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Biomedical subjects

A F Markham

Publications and source records attributed to A F Markham.

At least 37 records · Page 2Linked to original sources

Application of differential display to immunological research.

The majority of immunological processes are mediated by cell-to-cell contact or receptor-ligand interactions that transmit intracellular signals and affect the regulation of transcription in the nucleus. As a consequence, precursor cells develop into their respective lineages and cells differentiate further during an immune response. In order to study changes in normal cells or even cells that have been isolated from diseased tissue, a number of approaches have been developed. One such method, differential display (DDRT-PCR), is a versatile technique for the analysis of gene expression that is based on RT-PCR and denaturing polyacrylamide gel electrophoresis. This technique is applicable to multiple samples of clonal or purified cell populations as well as to complex tissues and can be used to provide mRNA fingerprints. However, the main purpose of DDRT-PCR is to isolate differentially regulated genes in biological systems. The method is carried out without prior hypothesis as to which genes should be examined and so increases the possibility of identifying completely novel and unexpected changes in transcription. A major drawback has been the isolation of false positive clones and the need to confirm the results of analysis by another method. This makes DDRT-PCR labour intensive. A number of strategies have been recommended to reduce these problems, including reverse-northern analysis as a confirmatory step for screening putative differentials. In order to reduce the number of gel fingerprints that would be required to cover all the mRNAs in a cell, several focused approaches have been suggested. These include targeted differential display for the isolation of multigene families that have conserved protein domains or gene signatures and subtractive differential display whereby one population is subtracted from the other prior to screening. The purpose of this review is to provide some guidance to the immunologist who might wish to apply DDRT-PCR in their research. A number of examples where DDRT-PCR has been used successfully in immunological research are included.

Animals↗

Mutation in the gene encoding ferritin light polypeptide causes dominant adult-onset basal ganglia disease.

We describe here a previously unknown, dominantly inherited, late-onset basal ganglia disease, variably presenting with extrapyramidal features similar to those of Huntington's disease (HD) or parkinsonism. We mapped the disorder, by linkage analysis, to 19q13.3, which contains the gene for ferritin light polypeptide (FTL). We found an adenine insertion at position 460-461 that is predicted to alter carboxy-terminal residues of the gene product. Brain histochemistry disclosed abnormal aggregates of ferritin and iron. Low serum ferritin levels also characterized patients. Ferritin, the main iron storage protein, is composed of 24 subunits of two types (heavy, H and light, L) which form a soluble, hollow sphere. Brain iron deposition increases normally with age, especially in the basal ganglia, and is a suspected causative factor in several neurodegenerative diseases in which it correlates with visible pathology, possibly by its involvement in toxic free-radical reactions. We found the same mutation in five apparently unrelated subjects with similar extrapyramidal symptoms. An abnormality in ferritin strongly indicates a primary function for iron in the pathogenesis of this new disease, for which we propose the name 'neuroferritinopathy'.

Adult↗

Maternally inherited hearing impairment in a family with the mitochondrial DNA A7445G mutation.

Despite the increasing number of reports of families with hearing impairment and mitochondrial DNA (mtDNA) mutations, the frequency of these mutations as causes of non-syndromic sensorineural hearing impairment (NSSHI) remains unknown. Mutations such as A1555G, A7445G and 7472insC have been found in several unrelated families implying they are more frequent than initially thought. We describe a family with NSSHI due to the presence of the homoplasmic mtDNA A7445G mutation in the tRNASer(UCN) gene. This is the fourth such family described with this mutation, all of different genetic backgrounds. Our study also demonstrates the difficulties sometimes encountered in establishing mitochondrial inheritance of hearing impairment in some families.

DNA↗

In vivo episomal maintenance of a herpesvirus saimiri-based gene delivery vector.

Herpesvirus saimiri (HVS) has several properties that make it amenable to development as a gene delivery vector. HVS offers the potential to incorporate large amounts of heterologous DNA and infect a broad range of human cell lines. Upon infection the viral genome can persist by virtue of episomal maintenance and stably maintains heterologous gene expression. Here we report an evaluation of the in vivo properties of HVS, with a view to its development as a gene delivery system. We demonstrate for the first time, the long-term persistence of the HVS genome in tumour xenografts generated from HVS-infected human carcinoma cell lines. The HVS-based vector remained latent in the xenograft without spreading to other organs. Moreover, the long-term in vivo maintenance of the HVS genome, as a nonintegrated circular episome, provided efficient sustained expression of a heterologous transgene. These in vivo results suggest that HVS-based vectors have potential for gene therapy applications.

