PubMed Health⌕ Search

Biomedical subjects

Graeme Stewart

Publications and source records attributed to Graeme Stewart.

8 recordsLinked to original sources

Interaction between allelic variation in IL12B and CCR5 affects the development of AIDS: IL12B/CCR5 interaction and HIV/AIDS.

OBJECTIVE: IL-12 is involved in immune surveillance and response that links the innate and adaptive arms of the immune system. Among its many effects, IL-12 increases the cell surface expression of the CCR5 co-receptor for R5 strains of HIV-1, which are predominantly involved in HIV-1 transmission and spread. In the present study we investigated the effect of epistasis between allelic variants of CCR5 and IL12B on the susceptibility to HIV-1 infection and HIV-1 disease progression. METHODS: HIV-1-positive patients were genotyped for IL12Bpro from two groups of HIV-1 seroincident patients from Western Australia (n = 101 and 200), longitudinal clinical data were available for one of the Western Australian cohorts for a period of over 12 years and a group of seroprevalent individuals from Sydney (n = 112). A group of ethnically matched healthy volunteers (n = 200) was also genotyped as controls. Comparison of allele frequencies between HIV-1 patients and controls was performed to determine the influence on susceptibility to HIV-1 infection, and regression analysis was used to determine the influence on disease progression. RESULTS: Individuals positive for CCR5Delta32 and who carry the IL12Bpro1.1 genotype were underrepresented across all three independent HIV-1-positive cohorts [odds ratio 0.5; 95% confidence interval (CI) 0.28-0.97; P = 0.038]. CCR5wt/wt and IL12Bpro2.2 individuals progressed to AIDS at a significantly faster rate than other CCR5 and IL12Bpro groups (hazards ratio 3.24; 95% CI 1.9-15.1; P = 0.002). CONCLUSION: Epistatic interaction between allelic variants of CCR5 and IL12Bpro exert a significant influence on the clinical outcome of HIV-1 infection.

Acquired Immunodeficiency Syndrome↗

Linkage disequilibrium screening for multiple sclerosis implicates JAG1 and POU2AF1 as susceptibility genes in Europeans.

By combining all the data available from the Genetic Analysis of Multiple sclerosis in EuropeanS (GAMES) project, we have been able to identify 17 microsatellite markers showing consistent evidence for apparent association. As might be expected five of these markers map within the Major Histocompatibility Complex (MHC) and are in LD with HLA-DRB1. Individual genotyping of the 12 non-MHC markers confirmed association for three of them--D11S1986, D19S552 and D20S894. Association mapping across the candidate genes implicated by these markers in 937 UK trio families revealed modestly associated haplotypes in JAG1 (p=0.019) on chromosome 20p12.2 and POU2AF1 (p=0.003) on chromosome 11q23.1.

Calcium-Binding Proteins↗

An investigation of polymorphisms in the 17q11.2-12 CC chemokine gene cluster for association with multiple sclerosis in Australians.

BACKGROUND: Multiple sclerosis (MS) is a disorder of the central nervous system (CNS) characterised by inflammation and neuronal degeneration. It is believed to result from the complex interaction of a number of genes, each with modest effect. Chemokines are vital to the migration of cells to sites of inflammation, including the CNS, and many are implicated in MS pathogenesis. Most of the CC chemokine genes are encoded in a cluster on chromosome 17q11.2-12, which has been identified in a number of genome wide screens as being potentially associated with MS. METHODS: We conducted a two-stage analysis to investigate the chemokine gene cluster for association with MS. After sequencing the chemokine genes in several DNA pools to identify common polymorphisms, 12 candidate single-nucleotide polymorphisms (SNPs) were genotyped in a cohort of Australian MS trio families. RESULTS: Marginally significant (uncorrected) transmission distortion was identified for four of the SNPs after stratification for several factors. We also identified marginally significant (uncorrected) transmission distortion for haplotypes encompassing the CCL2 and CCL11 genes, using two independent cohorts, which was consistent with recent reports from another group. CONCLUSION: Our results implicate several chemokines as possibly being associated with MS susceptibility, and given that chemokines and their receptors are suitable targets for therapeutic agents, further investigation is warranted in this region.

