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H M Dosch

Publications and source records attributed to H M Dosch.

At least 37 records · Page 2Linked to original sources

Genomic organization and transcript analysis of ICAp69, a target antigen in diabetic autoimmunity.

Islet cell antigen p69 (ICAp69) is a target self-antigen in autoimmune (insulin-dependent) diabetes mellitus. Distributed over more than 100 kb on chromosome 6 (6{A1-A2}), the single murine genomic locus contains 14 coding exons, 39-271 bp in length. The identified human and mouse intron-exon junctions are identical, with intron sizes ranging from 94 bp to 24 kb and with conserved flanking region intron sequences. cDNA cloning identified alternatively spliced ICAp69 mRNA transcripts. The predominating alpha-transcripts lack exon 4, while beta-transcripts include this exon, which codes translation termination in all reading frames and a truncated molecule following in vitro expression. gamma-Transcripts show splice removal of exons 8-12, while delta-transcripts exclude exon 11. Transcripts use alternative polyadenylation signals including a less frequent ATTAAA sequence. 5'-Untranslated cDNA and genomic sequencing and long PCR analysis suggest the presence of more noncoding exons. All splice variants encode the conserved T-cell epitope (in exon 2) recognized by autoreactive T cells in diabetic children and diabetes-prone NOD mice.

Amino Acid Sequence↗

Gene expression of islet cell antigen p69 in human, mouse, and rat.

Based on the detection of specific antibodies and T-cell sensitization in patients with IDDM, islet cell antigen p69 (ICAp69) has been suggested to be a target antigen of diabetic autoimmunity. The biological function, tissue expression, and developmental kinetics of ICAp69 are largely unknown. We analyzed ICAp69 expression at the gene transcription and protein level in human and rodent tissues. By using template-calibrated quantitative reverse transcriptase polymerase chain reaction (RT-PCR), high levels of ICAp69 mRNA were found in human pancreatic islets and brain. In mouse and rat, ICAp69 gene expression peaked in islet cell lines followed by testis, islets, and brain. ICAp69 mRNA was found at low levels in other organs by RT-PCR but not by Northern blot analysis. In mice, ICAp69 transcription becomes detectable in fetal life, and fetal and adult gene expression patterns are similar. Western blot analysis of human and mouse tissues showed high expression of ICAp69 in brain, testis, pancreatic tissue, and islet cell lines. In these organs, ICAp69 immunoreactivity is predominately localized at the blood brain barrier (capillary endothelium), at the blood testis barrier (Sertoli cells and spermatids), and in pancreatic islets (beta-cells). The subcellular localization of ICAp69 to endoplasmic reticulum, Golgi complex, and vesicles by immune electron microscopy suggests a role of this neuroendocrine molecule in cellular protein traffic and processing.off

Animals↗

A majority of inverted sinonasal papillomas carries Epstein-Barr virus genomes.

BACKGROUND: The relationship between sinonasal inverted papilloma (IP) and various strains of human papilloma virus (HPV) has been examined previously. Yet there is little consensus regarding the incidence or role of HPV in IP. The possible role of Epstein-Barr virus (EBV), which, like HPV, is a DNA virus linked to human lymphoid and epithelial malignancies, was investigated. METHODS: The polymerase chain reaction (PCR) was used to detect EBV genomic sequences in surgical specimens of IP, in benign nasal polyps, and various control tissues. The IP specimens were similarly examined for the presence of HPV types 6, 11, 16, and 18. RESULTS: EBV DNA was found in 13 of 20 IP specimens (65%) and none of the 10 control tissues. Nine of the 20 specimens contained HPV DNA, and 5 of 20 specimens contained both EBV and HPV. CONCLUSIONS: These results imply a previously unsuspected role for Epstein-Barr virus in the pathogenesis of sinonasal inverted papilloma.

DNA, Viral↗

T cell activation and anergy to islet cell antigen in type I diabetes.

Early exposure to cow milk proteins was linked to the development of type I diabetes by consistent epidemiology, and by feeding and tolerization studies in diabetes-prone rodents. Dietary BSA was suggested as the culprit because patients and relevant rodents have elevated anti-BSA Abs that precipitate the recently cloned protein, p69, from beta cell lysates. A total of 68 of 78 children with recent onset diabetes had BSA-reactive T cells at the time of diagnosis. Here we 1) map the fine specificity of these T cells, 2) delineate a homologous peptide sequence near the N-terminus of p69, and 3) demonstrate T cell recognition of this p69 sequence (T cell epitope p69, Tep69) by patient T cells. The Tep69 sequence is conserved in p69 of patients and diabetes-prone rodents. Whereas BSA triggers T cell proliferation, recombinant p69 and a synthetic Tep69 peptide induce early stages of T cell activation (IL-2R transcription) but insufficient IL-2 production and thus anergy. Exogenous IL-2 overrides anergy and allows proliferative expansion of p69-responsive T cells. In mixing experiments, p69 and Tep69 peptide prevented proliferative responses to BSA even at 100-fold smaller concentrations. These findings imply that high-affinity self-peptide triggers anergy, whereas low-affinity mimicry Ag triggers proliferative expansion of these T cells. This implies a disease model in which mimicry Ag would rescue autoreactive cells from ablation by self-Ag.