Animals↗

Lack of inducible nitric oxide synthase promotes intestinal tumorigenesis in the Apc(Min/+) mouse.

BACKGROUND & AIMS: The role of the inducible isoform of nitric oxide synthase (Nos2 or iNOS) in intestinal tumorigenesis is unclear. Conflicting data also exist regarding the ability of Nos2 to modulate expression and/or activity of cyclooxygenase 2 (Cox-2), which promotes intestinal tumorigenesis. Therefore, we determined the effect of a null Nos2 genotype on intestinal tumorigenesis and Cox-2 expression/activity in the Apc(Min/+) mouse model of familial adenomatous polyposis. METHODS: Apc(Min/+)Nos2(-/-) mice were generated by successive crosses between C57BL/6-Apc(Min/+) and C57BL/6-Nos2(tm1Lau) mice. Adenoma characteristics of age-matched Apc(Min/+)Nos2(+/+) and Apc(Min/+)Nos2(-/-) mice were compared. The level and cellular localization of Nos2 messenger RNA (mRNA) expression in Apc(Min/+)Nos2(+/+) mouse intestine was determined. Cox-2 expression and activity were measured in both intestinal tissue and bone marrow-derived macrophages in vitro. RESULTS: Apc(Min/+)Nos2(-/-) mice developed significantly more intestinal adenomas than Apc(Min/+)Nos2(+/+) littermates. Epithelial cell Nos2 mRNA expression was decreased in adenomas compared with histologically normal Apc(Min/+)Nos2(+/+) intestine. There was no significant difference in Cox-2 expression or activity in either intestine or bone marrow-derived macrophages from Apc(Min/+)Nos2(+/+) and Apc(Min/+)Nos2(-/-) animals. CONCLUSIONS: Nos2 plays an antineoplastic role in the Apc(Min/+) mouse model of familial adenomatous polyposis. Nos2 does not modulate Cox-2 expression or activity in the Apc(Min/+) mouse.

Adenomatous Polyposis Coli Protein↗

Genomic structures of the human angiopoietins show polymorphism in angiopoietin-2.

The family of human angiopoietins comprises factors with important roles in vascular development and angiogenesis. All angiopoietins bind with similar affinity to the endothelial cell-specific receptor, Tie2. The mechanism by which they contribute to angiogenesis is thought to involve regulation of endothelial cell interactions with supporting perivascular cells. In this study the genomic structures of all three human angiopoietins were characterised by direct sequencing of human genomic DNA from the appropriate P1 artificial chromosome (PAC) clones. The exact positions at the intron/exon boundaries and the lengths of all eight introns were determined. As would be expected from the homology of these three proteins, the positions of the introns in the three genes are highly conserved. The putative RNA transcription start site for each angiopoietin gene was also determined. Intron-specific primers were used to amplify each exon of angiopoietin-1 and angiopoietin-2 from individual genomic DNAs. Although no polymorphism has been detected in the coding region of angiopoietin-1, three independent polymorphisms have been identified for angiopoietin-2.

Angiopoietin-1↗

Rheumatoid arthritis synovial T cells regulate transcription of several genes associated with antigen-induced anergy.

Rheumatoid arthritis (RA) is a chronic, inflammatory synovitis whose pathogenesis may involve autoimmune mechanisms. Anergy is a state of T-cell nonresponsiveness characterized by downregulated IL-2 production. Paradoxically, RA T cells are hyporesponsive and proliferate poorly to antigens and mitogens, thus sharing some characteristics with anergic T cells. We analyzed the molecular basis of anergy in cloned human CD4+ T cells using differential display RT-PCR and subsequently examined the levels of differentially expressed transcripts in RA and, as control, reactive arthritis (ReA) synovium. Several transcriptional events were common to anergic T cells and RA synovium. These included downregulation of CALMODULIN:, which is critical to T-cell activation, and of cellular apoptosis susceptibility protein, which may mediate resistance to apoptosis in RA. Transcription of CALMODULIN: in RA synovium was less than 1% of that in ReA and was lower in RA synovial fluid mononuclear cells than in paired PBMCs. Following anti-TNF-alpha therapy in vivo, RA PBMC CALMODULIN: transcripts increased five- to tenfold. Pharmacological calmodulin blockade in vitro impaired antigen-specific proliferation. These data provide a link between reduced CALMODULIN: transcription and impaired T-cell responsiveness in RA. The identification of transcriptional changes common to anergic and RA synovial T cells should help interpret some of the characteristic RA cellular defects.