Australia↗

Analysis of neutralizing antibodies to therapeutic interferon-beta in multiple sclerosis patients: a comparison of three methods in a large Australasian cohort.

Persistent high-titre neutralizing antibodies (NAB) to therapeutic interferon-beta(IFNbeta)in multiple sclerosis patients reduce therapeutic efficacy. Difficulties in standardization of cell-based bioactivity assays have hindered interlaboratory comparison of NAB titres and the determination of a clinically relevant definition of seropositivity. We determined NAB status in Australasian multiple sclerosis patients receiving IFNbetausing both the antiviral cytopathic effect (CPE) assay (n = 227) and the more specific ELISA for the type I interferon-inducible MxA protein (n = 350). While the log(10) titres determined in the two assays were highly correlated (p < 0.0001; r = 0.967) with similar distributions, the MxA assay was more sensitive, detecting lower concentrations of NAB than the CPE assay. The range of titres determined in the CPE assay was 10 to >7290; and 9 to 53,700 in the MxA assay, with ranked titre distribution highlighting the arbitrary nature of currently accepted definitions of NAB seropositivity. Bioactivity of injected IFNbetawas significantly reduced in NAB-positive patients (p = 0.006; NAB MxA titres = 184 to 5340) compared to NAB-negative patients as assessed ex vivo using real-time RT-PCR analysis of MxA gene induction. The range of MxA mRNA levels in healthy controls was remarkably consistent with previously published results, regardless of the assay standardization method [Gilli, F., Sala, A., Marnetto, F., Lindberg, R.L., Leppert, D. and Bertolotto, A. (2003) Comparison of IFNbeta bioavailability evaluations by MxA mRNA using two independent quantification methods. Abstract, ECTRIMS Meeting, Milan, Italy; Pachner, A., Narayan, K., Price, N., Hurd, M. and Dail, D. (2003a) MxA Gene Expression Analysis as an Interferon-beta Bioactivity Measurement in Patients with Multiple Sclerosis and the Identification of Antibody-Mediated Decreased Bioactivity. Mol. Diagn. 7, 17-25]. Assessment of IFNbetaresponse ex vivo accounts for both circulating factors and the cellular response to IFNbeta, and the data support the development of the MxA gene induction assay for the routine screening of patients receiving IFNbeta.

Antibodies↗

A high-density screen for linkage in multiple sclerosis.

To provide a definitive linkage map for multiple sclerosis, we have genotyped the Illumina BeadArray linkage mapping panel (version 4) in a data set of 730 multiplex families of Northern European descent. After the application of stringent quality thresholds, data from 4,506 markers in 2,692 individuals were included in the analysis. Multipoint nonparametric linkage analysis revealed highly significant linkage in the major histocompatibility complex (MHC) on chromosome 6p21 (maximum LOD score [MLS] 11.66) and suggestive linkage on chromosomes 17q23 (MLS 2.45) and 5q33 (MLS 2.18). This set of markers achieved a mean information extraction of 79.3% across the genome, with a Mendelian inconsistency rate of only 0.002%. Stratification based on carriage of the multiple sclerosis-associated DRB1*1501 allele failed to identify any other region of linkage with genomewide significance. However, ordered-subset analysis suggested that there may be an additional locus on chromosome 19p13 that acts independent of the main MHC locus. These data illustrate the substantial increase in power that can be achieved with use of the latest tools emerging from the Human Genome Project and indicate that future attempts to systematically identify susceptibility genes for multiple sclerosis will have to involve large sample sizes and an association-based methodology.

Australia↗

Nuclear import of N-terminal FAK by activation of the FcepsilonRI receptor in RBL-2H3 cells.

