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Biomedical subjects

M Bunce

Publications and source records attributed to M Bunce.

At least 73 records · Page 4Linked to original sources

Complete coding regions of two novel HLA-B alleles detected by phototyping (PCR-SSP) in the British caucasoid population: B*5108 and B*5002.

Two previously reported PCR-SSP variants of the HLA-B locus, B51GAC and B45v, were investigated by RT-PCR cloning and nucleotide sequence analysis of their complete coding regions. They have been shown to correspond to the new alleles B*5108 and B*5002, both of which differ from the common B*5101 and B*5001 subtypes, respectively, by amino acid replacements at their alpha-2 domain alpha-helices. The primary structure of B*5002, intermediate between those of B*4501 and B*5001, raises further concern about the current classification of B*45 as a B12 rather than as a B*50 subtype.

Alleles↗

High resolution HLA-C typing by PCR-SSP: identification of allelic frequencies and linkage disequilibria in 604 unrelated random UK Caucasoids and a comparison with serology.

Recent evidence indicates that HLA-C molecules are biologically relevant by eliciting T-cell responses and exerting control over NK cell function. In addition, HLA-C is associated with susceptibility to various diseases, notably psoriasis vulgaris. Clarification of the full biological roles for HLA-C has however proved difficult because detection of HLA-C antigens by complement mediated cytotoxicity using alloantisera is inefficient. Up to 50% of individuals in every race have serologically undetectable HLA-C locus antigens due to a combination of relatively low expression, lack of serological reagents and a lack of information about the distribution of the HLA-C blank alleles. Recently, amplification of DNA using sequence-specific primers (PCR-SSP) has proved a reliable, accurate and rapid method for medium resolution HLA-C typing. We have now developed high resolution HLA-C typing by PCR-SSP utilizing allele and group-specific PCR-SSP reactions which can identify all HLA-C alleles (except non-coding change alleles) in most heterozygous combinations. Using this system we have typed 604 unrelated United Kingdom Caucasoids to generate accurate frequency and linkage disequilibrium data. To assess the validity of serology for HLA-C, PCR-SSP typings for 527 out of the 604 individuals were compared to serology. We find that the frequency of many HLA-C antigens has been underestimated by serology and some antigens such as Cw6 are consistently assigned incorrectly by serology. The overall discrepancy rate between serology and SSP was high at 37% (195/527). High-resolution HLA-C typing of 112 International Histocompatibility Workshop cell lines has also been performed.

Alleles↗

A rapid molecular method (polymerase chain reaction with sequence-specific primers) to genotype for ABO blood group and secretor status and its potential for organ transplants.

We hypothesize that kidneys from non-secretor blood group A2 donors may be used for transplant into non-A recipients. In addition, we believe that organs from A2 donors may be used in non-A recipients where the anti-A titer is low. In order to reliably identify non-secretor A2 kidneys from cadaver donors, we have developed a rapid molecular method. The PCR-SSP-based method was developed to genotype ABO blood group and secretor status. Samples of known blood group ABO and Lewis phenotype determined by standard serological methods were used to appraise the method. A retrospective renal cadaver donor study was conducted to assess the potential of using A2 non-secretor organs for transplantation into non-A recipients. Phenotype frequencies of blood group A donors were 76% and 24% for A1 and A2 subgroups respectively, whereas 27% of the donor sample population were non-secretors. Three donors were identified as A2 non-secretors, and analysis was performed to theoretically place the organs by considering them as blood group O. These results coupled with a detailed analysis of HLA type and antibody status of our panel suggests that using A2 donors would be a useful adjunct to strategies for transplanting highly sensitized patients and redressing the donor-recipient imbalance in terms of blood group.

ABO Blood-Group System↗

High-resolution HLA-DQB1 typing using the polymerase chain reaction and sequence-specific primers.

Polymorphism at HLA-DQB1 is known to influence tissue compatibility and disease susceptibility; however, current DQB1 typing methods are unable to distinguish the 32 currently recognized DQB1 alleles. We have developed a 32-reaction PCR-SSP method capable of differentiating all DQB1 alleles that differ in amino acid sequence. This method can resolve all heterozygous combinations of DQB1 alleles, with the exception of several combinations involving alleles not thus far detected in Caucasoid populations.

Base Sequence↗

Novel, cross-restricted, conserved, and immunodominant cytotoxic T lymphocyte epitopes in slow progressors in HIV type 1 infection.

