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J Trowsdale

Publications and source records attributed to J Trowsdale.

At least 127 records · Page 7Linked to original sources

Genomic organization of HLA-DMA and HLA-DMB. Comparison of the gene organization of all six class II families in the human major histocompatibility complex.

The genomic nucleotide sequences of HLA-DMA and HLA-DMB have been determined and their gene organizations have been compared with other human class II genes. The following features were found to be highly conserved throughout all human class II families. (i) All alpha genes are composed of 5 exons and all beta genes of 6 exons. (ii) The intron-exon boundary classes of exons 1-4 (alpha genes) and exons 1-5 (beta genes) are 100% conserved. Only the last boundary class which falls within the cytoplasmic domain appears to be variable. (ii) The size of exon 3 (membrane proximal domain) is also 100% conserved except for DMA (-1 codon) and DMB (+1 codon). The position and a possible functional implication of this deletion/insertion are discussed. Our findings confirm and extend the evidence based on sequence homology that DMA and DMB are different from typical class II genes suggesting that they may originate from a time prior to the divergence of the main class II genes. In addition we have identified various new repeat sequences within class II genes. Analysis of their classification and distribution reveal single and multiple repeat mediated recombination events. One of these events seems to have partially replaced exon 1 in DPA2. The possibility of this event causing DPA2 to become a pseudogene is discussed.

Amino Acid Sequence↗

Loss of heterozygosity on chromosome 5 in sporadic ovarian carcinoma is a late event and is not associated with mutations in APC at 5q21-22.

Frequent loss of heterozygosity in ovarian carcinoma (OC) has been reported on several different chromosomes. We have studied 27 OCs and corresponding normal tissue for loss of heterozygosity (LOH) using 10 markers detecting polymorphisms on chromosome 5 (two on 5p and eight on 5q). Three tumours showed extra copies, rather than loss, of one homologue. Twelve of 24 remaining tumours showed LOH on 5q (50%), and 8 of 21 on 5p (38%). Of the 12 showing LOH on 5q, 7 showed reduction to homozygosity at all informative markers over the chromosome. The remaining 5 showed LOH over all of 5q. These data are consistent with the localisation of a tumour suppressor gene on 5q involved in OC. A good candidate is the APC gene, which is mutated in a number of adenocarcinoma derived from several tissues and is located at 5q21-22. The APC gene was studied in 40 ovarian tumours, including all the OCs showing LOH, by single-strand conformation polymorphism (SSCP). Analysis of all the exons containing published mutations (approximately 4.7 kb of the cDNA) did not reveal any band shifts that could be attributed to mutations. However, a new polymorphism was detected, as well as 7 known polymorphisms. Together, these data indicate that (1) LOH is common on chromosome 5 in OC, (2) APC is not mutated in OC, and (3) another gene (or genes) on chromosome 5q is responsible for the LOH seen.

Adenocarcinoma↗

MHCDB--database of the human MHC.

Genetic and physical data relating to the human major histocompatibility complex (MHC) were compiled and analyzed, using a genome analysis program. The current contents of the database include: 1) location of over 100 genes and other markers; 2) location of over 250 YAC and cosmid clones; 3) 150 kilobases of genomic DNA sequence including full annotation (exon/intron boundaries, repeats, promoters, etc.); 4) cDNA sequences of currently-known class I and class II alleles; and 5) accompanying descriptive data--references, comments, laboratory addresses, and so on. The database allows rapid access, retrieval, and display of all these data, which should make it a useful tool for the study of the human MHC. MHCDB is publicly available and will be updated as new data become available.

Alleles↗

Presence of an expressed beta-tubulin gene (TUBB) in the HLA class I region may provide the genetic basis for HLA-linked microtubule dysfunction.

An expressed beta-tubulin gene (TUBB) has previously been localized to chromosome region 6pter-p21 in man. By using a panel of deletion mutant cell lines and radiation-reduced hybrids containing fragments of chromosome 6, the TUBB locus could be mapped to the HLA class I region at 6p21.3. A long range restriction map including TUBB and several HLA class I genes was then generated by rotating field gel electrophoresis. The results show that TUBB maps to a segment 170-370 kb telomeric of HLA-C. This location suggests that a mutation at the TUBB locus could be the cause for certain forms of HLA-linked microtubule dysfunction, including immotile cilia syndrome.

Animals↗

Cloning and characterization of human phosphatase inhibitor-2 (IPP-2) sequences.

cDNA clones similar to rabbit muscle phosphatase inhibitor-2 (IPP-2) were isolated from human libraries. On Northern blots two transcripts of approximately 2kbp and approximately 4kbp were detected in all tissues tested. Analysis of cDNA sequences showed that the longer transcripts were similar to the shorter clones but contained extended 3' ends. The human nucleotide sequence was highly homologous (94% identity) to the rabbit IPP-2 sequence and encoded a peptide of 205 amino acids. IPP-2 sequences were highly conserved throughout vertebrates. Southern hybridization results were consistent with the existence of a family of related IPP-2 sequences in the human genome. Most of these are likely to be pseudogenes, since all of the cDNA clones examined could have originated from a single gene. By in situ hybridization IPP-2 sequences were mapped to several different human chromosomes. We sequenced one gene located in the major histocompatibility complex (MHC) on Chromosome (Chr) 6 that contained the entire coding region of IPP-2.

