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Biomedical subjects

D J Roy

Publications and source records attributed to D J Roy.

At least 19 recordsLinked to original sources

Characteristics of the T cell-mediated immune response to maedi-visna virus.

Virus-specific T cell-mediated immunity was investigated in healthy sheep persistently infected with the ruminant lentivirus maedi-visna. Visna-specific lymphocyte proliferation was demonstrated in response to both purified virions and recombinant p25, the major core protein of maedi-visna virus. The responding T cell population in this assay was mainly of the CD4+ phenotype, although in some individuals CD8+ T cells were also shown to respond to visna antigen in this system.

Animals

Expression of maedi-visna virus major core protein, p25: development of a sensitive p25 antigen detection assay.

The gene for the major core protein, p25, of maedi-visna virus (MVV) was cloned using a PCR (polymerase chain reaction) strategy employing primers designed for the insertion of the gene directly into yeast Ty-VLP expression vectors. In this system p25 is expressed as a fusion protein which self-assembles into virus-like particles (VLPs) due to interaction of the Ty A fusion partner. High levels (50-60 mg/l) of p25 fusion protein were produced, and p25 was recovered in soluble and highly pure form following cleavage from the Ty particle by Factor Xa protease digestion. The p25 protein produced in yeast is antigenically authentic, as defined by its reactivity with p25-specific antisera and its ability to elicit antibodies reactive with native viral p25 protein; although the cleaved, soluble form of p25 was found to be considerably more antigenic than the hybrid Ty-p25 VLP. Using this reagent anti-p25 monoclonal and polyclonal antibodies were generated. These sera and the p25 protein have been used to develop a sensitive MVV p25 detection assay. These reagents and assays will facilitate further studies of viral replication and immune response to the virus.

Animals

A simplified method for the detection of maedi-visna virus RNA by in situ hybridization.

A simplified in situ hybridization method for the detection of maedi-visna virus (MVV) RNA in cultured cells using 35S-labelled DNA probes is described. The protocol currently used in this laboratory for the in situ detection of MVV RNA involves paraformaldehyde fixation followed by extensive cellular pretreatment prior to hybridization. It was found that substitution of paraformaldehyde fixation with brief acetone treatment and the removal of subsequent pretreatment steps gave a similar level of hybridization signal to that of our standard protocol. Acetone fixed, non-pretreated samples were used to develop a double labelling procedure in which immunocytochemistry and in situ hybridization were combined to allow the simultaneous detection of visna virus antigens and RNA within the same cell.

Acetone

Cloning, expression and characterization of ovine interleukins 1 alpha and beta.

Ovine interleukin 1 alpha (IL-1 alpha) c-DNA, obtained by polymerase chain reaction, has been cloned into pTZ18R and pTZ19R. The resulting DNA sequence shows close homology with the bovine sequence. The derived amino-acid sequence shows conserved motifs similar to those observed in all species studied so far. No signal peptide is seen. Northern blots of RNA from lipopolysaccharide (LPS)-stimulated ovine alveolar macrophages show IL-1 beta m-RNA to be produced earlier than and to be more transient than IL-1 alpha m-RNA. c-DNAs coding for the IL-1 alpha proprotein and IL-1 alpha and IL-1 beta mature proteins have been cloned and expressed in the yeast Ty-VLP system as fusion proteins. The resultant IL-1 protein preparations, cleaved from their fusion partners by the action of activated coagulation Factor Xa, are 80-95% pure and show biological activity in standard thymocyte co-mitogen and cartilage degradation assays for IL-1. Some species specificity is observed in that sheep thymocytes are more responsive to ovine rIL-1 than are mouse thymocytes. The presence of a Factor Xa cleavage site in the IL-1 alpha proprotein suggests that Factor Xa may be involved in the processing of ovine IL-1 alpha to its mature form.

Amino Acid Sequence

Nucleotide sequence of EV1, a British isolate of maedi-visna virus.

We have isolated a maedi-visna-like virus from the peripheral blood mononuclear cells of a British sheep displaying symptoms of arthritis and pneumonia. After brief passage in fibroblasts this virus (designated EV1) was used to infect choroid plexus cells. cDNA clones of the virus were prepared from these cells and sequenced. Gaps between non-overlapping clones were filled using gene amplification by the polymerase chain reaction. The genome structure is similar to that described for visna virus strain 1514, and differs from that described for visna virus strain SA-OMVV in not having a W reading frame. Overall the genome differs by about 20% between each of these strains, but there is fivefold variation in the amount of divergence of derived amino acid sequences of different open reading frames. Two sequenced EV1 clones each contain only one copy of the 43 bp repeat, with paired AP-1 sites, which is a feature of other ruminant lentiviral long terminal repeats (LTRs). However, analysis of viral DNA in infected cells by gene amplification shows that LTRs with two repeats do occur, albeit at a relatively low frequency.

Amino Acid Sequence

DNA analysis of intracellular Campylobacter-like organisms associated with the porcine proliferative enteropathies: novel organism proposed.

Intracellular Campylobacter-like organisms are a consistent feature of the porcine proliferative enteropathies. The relationship between these organisms and known Campylobacter sp. previously associated with the disease was studied using restriction enzyme analysis and DNA-DNA blot hybridization techniques. BglII restriction enzyme fragment patterns of DNA of the Campylobacter-like organisms were fundamentally different from those of C. mucosalis, C. hyointestnalis, C. jejuni, and C. coli. Crude DNA preparations from Campylobacter-like organisms hybridized strongly with homologous preparations, weakly with porcine DNA and not at all with DNA from Campylobacter sp. Fragment specific DNA probes prepared from Campylobacter-like organisms only hybridized with homologous preparations. This work suggests that the intracellular Campylobacter-like organisms are not one of the known Campylobacter sp. It is possible that they are a novel, uncultured organism worthy of a new name, such as HC. intracellulare'.

Animals