HIV-specific cytotoxic T lymphocytes (CTLs) play an important role in the immune response to HIV infection. Long-term nonprogressors (LTNPs) or slow progressors (SPs) in HIV infection may make qualitatively different CTL responses compared to those generated by seropositive individuals who progress to disease at a faster rate. The class I molecule HLA-B*57 has been identified as one restriction element overrepresented in SP groups studied, and, together with the closely related molecule HLA-B*58, occurs commonly in ethnic groups where HIV is most prevalent. In this study, we have identified five new HLA-B*57-restricted CTL epitopes recognized by SP donors, one of which is also HLA-B*5801 restricted. These HLA-B*57-restricted responses represent the dominant HIV-specific CTL response in each of the SP donors tested. These and other such epitopes may be an important component in future vaccine design.

Amino Acid Sequence↗

A correlation between HLA-C matching and donor antirecipient CTL precursor frequency in bone marrow transplantation.

A newly developed, reliable, DNA-based method for typing for alleles of the HLA-C locus has been applied in the context of unrelated, volunteer donors for bone marrow transplantation. Some donors matched for HLA-A, -B, -DR, and -DQ have been found to generate in vitro high frequencies of CTL reactive with the recipient's cells. Here we demonstrate that there is a highly significant correlation of the frequencies of CTL precursors and incompatibility at the HLA-C locus. These data indicate that HLA-C locus incompatibility should be avoided in unrelated donor bone marrow transplantation.

Bone Marrow Transplantation↗

Contribution of genes of the major histocompatibility complex to susceptibility and disease phenotype in inflammatory bowel disease.

BACKGROUND: Despite strong evidence implicating immune dysfunction and genetic predisposition in the pathogenesis of the chronic inflammatory bowel diseases Crohn's disease and ulcerative colitis, the importance of the genes of the major histocompatibility complex remains uncertain. We have investigated the contribution of HLA DRB1 and DQB genes by the strategies of non-parametric linkage analysis (affected sibling pair method) as well as association study. The relation between genotype and phenotype was examined in detail. METHODS: For linkage analysis 74 families in whom two or more siblings had inflammatory bowel disease were studied. A total of 83 affected sibling pairs were involved: in 42 pairs both siblings had Crohn's disease; in 29 both had ulcerative colitis; in 12 one sibling had Crohn's disease, the other ulcerative colitis. For the association study there were 175 patients with ulcerative colitis, 173 with Crohn's disease, and 472 controls. Details of sex, age of onset, disease extent, and family history were analysed. 24 patients with ulcerative colitis and 92 with Crohn's disease required surgery for refractory disease. HLA DRB1 and DQB1 gene-typing was performed by polymerase chain reaction with sequence-specific primers. FINDINGS: In ulcerative colitis, the sharing of alleles among affected sibling pairs provided evidence for linkage with DRB1 locus (p = 0.017, chi2 = 5.32). Of 29 affected sibling pairs studied, only one pair shared no DRB1 DQB haplotypes. 15 shared two DRB DQB haplotypes. In contrast, no linkage was noted for Crohn's disease (42 sibling pairs; p = 0.30, chi2 = 0.16) or for inflammatory bowel disease overall (83 sibling pairs, p = 0.16, chi2 = 2.28). In the association study the rare DRB1*103 (8.3% vs 3.2% in controls) and DRB1*12 (8.6% vs 2.1% in controls) alleles were associated with ulcerative colitis (p = 0.0074, chi2 = 7.22, odds ratio OR = 2.9 [95% CI 1.3-6.4] and p = 0.0056, chi2 = 12.63, OR = 4.33 [1.8-11.0] respectively). No association with alleles representing DR2 (p = 0.55, chi2 = 0.34) was noted. No overall association was seen in Crohn's disease. In ulcerative colitis, the frequency of DRB1*0301 DQB*0201 (DR3 DQ2) was reduced in females (9.8% vs 26.3% in controls, p = 0.037, chi2 = 8.39 OR = 0.34 [0.15-0.71]), particularly in those with distal disease (2.3%, p = 0.001 vs controls, chi2 = 11.35, OR = 0.07 [0.00-0.39]). In both males and females, the DR3 DQ2 haplotype was predictive of extensive ulcerative colitis (32.9% vs 10.7% in distal disease, p < 0.01, chi2 = 10.94, OR 4.09 [1.70-10.6]) but not of need for surgery (p = 0.93, chi2 = 0.01). INTERPRETATION: These data provide strong evidence for genetic heterogeneity in inflammatory bowel disease. Genes of the major histocompatibility complex are implicated as important inherited determinants of susceptibility to ulcerative colitis and may also influence the pattern of disease. In Crohn's disease, important susceptibility genes are likely to exist outside the HLA region.