Antigens↗

Promoter analysis of the human ubiquitin-conjugating enzyme gene family UBE2L1-4, including UBE2L3 which encodes UbcH7.

UbcH7 is a ubiquitin-conjugating enzyme mediating c-fos degradation, transcription factor NF-kappaB maturation, human papilloma virus-mediated p53 and Myc protein degradation, in vitro. Previously, we characterised a highly dispersed gene family, UBE2L1-UBE2L4, whose members could potentially encode different isoforms of the UbcH7 protein. UBE2L3, located at chromosome 22q11.2, is the only identified family member with introns and encodes a polypeptide sequence identical to that of UbcH7. Promoter characterisation of UBE2L1, UBE2L3 and UBE2L4 5'-upstream regions was performed to establish which are transcribed under normal physiological conditions and after heat shock. Promoter activity was observed only with the UBE2L3 construct, the minimal promoter lying within a region 100 bp upstream of the transcriptional start site. No evidence for the presence of UBE2L1 or UBE2L4 transcripts was observed in human or murine tissues and cell lines. These data strongly suggest that UBE2L1 and UBE2L4 are likely to encode pseudogenes. Sequencing revealed that the UBE2L3 promoter contained no TATA or CCAAT boxes. Protein:DNA interaction studies confirmed the presence of binding sites for the transcription factors AP2 and Sp1 in the UBE2L3 minimal promoter. Deletion of these binding sites indicated that these factors are crucial for transcription of this gene.

Animals↗

Regulation and function of the interaction between the APC tumour suppressor protein and EB1.

The interaction between the adenomatous polyposis coli (APC) tumour suppressor and the microtubule-associated protein EB1 was examined. Immunoprecipitation suggested that APC and EB1 were not associated in cultures of HCT116 cells arrested in mitosis. The C-terminal 170 amino acids of APC, purified as a bacterial fusion protein, precipitated EB1 from cell extracts, significantly refining the location of the EB1 interaction domain in APC. In vitro phosphorylation of this fusion protein by either protein kinase A or p34cdc2 reduced its ability to bind to EB1. Expression of GFP fusions to C-terminal APC sequences lacking or including the APC basic domain but encompassing the EB1 binding region in SW480 cells revealed a microtubule tip association which co-localized with that of EB1. Expression of the basic domain alone revealed a non-specific microtubule localization. In vitro interaction studies confirmed that the APC basic domain did not contribute to EB1 binding. These findings strongly suggest that the interaction between APC and EB1 targets APC to microtubule tips, and that the interaction between the two proteins is down-regulated during mitosis by the previously described mitotic phosphorylation of APC.

Adenomatous Polyposis Coli Protein↗

Vertebrate pseudogenes.

Pseudogenes are commonly encountered during investigation of the genomes of a wide range of life forms. This review concentrates on vertebrate, and in particular mammalian, pseudogenes and describes their origin and subsequent evolution. Consideration is also given to pseudogenes that are transcribed and to the unusual group of genes that exist at the interface between functional genes and non-functional pseudogenes. As the sequences of different genomes are characterised, the recognition and interpretation of pseudogene sequences will become more important and have a greater impact in the field of molecular genetics.

Animals↗

Analysis of the serotonin transporter gene linked polymorphism (5-HTTLPR) in anorexia nervosa.