Adolescent↗

Self and non-self antigen in diabetic autoimmunity: molecules and mechanisms.

In this article, we have summarized current facts, models and views of the autoimmunity that leads to destruction of insulin-producing beta-cells and consequent Type 1 (insulin-dependent) diabetes mellitus. The presence of strong susceptibility and resistance gene loci distinguishes this condition from other autoimmune disorders, but environmental disease factors must conspire to produce disease. The mapping of most of the genetic risk (or disease resistance) to specific alleles in the major histocompatibility locus (MHC class II) has direct functional implications for our understanding of autoimmunity in diabetes and directly implies that presentation of a likely narrow set of peptides is critical to the development of diabetic autoimmunity. While many core scientific questions remain to be answered, current insight into the disease process is beginning to have direct clinical impact with concerted efforts towards disease prevention or intervention by immunological means. In this process, identification of the critical antigenic epitopes recognized by diabetes-associated T cells has achieved highest priority.

Amino Acid Sequence↗

Antibodies against bovine albumin and other diabetes markers in French children.

OBJECTIVE: Findings in epidemiology and animal experimentation suggest that autoimmunity in insulin-dependent diabetes mellitus (IDDM) may be triggered by dietary cow-milk protein, particularly bovine serum albumin (BSA). Elevated IgG anti-BSA antibodies were found in children from Finland with newly onset diabetes; Finland has the highest incidence of diabetes and cow's milk consumption in the world. We now analyze BSA serology and other diabetes markers in school-age children from France, where diabetes incidence and cow's milk consumption are low. RESEARCH DESIGN: Sera were obtained from three groups: newly diagnosed diabetic (n = 43), islet cell antibody-positive (ICA+) nondiabetic (n = 98), and ICA- healthy control children (n = 267). IgG anti-BSA antibody levels were measured blindly using particle concentration fluoroimmunoassays and analyzed in comparison with ICA titers and human leukocyte antigen-DQB genotypes. RESULTS: There were highly significant differences in BSA antibody levels between all three groups (P < 0.0001). Diabetic patients had elevated anti-BSA levels in 74.4% of cases, compared with 5.5% of control children. In the group of ICA+ non-diabetic children, 20% were anti-BSA-positive. Neither ICA nor BSA antibody titers were significantly related to DQB genotype or sex. ICA titers ( > or = 4 Juvenile Diabetes Foundation units) were present in 84% of diabetic children. Two-thirds of diabetic children were positive for both ICA and anti-BSA antibodies, and none were negative for both markers. CONCLUSIONS: Elevated IgG anti-BSA levels are associated with IDDM in the low-incidence French population. In newly diagnosed diabetic children, these antibodies have similar specificity (95 vs. 98%) and slightly lower sensitivity for IDDM than ICA (74.4 vs. 83.7%). Our results may support an immunological role of BSA in diabetic autoimmunity.

Adolescent↗

Cloning of human and rat p69 cDNA, a candidate autoimmune target in type 1 diabetes.

Triggering of autoimmunity in insulin-dependent diabetes was linked to dietary bovine serum albumin (BSA). Anti-BSA antibodies from diabetes-prone rats precipitate a protein, p69, from islet cell lysates. We have used these antibodies to identify rat p69 cDNAs. Human p69 cDNA was identified by crosshybridization. The p69 coding regions show 87% nucleotide and 89% amino acid homology. Recombinant p69 is recognized by autoantibody and T cells from diabetic children.

Amino Acid Sequence↗

Epstein-Barr virus surveillance after renal transplantation.