Adult↗

High resolution HLA-C typing by PCR-SSP: identification of allelic frequencies and linkage disequilibria in 604 unrelated random UK Caucasoids and a comparison with serology.

Recent evidence indicates that HLA-C molecules are biologically relevant by eliciting T-cell responses and exerting control over NK cell function. In addition, HLA-C is associated with susceptibility to various diseases, notably psoriasis vulgaris. Clarification of the full biological roles for HLA-C has however proved difficult because detection of HLA-C antigens by complement mediated cytotoxicity using alloantisera is inefficient. Up to 50% of individuals in every race have serologically undetectable HLA-C locus antigens due to a combination of relatively low expression, lack of serological reagents and a lack of information about the distribution of the HLA-C blank alleles. Recently, amplification of DNA using sequence-specific primers (PCR-SSP) has proved a reliable, accurate and rapid method for medium resolution HLA-C typing. We have now developed high resolution HLA-C typing by PCR-SSP utilizing allele and group-specific PCR-SSP reactions which can identify all HLA-C alleles (except non-coding change alleles) in most heterozygous combinations. Using this system we have typed 604 unrelated United Kingdom Caucasoids to generate accurate frequency and linkage disequilibrium data. To assess the validity of serology for HLA-C, PCR-SSP typings for 527 out of the 604 individuals were compared to serology. We find that the frequency of many HLA-C antigens has been underestimated by serology and some antigens such as Cw6 are consistently assigned incorrectly by serology. The overall discrepancy rate between serology and SSP was high at 37% (195/527). High-resolution HLA-C typing of 112 International Histocompatibility Workshop cell lines has also been performed.

Alleles↗

Molecular cloning of two new HLA-C alleles: Cw*1801 and Cw*0706.

Nucleotide sequence analysis of the HLA-C alleles of the GB92 cell line, heterozygous for B*8101 and B*4407, revealed the existence of two new allelic variants: Cw*1801 and Cw*0706. The former allele, initially detected as a PCR-SSP variant, displays a hybrid aspect, sharing sequence motifs with Cw*07 at exons 1 and 2, and with Cw*04 at distal exons. In serological assays, Cw*1801 is only recognized by some cross-reactive sera. Cw*0706 shows a primary structure closely related to previously known Cw7 alleles, but carries new sequence motifs at its 3'-end. Preliminary data indicate that Cw*1801 is associated to B*8101 and that Cw*0706, B*4407 could account for a part of the Cw7, B44 haplotypes observed in African populations.

Alleles↗

Long-range PCR amplification as an alternative strategy for characterizing novel HLA-B alleles.

We have developed a simple, rapid and reliable method for specifically amplifying and cloning full-length HLA-B genes from genomic DNA. Using this methodology we characterized three alleles of interest at the molecular level. Two of the alleles appeared in our routine class I PCR-SSOP typing system, a variant of B*5801 found in the Daudi cell line and RCE 56 and a variant of B*4101 found in a number of volunteer donors on our Bone Marrow Donor Registry. The third, a variant B35 allele found in RCE 80, was first identified as unusual by serology. Our sequencing analysis of exon 2 and exon 3 identified two of these alleles as the recently reported novel HLA-B*5802 and HLA-B*4102 alleles, while the third represents a new B35 allele officially designated B*3513.

Alleles↗

The association between lichen sclerosus and antigens of the HLA system.

Although frequently linked clinically with autoimmune disease, no immunogenetic basis for lichen sclerosus has ever been established. In this study, we examined in detail the HLA antigens of 84 patients with histologically proven disease, compared with 357 controls. Patients with lichen sclerosus did not have the expected HLA A1, B8, DR3, DQ2 autoimmune profile. Instead, DQ7 was present in 39 of 78 (50%) of patients compared with 89 (25%) controls (P < 0.001). In addition, 61 of 78 patients (78%) had either DQ7, DQ8 or DQ9 antigens, or a combination of these, compared with 142 (40%) controls (P < 0.01). Raised levels of DQ7 correspond to a glutamic acid residue at position 45 of the DQB1 locus. Proline amino acids at position 55 of this DQB1 locus could explain the raised levels of DQ7, 8 and 9, and exert a secondary effect. There is preliminary evidence that the immunogenetic profile of patients with this disease may affect disease expression with regard to site and extent of involvement.

Adolescent↗

Comprehensive, serologically equivalent DNA typing for HLA-B by PCR using sequence-specific primers (PCR-SSP).