As FAK integrates membrane receptor signalling, yet is also found in the nucleus, we investigated whether nuclear FAK is regulated by membrane receptor activation. Activation of the mast cell FcepsilonRI receptor leads to the release and synthesis of inflammatory mediators as well as increased proliferation and survival. Using RBL-2H3 basophilic leukaemia cells, FAK and the FcepsilonRI receptor were co-localised following cross-linking of IgE with antigen. This also resulted in a significant increase in the nucleus of several N-terminal FAK fragments, the largest of which included the kinase domain but not the focal adhesion targeting domain. This was confirmed using cells that stably expressed recombinant EGFP-FAK. Furthermore, treatment of EGFP-FAK expressing cells with Leptomycin B, an inhibitor of nuclear export, resulted in increased nuclear localisation of EGFP-FAK. Therefore, FAK can shuttle between the nuclear and cytoplasmic compartments and the cellular distribution of N-terminal FAK is regulated by membrane receptor activation.

Active Transport, Cell Nucleus↗

Chemokine receptor genotype and response to interleukin-2 therapy in HIV-1-infected individuals.

Interleukin-2 therapy is an immune-based treatment for HIV-1-infected individuals with declining CD4(+) T cell counts. Intravenous IL-2 produces an elevation of circulating CD4(+) T cells, but with a varying degree of effectiveness in individual patients. IL-2 is also known to increase the expression of chemokine receptors, coreceptors for HIV-1. Allelic variation in chemokine receptor genes can markedly affect the course of HIV disease; consequently, we analyzed CCR5 and CCR2B genotypes among a cohort of HIV-1-infected individuals that received IL-2 therapy. DNA was extracted from treated individuals and genotyping was performed using PCR followed by allele-specific detection or cleavage of the amplified product. Samples from 47 trial participants (25 CIV-IL-2 group; 22 placebo group) were analyzed for CCR5 and CCR2B genotype. We report that CCR5 Delta 32 heterozygous individuals had a greater CD4(+) T cell response to continuous intravenous IL-2 (CIV-IL-2) treatment than those homozygous for the wild-type allele (median = 427 vs 237 cells/mm(3); P = 0.03). This study highlights the importance of interactions between IL-2 and CCR5; at the clinical level, it argues for assessment of chemokine receptor genotype in IL-2 and perhaps other immune-based therapy trials.

Adolescent↗

A human immunodeficiency virus type 1 isolate from an infected person homozygous for CCR5Delta32 exhibits dual tropism by infecting macrophages and MT2 cells via CXCR4.

The mechanisms of human immunodeficiency virus (HIV) infection of a man (VH) homozygous for the CCR5Delta32 mutation were investigated, and coreceptors other than CCR5 used by HIV type 1 (HIV-1) isolated from this individual were identified. In contrast to previous reports, this individual's rate of disease progression was not accelerated. Homozygosity for CCR5Delta32 mutation was demonstrated by PCR and DNA sequencing (R. Biti et al., Nat. Med. 3:252-253, 1997). CCR5 surface expression was absent on T lymphocytes and macrophages. HIV was isolated by coculture with peripheral blood mononuclear cells (PBMCs) from siblings who were homozygous (VM) or wild type (WT) for the CCR5Delta32 mutation. The virus demonstrated dual tropism for infection of MT2 cell line and primary macrophages. Sequencing of the full HIV genome directly from the patient's PBMCs revealed 21 nucleotide insertions in the V1 region of gp120. The VH envelope sequence segregated apart from both the T-cell-line-adapted tropic strains NL4-3 and SF2 and M-tropic strain JRFL or YU2 by phylogenetic tree analysis. VH was shown to utilize predominantly CXCR4 for entry into T lymphocytes and macrophages by HOS.CD4 cell infection assay, direct envelope protein fusion, and inhibition by anti-CXCR4 monoclonal antibody (12G5), SDF-1, and AMD3100. Microsatellite mapping demonstrated the separate inheritance of CXCR4 by both homozygote brothers (VH and VM). Our study demonstrates the ability of certain strains of HIV to readily use CXCR4 for infection or entry into macrophages, which is highly relevant to the pathogenesis of late-stage disease and presumably also HIV transmission.

Amino Acid Sequence↗