Previous studies have demonstrated aberrant expression of serotonin in individuals with an eating disorder. Given this the serotonin transporter gene (5-HTT) is a strong candidate to contribute to the genetic component of the aetiology of eating disorders. To determine the role of this particular gene in the susceptibility to anorexia nervosa (AN) we have examined a tandemly repeated sequence close to the promotor region of the 5-HTT gene, which is represented by a long (L) and short (S) variant. Previous studies have shown that the transcriptional activity of the 5-HTT gene differs significantly between these two alleles. A group of 138 Diagnostic and Statistical Manual of Mental Disorders (DSM-IV) criteria AN patients and 90 controls were genotyped at the 5-HTT gene linked polymorphism (5-HTTLPR). Statistical analysis showed no significant difference in allele or genotype frequencies between the two groups. These data suggest that there is no association between 5-HTTLPR genotype and susceptibility to AN, in our population. Am. J. Med. Genet. (Neuropsychiatr. Genet.) 96:53-55, 2000.

Adolescent↗

Novel translocation of the BCL10 gene in a case of mucosa associated lymphoid tissue lymphoma.

Interest has focused on a recently identified gene, BCL10, thought to play an important role in the genesis of extranodal, marginal zone (MALT) lymphomas. This gene belongs to a family containing caspase recruitment domains (CARD), that are involved in the apoptotic pathway. Translocations of the BCL10 gene to the immunoglobulin heavy chain locus at 14q32 have been described. We report herein a case of MALT lymphoma showing t(1; 2)(p22; p12). The translocation was shown to involve the BCL10 gene and the immunoglobulin kappa light chain locus by fluorescence in situ hybridization.

Adaptor Proteins, Signal Transducing↗

Fcgamma receptor type IIIA is associated with rheumatoid arthritis in two distinct ethnic groups.

OBJECTIVE: To investigate a possible association between a functional polymorphism in the intermediate-affinity receptor for IgG called Fc-gamma receptor type IIIA (FcgammaRIIIA [CD16]) and rheumatoid arthritis (RA). METHODS: This was an allelic association study in which a single nucleotide polymorphism in FcgammaRIIIA was examined as a susceptibility and/or severity factor for RA. The FcgammaRIIIA-158V/F polymorphism was genotyped by direct sequencing in 2 well-characterized ethnic groups, UK Caucasians (141 RA patients and 124 controls) and North Indians and Pakistanis (108 RA patients and 113 controls). RESULTS: The FcgammaRIIIA-158V/F polymorphism was associated with RA in both ethnic groups (P = 0.028 for UK Caucasians, P = 0.050 for North Indians and Pakistanis, and P = 0.003 for both groups combined). FcgammaRIIIA-158VF and -158W individuals had an increased risk of developing RA in both populations (UK Caucasians odds ratio [OR] 1.6, P = 0.050; North Indians and Pakistanis OR 1.9, P = 0.023; and combined groups OR 1.7, P = 0.003). In the UK Caucasian group, the highest risk was for nodular RA, a more severe disease subset, associated with homozygosity for the FcgammaRIIIA-158V allele (OR 4.4, P = 0.004). There was also evidence for an interaction between the RA-associated HLA-DRB1 allele and the presence of at least 1 FcgammaRIIIA-158V allele in predicting susceptibility to RA (OR 5.5, P = 0.000). CONCLUSION: We have demonstrated that the FcgammaRIIIA-158V/F polymorphism is a susceptibility and/or severity marker for RA in 2 distinct ethnic groups. This finding may ultimately provide additional insights into the pathogenesis of RA and other autoantibody/immune complex-driven autoimmune diseases.

Alleles↗

Localization of cyclooxygenase-2 in human sporadic colorectal adenomas.