Polymorphic products of HLA class I genes from the human major histocompatibility complex (MHC) are traditionally assigned by serology with additional heterogeneity detectable using one-dimensional isoelectric focusing (1D-IEF). With the increased availability of HLA class I DNA sequence information it has become feasible to genotype for class I by polymerase chain reaction utilising sequence-specific primers (PCR-SSP). We describe here a comprehensive HLA-B PCR-SSP typing system based on available HLA nucleotide sequences which can detect all serologically defined antigens in most heterozygous combination in 48 one-step PCR reactions. In addition, four new unsequenced variants have been identified. DNA samples from 57 International Histocompatibility Workshop reference cell lines and 160 control individuals have been typed by the HLA-B PCR-SSP technique. 3/57 cell line types and 12/160 normal control individuals types were discrepant with the reported serological types. The SSP system has been designed to be higher resolution than serology but is not a complete allele-specific PCR although many single alleles can be identified. The system is entirely complementary to previous published PCR-SSP systems for HLA-Class II and HLA-Class I in that the same PCR conditions and controls are used which allows us to do one step PCR-SSP for all relevant HLA loci in under 3 hours in a system suitable for the typing of cadaver donors.

Alleles↗

Genetic polymorphism within HLA-A*02: significant allelic variation revealed in different populations.

HLA-A2 is present at high frequency in most populations, as identified by serological and biochemical means. The value of these methods is limited by their failure to discriminate between the products of the 14 known allelic HLA-A*02 variants. The great majority of genetic polymorphism which defines the allelic variants is found in exons 2 and 3 of the A*02 genes. These exons encode the alpha-1 and alpha-2 domains of the HLA Class I molecules, and variation within the genes may influence the peptide binding specificity of the gene products of each allele. Failure to accurately assign the allelic types has implications in transplantation, in interpretation of cellular assays and in the understanding of HLA disease associations. We have developed a method for determining the 14 known alleles of HLA-A*02 by use of ARMS-PCR to determine the degree of variation of HLA-A*02 alleles in 3 different population groups. Considerable variation was found in the relative frequencies of particular A*02 alleles between Caucasian, oriental and black individuals. Our results indicate the importance of ethnic origin in terms of the expected HLA-A*02 allelic profile, and emphasize the functional significance of allele specific subtyping of HLA-A*02.

Alleles↗

Anchored PCR cloning of the novel HLA-Cw*0704 allele detected by PCR-SSP.

The novel HLA-Cw*0704 allele, previously detected as the PCR-SSP variant Cw7/8v, has been cloned and sequenced from the homozygous typing cell KRO3/4 after amplification by anchored PCR. The nucleotide sequence of Cw*0704 is closely related to those of other Cw*07 alleles, but carries specific changes in exon 3 consistent with its serological behavior-a short Cw7 cross-reactive with antibodies directed against HLA-Cw8. Some of the substitutions of Cw*0704 have not been previously described for HLA-C but are found in HLA-B alleles and in published C sequences of non-human primates. The new allele carries a novel polymorphism in its 5' untranslated region (5' ut) that could be shared by all Cw*07 alleles. By PCR-SSP, Cw*0704 is a relatively common allele in English Caucasoids at a frequency of 4.6%. It is most often observed on HLA-B44 haplotypes previously described as HLA-C "blank", although linkage disequilibria with other HLA-B specificities have been found.

Amino Acid Sequence↗

Phototyping: comprehensive DNA typing for HLA-A, B, C, DRB1, DRB3, DRB4, DRB5 & DQB1 by PCR with 144 primer mixes utilizing sequence-specific primers (PCR-SSP).

We have developed a single DNA typing method which uses 144 sequence-specific primer (SSP) reactions to simultaneously detect all known HLA-A, B, C, DRB1, DRB3, DRB4, DRB5 and DQB1 specificities in an allele specific or group specific manner using the same method, reagents, PCR parameters and protocols for all loci. The results from this integrated class I & II method can be visualized on a single photographic or electronic image and hence is described as "Phototyping". Phototyping has an overall resolution greater than or equivalent to good serology and results can be obtained in under 3 hours making the method suitable for genotyping potential cadaver donor peripheral blood without serological backup. This in turn produces the potential for reducing cold ischaemia times in renal transplantation as well as the application of prospective matching to cardiac and liver transplantation. The method has capacity to detect new alleles, for example, novel amplification patterns suggestive of 4 new HLA-B alleles have been detected. The Phototyping set has been used as the sole method of HLA typing for over 1010 individuals. Phototyping is not problem-free; deviations from the standard protocol, poor quality DNA and unsuitable PCR machines can result in individual PCR failures or in incorrect assignment of antigens. Approximately 5% of genotypes were repeated (either partially or fully) because of incomplete or equivocal results.

Base Sequence↗