Amino Acid Sequence↗

Cloning of the region between HLA-DMB and LMP2 in the human major histocompatibility complex.

The human MHC is one of the most extensively mapped regions of the human genome. Almost all of the class II region of the MHC has already been cloned in cosmids but a gap remained between the DMB and LMP2 genes. Previously, screening of several complete cosmid libraries had failed to bridge this gap, which may contain novel antigen processing or presentation genes. We constructed cosmid libraries from two different sources in order to clone the region: (a) a library with fourfold coverage made from flow-sorted human chromosome 6 DNA and (b) a library derived from a yeast artificial chromosome clone spanning the region. Using this saturation approach, cosmid clones were eventually isolated over the region of interest. A single bacteriophage P1 clone was also obtained spanning the region. The YAC, cosmid, and P1 physical maps were consistent and the distance between the DMB and LMP2 genes was measured as 70 kb. It is not clear why DMB to LMP2 is infrequently represented in cosmid libraries, but the clones that we have obtained will now enable us to search for new coding sequences.

Bacteriophage P1↗

Released chromatin: linearized DNA for high resolution fluorescence in situ hybridization.

Free DNA was prepared from routinely harvested and fixed cells for high resolution FISH mapping using either a sodium hydroxide/ethanol mixture or 70% formamide. Hybridization signals from cosmid probes appeared as extended lines. The average length of signals on DNA prepared with sodium hydroxide was significantly greater than with formamide. A set of overlapping cosmids from the HLA class II region was used to determine how precisely the actual overlap or gap between probes can be calculated from the measured overlap or gap between their signals. Lengths of the probe signals and their known kilobase lengths were used as an internal ruler. The mean values calculated from the measured length from 30 or more signals for each probe pair showed remarkable conformity with the known kilobase lengths of their overlaps and gaps. Immediately adjacent probes could also be ordered on the released DNA. These simple procedures dramatically increase the speed with which relationships between probes can be determined during contig construction.

Chromatin↗

Insulin-dependent diabetes mellitus and the major histocompatibility complex peptide transporters TAP1 and TAP2: no association in a population with a high disease incidence.

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.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Novel genes in the human major histocompatibility complex class-II region.

Recent studies have identified a number of new genes mapping to the class-II region of the human major histocompatibility complex. Functionally these can be grouped into three broad categories: those encoding the new class-II-related genes DMA and DMB; those involved in aspects of class-I antigen-processing and presentation, and those with no apparent association with the immune system. There is evidence that further factors involved in class-II antigen presentation are located in the DMB to DQB1 interval.

Antigen Presentation↗

Very frequent loss of heterozygosity throughout chromosome 17 in sporadic ovarian carcinoma.

Frequent loss of heterozygosity (LOH) on both arms of chromosome 17 has been described in ovarian carcinoma (OC) by a number of groups, and the recent fine mapping of an inherited breast-ovarian cancer gene (brcAI) to a small region at 17q12-21 has focused interest on this area. We studied 28 sporadic OCs with 21 markers at 18 loci on chromosome 17 (5 on 17p and 13 on 17q). LOH on 17p was 78%, and always involved p53. In 86% of cases showing LOH, all informative markers on chromosome 17 showed reduction to homozygosity. Using 6 markers flanking the brcAI locus on 17q, LOH was 75%, but only one tumour showed LOH with telomeric retention. The data therefore suggest that small deletions on chromosome 17 are very uncommon in sporadic OC. No genomic rearrangements by Southern blotting were seen in the brcAI candidate gene estradiol 17 beta dehydrogenase 2 (17hsd2), or in erbB2, prohibition (phb) and nmeI (previously nm23-HI). LOH on chromosome 17 was more common in high-grade, late-stage carcinomas, and no LOH was seen in any benign or borderline tumour. This study has clearly demonstrated that LOH at any one site on chromosome 17 is most commonly explained by LOH over the whole of the chromosome. We consider possible reasons for the absence of small deletions on chromosome 17 in OC.

Chromosome Aberrations↗

Identification and preliminary characterization of a protein motif related to the zinc finger.

We have identified a protein motif, related to the zinc finger, which defines a newly discovered family of proteins. The motif was found in the sequence of the human RING1 gene, which is proximal to the major histocompatibility complex region on chromosome six. We propose naming this motif the "RING finger" and it is found in 27 proteins, all of which have putative DNA binding functions. We have synthesized a peptide corresponding to the RING1 motif and examined a number of properties, including metal and DNA binding. We provide evidence to support the suggestion that the RING finger motif is the DNA binding domain of this newly defined family of proteins.