At least 1% of organ transplant recipients develop Epstein-Barr virus-positive, often fatal lymphomas. EBV-positive cells accumulating in some organ transplant recipients were suggested to predict EBV+ lymphoma risk but no prospective study has been reported. We used the polymerase chain reaction (PCR) to detect EBV genomic sequences in successive blood samples of 60 kidney recipients before and up to 11 years after renal transplantation. Xenotransplantation of EBV-positive patient and -negative control samples into mice with severe combined immunodeficiency (SCID) was used to assess the tumor risk inherent in these samples. Despite single EBV+ cell detection sensitivity, none of the control samples was positive for EBV genomic sequences. In nearly 2/3 of patients EBV genomic DNA was detectable 3-6 months after transplantation for about 3 months. No patient developed lymphoma. Lymphocytes from 8 EBV-genome positive patients and 10 healthy donors were engrafted into 38 SCID mice. Human B cell lymphoma developed in 75% of the control grafts within about 3 months. In striking contrast, none of the patient grafts developed lymphoma despite the large numbers of EBV+ cells initially transplanted. Patient lymphocyte grafts were resistant to injection of live EBV, while in control lymphocyte grafts this caused lymphoma development within 3 weeks. We conclude that a 100-1000-fold expansion of circulating EBV+ B cell pools occurs frequently after organ transplantation and that it is balanced by effective EBV immunosurveillant functions resistant to immunosuppression. The mere detection of EBV genomic material was not predictive of lymphoma development.

Adolescent↗

HLA-DQ and TAP2 genes in patients with insulin-dependent diabetes mellitus.

We examined the prevalence of HLA-DRB1, DQB1, DQA1 and TAP2 genes in children with insulin-dependent diabetes mellitus (type 1 diabetes). These HLA and TAP2 alleles were identified by dot-blot analysis of polymerase chain reaction (PCR)-amplified genomic DNA with sequence-specific oligonucleotide probes. The results show that those DQB1 alleles, which carry non-aspartic acid at position 57, in conjunction with DQA1 alleles carrying arginine at position 52, are strongly associated with susceptibility to type 1 diabetes. The prevalence of the TAP2* 0201 allele in diabetic patients was significantly lower than that in normal controls. Analysis of the data suggests that DQ alleles have the primary association with type 1 diabetes and that the association of TAP2 alleles with the disease is secondary.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Quantitative analysis of gene expression in different tissues by template-calibrated RT-PCR and laser-induced fluorescence.

RT-PCR is widely used to study gene transcription in many biological systems. Despite the development of a variety of, at times complex, procedures, quantitation of RT-PCR remains difficult, particularly when comparing RNA from different tissues or very small samples. In the procedure described here, we calibrate input cDNA through incorporation of trace label. PCR product is generated from equal amounts of cDNA with fluoresceinated primers, size fractionated, and quantitated by laser-induced fluorescence in an automated DNA sequencer. Eliminating variation in input cDNA resulted in reliable noncompetitive PCR quantitation from templates equivalent to > or = 50 pg of total RNA. Using the example of beta-glucuronidase, a low-copy-number housekeeping gene, we have drawn a map of differential gene expression for this protein in various rat tissues.

Animals↗

T cells from children with IDDM are sensitized to bovine serum albumin.

Epidemiological and experimental evidence suggested that denial of dietary cow milk protein early in life protects genetically susceptible children and animals from insulin-dependent diabetes (IDDM). Bovine serum albumin (BSA) was proposed as a candidate milk-borne mimicry antigen responsible for the diabetogenic cow milk effect. Elevated anti-BSA antibodies have been observed in patients and diabetic rodents, and these antibodies precipitate p69 from islet cell lysates. IDDM is a T cell mediated disorder but efforts to detect BSA-specific T cells in diabetic children have so far failed. We describe here a culture system which allowed the detection of BSA-specific T cells and we mapped this response to the ABBOS peptide (pre-BSA position 152-169) previously identified as a possible mimicry epitope. ABBOS-sensitized T cells were found in 28/31 children with recent onset IDDM but not in non-diabetic controls nor in children with SLE or JRA. T cell proliferative responses declined within the first few years of diabetes diagnosis. Although no effector cell role for BSA/ABBOS specific T lymphocytes has been demonstrated, the presence of BSA peptide-specific T cells strengthens the postulated link between a cow milk protein and IDDM.

Adolescent↗

Multi-locus analysis of HLA class II genes in DR2-positive IDDM haplotypes in Finland. The "Childhood Diabetes in Finland" (DiMe) Study Group.

In this study we characterized the haplotypes found in IDDM patients that normally confer resistance to the disease in order to localize the polymorphisms relevant for the protection. We studied 15 DR2-positive subjects with IDDM for their DRB1, DRB5 and DQB1 genes using RFLP, polymerase chain reaction (PCR), oligonucleotide typing, and in some specific cases direct sequencing after allele-specific PCR. In addition we analyzed 39 DR2-positive, IDDM non-associated haplotypes representing those haplotypes that are not inherited to probands and hence are present only in healthy family members. The frequency of the DRB1*1501-DRB5*0101-DQB1*0602 haplotype was slightly decreased among diabetic patients (80% vs. 92%). In addition, two unconventional haplotypes DRB1*1501-DRB5*0101-DQB1*05031 and DRB1*1501-DRB5*0101-DQB1*0502 were found in patients with IDDM while all the control ones were conventional. The sequencing of the DQB1*0602 allele present in IDDM haplotypes showed no differences when compared to the controls. These results support the primary but not absolute role of DQ in the protection against IDDM. An additional role of factors centromeric to DQB1 gene was suggested by findings based on the bi-allelic TaqI RFLP polymorphism of the DQA2 gene. All DR2-DQB1*0602 IDDM haplotypes were associated with the 2.1-kb fragment while in the control group the 2.1-kb and 1.9-kb fragments were evenly distributed.

