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Biomedical subjects

M Bunce

Publications and source records attributed to M Bunce.

At least 55 records · Page 3Linked to original sources

Detection of microchimerism after allogeneic blood transfusion using nested polymerase chain reaction amplification with sequence-specific primers (PCR-SSP): a cautionary tale.

In bone marrow transplantation, the detection of chimerism is an important adjunct to the repertoire of tests available for determining acceptance of the graft. In solid organ transplantation, there is currently intense interest in the role that chimerism plays in both short- and long-term host reactivity to the graft. Allogeneic blood transfusion has been associated with a subtle immunosuppressive effect in renal transplantation and chimerism is implicated as a possible mechanism for this effect. To assess the survival of allogeneic cells after blood transfusion or transplantation, we have developed a technique based on molecular typing for HLA class II alleles, which enables the detection of donor-derived cells in patients receiving blood transfusions. While developing this technology, we investigated why we and others observe false amplification. Sequencing of false products has shown that they arise from amplification of both pseudogenes and non-pseudogenes present in the DNA under test. Elucidation of this phenomenon allows the amplification of these false products to be predicted in any given combination and hence avoided by the judicious selection of primers. Validation has been achieved by following donor alleles after transfusion of blood containing defined numbers of leukocytes expressing selected mismatched antigens.

Blood Donors↗

HLA-Cw*0602 and HIV-associated psoriasis.

The aetiopathogenesis of psoriasis is unknown, but genetic and environmental factors may be involved. Psoriasis may not be one disease but a cutaneous inflammatory reaction pattern consequent upon several different independent or related stimuli in susceptible individuals. There are controversial issues regarding the immunological basis of psoriasis and the role of CD4 vs. CD8 T lymphocytes. Psoriasis has been associated with HLA-Cw6 and Cw7 by serology and specifically with HLA-Cw*0602 by polymerase chain reaction (PCR) typing. Psoriasis is probably no more common in HIV infection than in the general population; however, it may appear for the first time or pre-existing psoriasis may worsen and be difficult to treat in HIV disease. We have investigated the prevalence of HLA-C alleles, in the specific clinical context of HIV infection complicated by type 1 psoriasis, in a case control study of 14 men with HIV disease and type 1 psoriasis and 147 HIV-infected patients without psoriasis. Typing was performed using PCR with sequence-specific amplification primers. Eleven of 14 patients (79%) with psoriasis carried the HLA-Cw*0602 allele compared with 24.5% of those without psoriasis (odds ratio = 11.31; 95% confidence limits 2. 73 to 65.36; P = 0.0001). Two patients without the HLA-Cw*0602 allele carried instead the closely related Cw*0401/3 allele. The results confirm the previously reported association between the HLA-Cw*0602 allele and type 1 psoriasis, and suggest that the association with HLA-Cw*0602 is stronger in HIV-associated psoriasis although this trend needs to be supported by a larger sample. The immunodysregulation resulting from HIV infection may trigger psoriasis in those genetically predisposed by the Cw*0602 allele. As CD8 T cells recognize antigens in the context of class I major histocompatibility complex, the identification of an HLA class I association in HIV-associated psoriasis strengthens the argument for an important role for CD8 + T lymphocytes in the immunopathogenesis of psoriasis. Investigations of the pathogenesis of psoriasis should take account of clinical and other subtypes already identified.

Adult↗

The PCR-SSP Manager computer program: a tool for maintaining sequence alignments and automatically updating the specificities of PCR-SSP primers and primer mixes.

An emerging problem of molecular typing methods such as PCR amplification using sequence-specific primers (PCR-SSP) is that they frequently require updating as new alleles are constantly being described which potentially affect the specificity of every PCR-SSP reaction. PCR-SSP uses pairs of primers to detect cis-linked polymorphisms and thus each new allele described must be compared to each individual primer pair. Furthermore, sequence homology between the various loci for class I and class II means that, for example, new HLA-A sequences have to be compared with HLA-B and HLA-C primer mixes to rule out cross-locus amplification. We have developed a computer program known as SSP Manager which is capable of aligning HLA class I and class II sequences obtained from Internet-accessible databases such as GenBank. The program then updates all individual primer specificities held in its database before updating the specificities of all primer mixes. Sets of primer mixes can then be combined from the primer mix directory to create PCR-SSP typing trays which are subsequently analysed by the program. A report is generated which stipulates whether all known sequences are amplified and the reason for apparent failure to test for individual alleles, e.g. a lack of relevant sequence information. SSP Manager has the flexibility to cope with unusual sequences (deletions and insertions), primers with internal mismatches and primers with a deliberate mismatch. The program also has many tools for developing new primer mixes, such as the facility to search for novel reactions using Boolean operators. The organisation and operational use of the SSP Manager program is described and its uses are illustrated with an updated allele list for our previously described Phototyping PCR-SSP class I and class II typing set. The SSP Manager is available on request from the authors.