Amino Acid Sequence↗

The major histocompatibility complex-encoded proteasome component LMP7: alternative first exons and post-translational processing.

The LMP7 gene maps to the major histocompatibility complex class II region. The derived protein sequence shares homology with N-terminal amino acid sequence from proteasome subunits (Glynne, R., Powis, S. H., Beck, S., Kelly, A., Kerr, L.-A. and Trowsdale, J., Nature 1991. 353: 357) and it has been suggested that LMP7 is involved in the degradation of endogenous antigens prior to their presentation through class I (Robertson, M., Nature 1991. 353: 300). We have isolated a second LMP7 transcript which has a different first exon to the published sequence. Both transcripts were expressed in cell lines from a number of tissues and both responded to interferon-gamma. An anti-LMP7 antiserum precipitated proteins similar in their migration on sodium dodecyl sulfate-polyacrylamide gel electrophoresis to those precipitated by an anti-proteasome serum. Western blot analysis of anti-proteasome precipitates demonstrated that the LMP7 protein is incorporated into the proteasome but has a molecular mass of 23 kDa, 7 kDa smaller than expected fro the derived protein sequence of either of the cDNA. A pulse-chase experiment indicated that post-translational cleavage of the LMP7 N terminus precedes the formation of the 23-kDa proteasome subunit. To our knowledge, LMP7 provides the first biochemical evidence for such processing of proteasome components.

Alternative Splicing↗

An antigen processing polymorphism revealed by HLA-B8-restricted cytotoxic T lymphocytes which does not correlate with TAP gene polymorphism.

In previous studies of antigen presentation through HLA-B27, we identified a healthy person whose lymphoblastoid cells do not present three B27-restricted viral epitopes to specific cytotoxic T lymphocytes (CTL), despite adequate cell surface expression of HLA-B2702 of normal sequence. Similar findings were observed in all members of his family sharing the HLA-A3-B2702 haplotype. The original donor, NW, carries HLA-B8 on his other class I haplotype, which his daughter, HW, has inherited. We now report a failure to present an HLA-B8-restricted epitope from influenza nucleoprotein following viral infection of NW cells, although exogenous added peptide is still presented normally. However, cells from HW, which do not carry the A3-B2702 haplotype, present the expected epitope after viral infection. Another B8-restricted epitope, from human immunodeficiency virus-gag, is presented equally well by both cell lines when infected with gag-vaccinia. This antigen processing phenotype does not correlate with any of the known human TAP-1 and TAP-2 polymorphisms.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

The transporters associated with antigen presentation.

Two new members of the ABC superfamily of transporter genes have recently been identified within the Major Histocompatibility Complex in man, rat and mouse. Although the exact function of these genes is not known, they have been shown to be necessary for the presentation of peptides derived from the degradation of cytoplasmic protein antigens to the cellular immune system. For this reason they have been named TAP1 and TAP2 (for Transporter associated with Antigen Presentation). Each gene encodes one membrane spanning domain and one region homologous to the ATP binding domains that characterise the superfamily. The two proteins encoded by the TAP genes form a complex that is localised to the membranes of the endoplasmic reticulum and cis-golgi. Their most likely function is to transport short peptides, that lack signal sequences, from the cytoplasm to the endoplasmic reticulum, although the evidence for this is still indirect.

Adenosine Triphosphate↗

Alleles and haplotypes of the MHC-encoded ABC transporters TAP1 and TAP2.

TAP1 and TAP2 are two major histocompatibility complex (MHC) genes, located between HLA-DP and -DQ, whose products form a transporter molecule involved in endogenous antigen processing. Polymorphic residues have been described in both genes and, in this study, we have identified another polymorphic site within the adenosine triphosphate (ATP)-binding domain of TAP2. We have used the amplification refractory mutation system (ARMS) polymerase chain reaction (PCR) to characterize TAP1 and TAP2 alleles and haplotypes in a reference panel of 115 homozygous typing cell lines. Of four possible TAP1 alleles, we observed three, and of eight possible TAP2 alleles, we observed five. Among 88 (homozygous typing cells) (HTCs) homozygous at HLA-DR, -DQ and -DP, 80 were also homozygous at TAP1 and TAP2. Of 27 HTCs homozygous at HLA-DR and -DQ, but heterozygous at -DP, 14 were homozygous at TAP1 or TAP2 and 13 heterozygous, consistent with recombination taking place either side of the TAP loci. Of the fifteen possible combinations of TAP1 and TAP2 alleles, we observed eleven, each at a frequency similar to that predicted by individual allele frequencies. In this ethnically heterogenous panel there is no indication that particular combinations of TAP1 and TAP2 have been maintained together.

ATP Binding Cassette Transporter, Subfamily B, Mem↗