A putative target for the anti-colorectal cancer action of nonsteroidal anti-inflammatory drugs is the inducible isoform of cyclooxygenase (COX), COX-2. COX-2 is expressed within intestinal adenomas in murine polyposis models, but expression has been poorly characterized in human colorectal neoplasms. Therefore, we investigated the localization of the COX-2 protein in human sporadic colorectal adenomas. Immunohistochemistry for COX-2 and CD68 (a tissue macrophage marker) was performed on formalin-fixed, paraffin-embedded (n = 52) and frozen, acetone-fixed (n = 6) sections of human sporadic colorectal adenomas. Forty of 52 (77%) formalin-fixed adenomas expressed immunoreactive COX-2. COX-2 was localized to superficial interstitial macrophages in 39 cases (75%) and to deep interstitial macrophages in 9 cases (17%). COX-2 staining of dysplastic epithelial cells was observed in 15 cases (29%). A logistic regression analysis identified the adenoma site (P = 0.012) and histological type (P = 0.001) as independent predictors of superficial macrophage COX-2 expression. There was no relationship between the number of macrophages within an adenoma and macrophage COX-2 expression. These results indicate that COX-2 is expressed predominantly by interstitial macrophages within human sporadic colorectal adenomas. If COX-2 does indeed play a role in the early stages of colorectal carcinogenesis in man, these data suggest COX-2-mediated paracrine signaling between the macrophages and epithelial cells within adenomas.

Adenoma↗

Prenatal diagnosis of aniridia.

OBJECTIVE: To use molecular genetic techniques to prenatally screen for aniridia. DESIGN: Case report. METHODS: DNA was extracted from cultured fibroblasts obtained through amniocentesis. Two mutation detection methods, Ava1 restriction digestion and single-strand conformational polymorphism electrophoresis, were used to screen the PAX6 gene. MAIN OUTCOME MEASURES: The results from the amniocentesis sample were compared with DNA obtained from the affected father, firstborn infant, and unaffected mother to determine whether the fetus carried the PAX6 mutation. RESULTS: DNA from the fetus demonstrated the same banding pattern as the affected father and firstborn infant. CONCLUSIONS: The fetus carried the mutated PAX6 allele and was predicted to develop aniridia. This was later confirmed when the child was born. This case report illustrates an important use of genetic mutation screening in the clinical setting.

Adult↗

Truncated adenomatous polyposis coli (APC) tumour suppressor protein can undergo tyrosine phosphorylation.

Numerous mutations in the adenomatous polyposis coli (APC) gene have been described in colorectal cancer. The vast majority introduce nonsense codons leading to the production of truncated N-terminal APC fragments. Mutations occurring before APC codon 158, have been associated with an attenuated form of familial adenomatous polyposis whereas those occurring at codon 168 or beyond lead to the characteristic form of the disease. These 10 amino acid residues of APC contain a YYAQ motif which appears to constitute a potential SH2 binding domain similar to a sequence present in tyrosine kinase receptors that activate STAT 3 when phosphorylated. We have expressed a recombinant, N-terminal APC fragment in bacterial cells, and shown that it can indeed undergo tyrosine phosphorylation in this domain. We used site-directed mutagenesis to confirm the specificity of the reaction. These observations raise the possibility that tyrosine phosphorylation may be another mechanism involved in controlling APC function.

Adenomatous Polyposis Coli Protein↗

A herpesvirus saimiri-based gene therapy vector with potential for use in cancer immunotherapy.

The herpesvirus saimiri (HVS) genome has the capacity to incorporate large amounts of heterologous DNA and can be maintained episomally in many different human cell types. To evaluate the efficacy of HVS-mediated gene transfer into human hemopoietic cells, we investigated the ability of an HVS-based construct, carrying the enhanced green fluorescent protein (EGFP) and neomycin resistance genes, to transduce a variety of human hemopoietic cell lines and primary CD34+ cells. As measured by flow cytometry, the numbers of EGFP+ cells at 2 days postinfection differed between various cell types ranging, from 1.3% for KG1 cells to 56.8% for THP-1 cells. In addition, the expression of EGFP in Jurkat cells was retained at >95% per round of cell division over a period of 6 weeks (comparable with Epstein-Barr virus-derived gene therapy systems). Although the virus was not specifically disabled, no lytic viral mRNAs could be detected in transduced Jurkat cells, and infectious virus could not be detected by sensitive virus recovery assay. We also describe a simple centrifugation method that increases the efficiency of transduction by >100% in some cases and may be generally applicable to other herpesvirus-based vectors for ex vivo gene delivery. Using this technique, we were able to demonstrate a tropism for CD34+/CD14+ cells, transducing 30% of the population. These cells are known to give rise to dendritic cells (the most potent of the antigen-presenting cells), suggesting that the vector could be used to deliver DNA sequences encoding tumor antigens for cancer immunotherapy.

Antigens, CD34↗