Antisense Elements (Genetics)↗

Comprehensive HLA-DP typing using polymerase chain reaction with sequence-specific primers and 95 sequence-specific primer mixes.

HLA-DP is the third of the class II molecules. Its role is antigen presentation, and it has been suggested to play a part in the susceptibility to certain diseases such as berylliosis, sarcoidosis and juvenile chronic arthritis. The standard typing method is SSO typing, although other methods have been used. Probably the best is sequence-based typing, but this is time-consuming and requires expensive equipment. We describe a method for comprehensive HLA-DPB1 and HLA-DPA1 typing using sequence-specific primers. This method has the advantages that it is rapid - typing a single DNA sample takes under 3 hours - and does not require any special equipment or reagents. The method has been shown to be highly accurate by typing 60 cell line DNA samples in which there was 100% agreement between the types obtained and the published information. Similarly typing of 20 DNA samples previously typed by sequence-based typing gave 100% concordance. We used the method to type DNA samples from 102 UK Caucasoid kidney donors. The allele frequencies agree with previously published data. Linkage disequilibria between HLA-DPB1, HLA-DPA1 and the other class II antigens have been investigated. Strong linkage disequilibria exist between certain HLA-DPB1 and HLA-DPA1 alleles. This is unsurprising in view of their proximity on the chromosome. More unexpectedly, the data also suggest that genes further away along the chromosome are in linkage disequilibrium with HLA-DP, forming extended haplotypes.

DNA Primers↗

A new pair of HLA-C alleles, Cw*12042 and Cw*1203, differing at the KIR-related dimorphism of codons 77-80.

A previously unknown HLA-C variant of the Cw*12 group was identified by PCR-SSP from genomic DNA of cell NDS-JD. Molecular cloning and nucleotide sequence analysis permitted the characterization of the complete coding region of this new allele, Cw*12042. The new variant differs from the recently reported Cw*12041 by two silent changes at exons 2 and 3, and from Cw*1203 by coding changes at codons 77 and 80. Cw*1203 (Ser-Asn) and Cw*12042 (Asn-Lys) constitute the second known example of HLA-C alleles only differing at the KIR-related dimorphism of residues 77-80. The new allele is associated in cell NDS-JD with the haplotype HLA-A*2403, Cw*12042, B*51, DRB1*1502, DRB5*0102, DQB1*0601, possibly related from the evolutionary aspect to the ancestral haplotype A*2402, Cw*1202, B*5201, DRB1*1502, DRB5*0102, DQB1*0601.

Alleles↗

On the nature of "HLA-B42" alloantibodies. Specific reagents for HLA-Cw*17?

An almost complete and bidirectional association exists between HLA-Cw*17 and the HLA-B antigens B41 and B42. Serological and molecular analysis of an individual in which HLA-B*4101 was identified in the absence of Cw*17 provides experimental evidence to prove a previously proposed hypothesis predicting that alloantisera classified as "B41+B42" are instead specific reagents for HLA-Cw*17.

Amino Acid Sequence↗

Allele-specific HLA-B*15 typing by PCR-SSP and its application to four distinct ethnic populations.

We present a set of primer mixes for the allele-specific typing of the HLA-B*15 group by PCR-SSP. The set comprises 46 primer mixes which are designed to unequivocally resolve all but two of the 666 possible combinations of the B*15 alleles, B*1501-37 (B*1536 sequence unavailable). A core subset of 34 of the 46 mixes can be used alone to give a high resolution B*15 typing set. This allows for the identification of each B*15 allele when present as the only B*15 allele and the majority of the possible B*15 homozygotic combinations. The method was validated using reference DNA samples and the B*15 allele frequency in 4 distinct ethnic populations was investigated. The results show that these populations contain predominantly mutually exclusive sets of B*15 alleles.

