031 differed from B*4001 by two nucleotides in exon 3 (positions 20 (G to C) and 69 (A to G)) resulting in two amino acid differences (Arg to Ser at position 97 and Asn to Asp at position 114). It was found on a haplotype with HLA-A*03; Cw*0304; DRB1*0404/32; DRB4*0101/3/5; DQA1*03; DQB1*0302 and has the HLA-B60 specificity. Both alleles have frequencies of < 0.0002 in the largely north-western European Caucasoid blood donor population resident in Wales. 相似文献
106.
107.
Caballero A Alvés-León S Papais-Alvarenga R Fernández O Navarro G Alonso A 《Tissue antigens》1999,54(5):524-526
We studied the distribution of the HLA-DRB1, -DQA1 and -DQB1 alleles in 44 Afro-Brazilian patients with multiple sclerosis and 88 controls. Although no significant differences were found between the patients and controls for the DRB1 and DQA1 alleles, the HLA-DQB1*0602 allele was positively associated with multiple sclerosis (45.0% vs. 17.0%, Pc=0.024, RR=3.31). The positive extended haplotypes for DQB1*0602 were more frequent in patients than controls, although the differences were not statistically significant in any of them. These results in Afro-Brazilians are in line with other studies which have found DQB1*0602 to be associated with the disease in the absence of the DRB1*1501 allele. We therefore think that the association with the disease in this ethnic group is more allelic than haplotypic. 相似文献
108.
Kera J Mizuki N Ota M Katsuyama Y Pivetti-Pezzi P Ohno S Inoko H 《Tissue antigens》1999,54(6):565-571
Beh?et's disease has been known to be strongly associated with human leukocyte antigen (HLA) B51, one of the split antigens of HLA-B5. An increased incidence of HLA-B51 in the patient group has also been reported in an Italian population. Since the B51 antigen has been recently identified to comprise nine alleles, B*5101-B*5109, we performed HLA-B51 allele genotyping by the polymerase chain reaction-sequencing based typing (PCR-SBT) method as well as serological HLA-A and -B typing among 21 Italian patients with Beh?et's disease in order to investigate whether there is any correlation of one particular B51-associated allele with Behcet's disease. In addition, HLA class II genotyping was performed by the PCR-restriction fragment length polymorphism (RFLP) method. As a result, only the phenotype frequency of the B51 antigen was found to be significantly increased in the patient group as compared to the ethnically matched control group by the corrected P-value analysis (71.4% in patients vs. 17.9% in controls; chi2 = 14.26, Pc = 0.0042, R.R. = 11.5). In the B51 allele genotyping, 11 out of 15 B51-positive patients were B*5101 and the remaining four were B*5108, whereas all of 5 normal controls were B*5101, showing significant association of each allele with Beh?et's disease. No significant difference was observed between the patient and control groups in the HLA class II allelic distribution. This study revealed a strong association of Beh?et's disease in Italian with B*5108 as well as B*5101, providing important insight into the molecular mechanism underlying an HLA association with Beh?et's disease. 相似文献
109.
DNA typing of HLA in the patients with moyamoya disease 总被引:2,自引:0,他引:2
Takuya K. Inoue Kiyonobu Ikezaki Takehiko Sasazuki Takashi Ono Nobuhiro Kamikawaji Toshio Matsushima Masashi Fukui 《Journal of human genetics》1997,42(4):507-515
Summary Moyamoya disease is a clinical entity demonstrating a chronic occlusion of the cerebrovascular system. Although some possible
etiological factors have been postulated, the etiology of this disease is still unknown. So far, some investigations have
suggested the association between moyamoya disease and HLA in the serological typing. However, DNA typing of HLA have not
been performed yet. Thus, we performed DNA-typing of HLA in the unrelated Japanese patients with definite moyamoya disease,
using the polymerase chain reaction-sequence specific oligonucleotide probe (PCR-SSOP) technique. In the total patients,DQB1*0502 had a positive association with the disease. On the other hand,DRB1*0405 andDQB1*0401 showed a negative association. In comparing the early-onset and late-onset groups, two groups did not share the same disease
associated alleles at all. Thus, the etiology of moyamoya disease seem to have a genetic background. Furthermore, different
genetic factors might also be involved in the difference between the early-onset and late-onset groups. 相似文献
110.
Engstrand M Lidehall AK Totterman TH Herrman B Eriksson BM Korsgren O 《Clinical and experimental immunology》2003,132(1):96-104
The availability of tetrameric complexes of HLA class I molecules folded with immunodominant peptides makes it possible to utilize flow cytometry for rapid and highly specific visualization of virus specific CD8+ T cells. An alternate technique is to incubate whole blood with specific antigens and to subsequently detect and characterize responding T cells (e.g. by performing intracellular staining of interferon-gamma). By using an HLA-A2 tetramer construct folded with the same immunodominant CMV-peptide as that used for peptide pulsing, we monitored both the presence and functional capacity of CMV-specific CD8+ T cells. In addition T cell activation was assayed by determination of CD38 and CD69 expression. Twelve organ transplant patients and 31 healthy blood donors with latent CMV infection were investigated using CMV pp65 tetramer staining and intracellular staining of interferon-gamma after CMV pp65 peptide pulsing or CMV lysate pulsing. CMV-specific T cells were detected in similar absolute numbers as well as frequencies of T cells in the two groups investigated. However, the CMV-specific CD8+ T cells in immunosuppressed individuals showed a decreased functional response to the CMV-peptide, as evidenced by reduced interferon-gamma production when compared to healthy blood donors (19%; 42%, P < 0.005). In addition, CD38 expression was markedly higher in immunosuppressed patients compared to healthy blood donors (24%; 6%, P < 0.005). In a case report we demonstrate that reactivation of CMV can occur in an immunosuppressed patient with high number of CMV-specific T cells, but without functional capacity. Hence, these findings reflect impaired activation of cytotoxic T cells controlling latent CMV infection in immunosuppressed patients. 相似文献