Alleles↗

ICA1 encoding p69, a protein linked to the development of type 1 diabetes, maps to human chromosome 7p22.

The development of type 1 (insulin dependent) diabetes mellitus (IDDM) requires a genetically susceptible host and exposure, early in life, to environmental trigger molecules that induce diabetic autoimmunity to insulin producing islet cells. We previously identified islet cell protein p69 as a candidate autoimmune target in IDDM. Here we describe a human genomic p69 fragment which allowed us to map the gene (ICA1) to chromosome 7p22.

Blotting, Southern↗

Epstein-Barr virus and nasopharyngeal carcinoma: bringing molecular genetics strategies to head and neck oncology.

In this article, we consider the tools of molecular genetics and strategies that have, or likely will have, an impact in otolaryngology, either as diagnostic tools or as strategies, with more far-reaching applications in tumour therapy, relapse monitoring, and ultimately, approaches to tumour prevention. Nasopharyngeal carcinoma (NPC) is closely associated with Epstein-Barr virus (EBV). Detection of the virus following gene amplification by the polymerase chain reaction (PCR) can provide a diagnostic tumour marker, both in primary and metastatic sites. NPC can be considered as a model disease on which molecular genetics is and likely will be of considerable impact. NPC is characterized by the presence of a genetically stable, viral agent of proven oncogenicity. The presence of attractive experimental systems for the study of EBV-associated tumours and their accessibility may combined with new molecular approaches towards diagnostic and, eventually, therapeutic improvements in the treatment of this clinically ominous malignancy.

Biomarkers, Tumor↗

Reversion of the SCID phenotype by human T cell grafts. Development of cross-species immunocompetence.

Due to defective recombinase function, mice with severe combined immunodeficiency (SCID) lack functional lymphocytes and can accept human lymphoid xenografts. Xenografted animals (SCIDhum) are thought to provide a neutral environment for in vivo studies of normal, malignant or HIV-infected human cells. SCIDhum often develop endogenous, EBV+ lymphomas in the graft and in the our study two-thirds of 142 SCIDhum mice did so. Surprisingly, one-third of animals developed reversion of the SCID phenotype rapidly after human T cell engraftment. 90% of tumors occurred in nonrevertant and only 10% in revertant mice. These revertant animals showed immunologic tolerance for normal human B lymphocytes, maintained stable levels of mouse and human IgM and IgG. In addition, they generated competent mouse T cells able to kill transformed (EBV+) but not fresh B cells from the same donor nor unrelated human B cell lines. The tolerance for human lymphoid cells and the cross-species antitumor competence of host T lymphocytes imply unexpected recognition and selection events. Rather than a neutral "bioreactor," these observations mark the SCID host as potentially active participant in a composite immune system generated by xenografting.

Animals↗

Viral interleukin 10 is critical for the induction of B cell growth transformation by Epstein-Barr virus.

We have used an efficient cDNA subtraction library procedure to identify newly induced genes in human B lymphocytes infected for 6 h with Epstein-Barr virus (EBV). Among the genes identified by automated sequencing of a random subset of clones from this library, one coded the EBV BCRF1 open reading frame, which specifies the viral interleukin 10 gene (vIL-10). This molecule is highly homologous to human (h)IL-10 and was previously thought to represent a "late" viral gene expressed only during the lytic phase of virus replication. Using gene amplification by reverse transcriptase polymerase chain reaction of B cell RNA obtained at varying times after infection, we detected vIL-10 expression within a few hours of EBV infection, followed, 20-30 h later by expression of hIL-10. Expression of both genes continued beyond the initial transformation phase (5-10 d) and was present in all transformed cell lines tested. When added at the time of viral infection, antisense (but not sense) oligonucleotides for vIL-10 mRNA (cytosolic half-life, approximately 6 h) prevented subsequent B cell transformation. The antisense effect was highly specific, leaving the expression levels of other transformation-related genes intact. Addition of exogenous (h)IL-10 rescued the transformation process in antisense-treated cells. Our observations establish vIL-10 as a new latency gene with a directly transformation-prerequisite function.

B-Lymphocytes↗