Alleles↗

A rapid method of haplotyping HFE mutations and linkage disequilibrium in a Caucasoid population.

BACKGROUND: HFE mutations are associated with hereditary haemochromatosis. However, a simple method capable of demonstrating the cis/trans arrangement of alleles is lacking, and linkage disequilibrium between HFE alleles and classic HLA loci is unknown. These are important issues as the pathogenic role of the mutations is not known. AIMS: To develop a simple method of genotyping HFE mutations suitable for clinical use in addition to large disease studies. PATIENTS: A total of 330 Caucasoid cadaveric organ donor controls were examined. Ten individuals previously HLA-H genotyped by polymerase chain reaction using restriction fragment length polymorphism (PCR-RFLP) were also examined to validate the method. METHODS: A simple polymerase chain reaction using sequence specific primers (PCR-SSP) capable of haplotyping the mutations was developed. HFE allele and haplotype frequencies and linkage disequilibrium with eight HLA class I and II loci were examined in the control population. RESULTS: 27% and 19.7% of patients were positive for the 63D and 282Y alleles, respectively. No chromosome carried both 63D and 282Y. Linkage disequilibrium between 282Y and HLA-A*03 was confirmed, but was not straightforward: some A*03-associated alleles (DRB1*15, DQB1*06), but not all (B*07, Cw*0702), were associated with 282Y. CONCLUSIONS: Linkage disequilibrium data suggest that an HLA-B*07 containing haplotype contains an element affording protection from haemochromatosis and may suggest the timing of the founder 282Y mutation.

Alleles↗

HLA-C genes and susceptibility to type 1 autoimmune hepatitis.

Susceptibility to autoimmune hepatitis (AIH) is associated with the HLA A1-B8-DR3 haplotype, DR4 antigen, and, more specifically, the HLA DRB3*0101, DRB1*0301, and DRB1*0401 alleles. Few investigators, however, have examined the HLA C locus in AIH, which warrants detailed study in view of its recently described roles in immunoregulation. Eighty-seven adult, white patients with well-characterized type 1 AIH and 100 controls were studied. HLA C and HLA DRB1 alleles were assigned by polymerase chain reaction (PCR)-based genotyping. HLA A and B antigens were determined by standard microlymphocytotoxicity assay. Extended haplotypes were constructed according to known patterns of linkage disequilibrium. Only one HLA C locus allele, Cw*0701, which was present in 54% of patients versus 34% of controls (P = .006; relative risk [RR] = 1.54) was associated with AIH. The overall increase in the frequency of the Cw*07 gene (70.1% of patients vs. 54% of controls; P = .024; RR = 1.3) was due entirely to inheritance of the Cw*0701 allele rather than the other Cw*07 alleles, Cw*0702, *0703, and *0704. The RR for Cw*0701 (RR = 1.54) is greater than that for HLA A1 (RR = 1.33) and DRB1*0301 (RR = 1.49), but less than that for HLA-B8 (RR = 1.75). The present findings suggest that the gene or genes conferring susceptibility to AIH lie in the region centromeric to the HLA A locus between HLA C and DRB1. Although linkage disequilibrium with both B8 and DRB1*0301 may account for our finding of an increased frequency of Cw*0701, it is also possible that this allele contributes to disease susceptibility, perhaps by interaction with natural killer cells or cytotoxic T lymphocytes.

Adult↗

Cw*1701 defines a divergent african HLA-C allelic lineage.

The complete sequence of a new HLA-C allele, Cw*1701, was determined from a South African Zulu individual. Unique features that distinguish Cw*1701 from other HLA-C alleles include multiple point substitutions and an 18 nucleotide insertion in exon 5, which encodes the transmembrane domain. In a phylogenetic analysis of HLA-C sequences, Cw*1701 forms a third, distinct allelic lineage. A comparison of the transmembrane domain of Cw*1701 with other HLA-B and -C alleles reveals that duplications and deletions have been common in the evolution of these loci. A polymerase chain reaction based typing method was used to determine the distribution of this unusual allele in human populations. In contrast to the other two lineages of HLA-C alleles, the Cw*17 lineage is found at high frequencies only in populations of African descent. In addition, the HLA-B/Cw*17 haplotype diversity is higher in Africa.

Africa↗

Killer cell inhibitory receptor interactions with HLA class I molecules: implications for alloreactivity and transplantation.

Human killer cell inhibitory receptors (KIR) are novel members of the immunoglobulin superfamily of cell surface glycoproteins, which are expressed by lymphocytes with natural killers (NK) and cytotoxic T-cell (CTL) phenotypes. These receptors have specificity for relatively conserved epitopes of HLA-A, -B, and -C class I antigens. Recent studies have identified KIR as being involved in the transmission of negative, inhibitory signaling events to the cytotoxic cell which prevent or diminish target cell lysis. KIR are thus likely to play an important role in the responses of alloreactive NK cells and CTL to allogeneic HLA antigens. In this article, we review the known structural and functional characteristics of KIR, suggest a possible mechanism for the transmission of intracellular negative signaling by these receptors, and discuss the relevance of KIR function and HLA specificity to the clinical transplantation of allogeneic tissues.

HLA Antigens↗

HLA-CW*0602 is a susceptibility factor in type I psoriasis, and evidence Ala-73 is increased in male type I psoriatics.

We investigated the HLA-C locus of 87 unrelated patients with chronic plaque psoriasis by genotyping with sequence-specific amplification primers. The HLA-Cw*0602 allele was significantly increased in male and female type I psoriatics but not significantly increased in either male or female type II psoriatics. The overall frequency of Ala-73 (present in Cw*04, Cw*0602, Cw*07, Cw*12, Cw*1503, and Cw*17) in psoriatics was 88.5% but the incidence of Ala-73 in our Caucasian controls was also high at 84.3%. Ala-73 was present in 97.2% of type I and 85.7% of type II male psoriatics (chi2 = 8.43, p = 0.001; chi2 = 0.01, p = nonsignificant, respectively), in contrast to 81.5% of type I and 80% of type II female psoriatics (nonsignificant). HLA-Cw*0602 appeared more discriminating in determining disease susceptibility in our population than Ala-73, in line with earlier serologic studies implicating HLA-Cw6. Thus, although the frequency of HLA-Cw*0602 decreased from 54.0% in type I to 29.2% in type II psoriatics, the overall frequency of Ala-73, present in 90.4% of type I and 83.3% of type II psoriatics, did not. (i) Thus this study confirms the strong association between psoriasis and HLA-Cw*0602 by using sequence-specific amplification primers. (ii) Results show that Ala-73 on HLA-C molecules is increased in frequency in psoriasis, but results observed show an association more subtle than previously thought, with HLA-Cw*0602 playing the major role. (iii) This report documents the differential association of HLA genes in male and female psoriatic patients. An interaction between gender and immunogenetics may influence susceptibility to psoriasis.

Alleles↗

Polymerase chain reaction haplotyping using 3' mismatches in the forward and reverse primers: application to the biallelic polymorphisms of tumor necrosis factor and lymphotoxin alpha.

A polymerase chain reaction with sequence-specific primers (PCR-SSP) system that operates under identical conditions to HLA phototyping was devised for characterizing polymorphisms in tumor necrosis factor (TNF) and lymphotoxin alpha (LT-alpha). Mismatches at the 3' end were incorporated into the forward and reverse primers of each PCR so as to unequivocally establish the cis/trans status between the biallelic sites. Three previously described biallelic polymorphisms in TNF and three in LT-alpha were characterized in a 24-reaction PCR-SSP system. The method was used to genotype 20 cell lines and 201 HLA class I and II typed controls from the United Kingdom at the TNF and LT-alpha loci. Population frequencies of TNF haplotypes were determined as was linkage disequilibrium with HLA-A, B, Cw, DRB1 and DQB1 loci. In each gene there were 8 theoretical polymorphic combinations; 4 were observed in TNF and 4 in LT-alpha. A total of 11 TNF-LT-alpha haplotypes were determined from apparent homozygous controls and statistical analysis.

Alleles↗

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↗