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Biomedical subjects

M J Studdert

Publications and source records attributed to M J Studdert.

At least 73 records · Page 4Linked to original sources

Comparative genome mapping of bovine encephalitis herpesvirus, bovine herpesvirus 1, and buffalo herpesvirus.

A clone library of 11 of 15 BamHI fragments representing 81% of the 140 kilobase DNA genome of the prototype bovine encephalitis herpesvirus strain N569 (BEHV.N569) was constructed. The clones were used to verify the BamHI, BstEII, EcoRI, and HindIII genomic maps for BEHV.N569 published by Engels et al. [Virus Res 6: 57-73 (1986)] for the same virus although some amendments/variations to the BamHI map were found in that 3 previously unidentified restriction sites were identified. Restriction site maps for BglII and KpnI were also derived for BEHV.N569. Southern blot analysis using 32P-labelled BEHV DNA as probe indicated that bovine herpesvirus 1 (BHV1), buffalo herpesvirus 1 (BuHV1) and caprine herpesvirus 1 (CaHV1) were similar and that the similarity occurred throughout the entire length of the genomes; CaHV1 was more distantly related to the other 3 viruses. Because of the similarities BEHV.N569 and BHV1. Cooper cloned DNA fragments were used to construct BamHI, BglII, BstEII, EcoRI, KpnI, and HindIII restriction site maps for the genome of BuHV1 and BamHI, BglII, and KpnI maps for the genome of BHV1.V155, a genital strain.

Animals↗

Nucleotide sequence of feline panleukopenia virus: comparison with canine parvovirus identifies host-specific differences.

The nucleotide sequence of feline panleukopenia virus (FPV) strain 193 was determined and compared with the sequence of canine parvovirus (CPV) strain N and partial sequences of FPV strain Carl and CPV strain b. Base differences were identified at 115 positions in these 5.1 kb genomes and predicted amino acid differences occurred at 40 positions. The two overlapping capsid protein genes contained almost twice as many base differences as the single non-structural protein gene (49 compared to 26) and about the same ratio was calculated for predicted amino acid differences (27 compared to 13). The 27 variant amino acids in the capsid proteins were clustered at three sites in the primary sequence, whereas 10 of the 13 variant amino acids in the non-structural protein occurred in the 130 C-terminal amino acids. The two FPV strains differed consistently from the two CPV strains at 31 bases: 12 base changes in the capsid protein genes resulted in six amino acid changes, six base changes in the non-structural protein gene resulted in three amino acid changes, and 13 base changes occurred in the non-coding sequence.

Amino Acid Sequence↗

Comparative studies of the proteins of equine herpesviruses 4 and 1 and asinine herpesvirus 3: antibody response of the natural hosts.

Proteins of purified virions of equine herpesvirus 4 (EHV-4; equine rhinopneumonitis), EHV-1 (equine abortion virus) and asinine herpesvirus 3 (AHV-3) were compared by metabolic labelling with [35S]methionine or [14C]glucosamine during growth of low passage virus in natural host cells (horse or donkey) and high passage virus in an appropriate cell line and analysis by SDS-PAGE. Approximately 25 different proteins (Mr 300K to 21.5K) were clearly resolved for each virus. The three viruses had similar profiles although significant differences were found. The proteins of the cell line-grown viruses were similar to their precursor viruses grown in natural host cells although some small differences, probably related to differences in glycosylation by the various cell types, were noted. Six or seven high abundance glycoproteins were identified for EHV-4, EHV-1 and AHV-3. The profile of seven glycoproteins of AHV-3 was more similar to EHV-1 than to EHV-4. Antigenic relationships of the proteins of the three viruses were examined using radioimmunoprecipitation (RIP) and Western blot analyses and a series of polyclonal sera raised in colostrum-deprived, specific pathogen-free (SPF) foals which were immunized with inactivated EHV-4 (foal 3) or EHV-1 (foal 1), challenged and cross-challenged; a polyclonal donkey serum to AHV-3 was also used. The ontogeny of the antibody response in the SPF foals was studied and the major immunogenic proteins, as determined by RIP, were correlated with previously determined serum neutralizing antibody titres. Antibodies were first detected 14 days after primary immunization and were directed to EHV-4 proteins of Mr 113K, 75K and 56K or EHV-1 proteins of 110K, 78K, 60K and 58K. Antibodies to these same three (EHV-4) or four (EHV-1) proteins, together with antibodies to the major capsid protein and proteins of 67K (EHV-4) and 87K (EHV-1) were detected in response to primary infection (control foal 2) and these sera had high neutralizating antibody titres. The antigens of the three viruses were extensively cross-reactive with immunodominant proteins in the Mr ranges 150K to 110K and 62K to 56K. However, cross-absorption of EHV-4 and EHV-1 SPF foal antisera indicated the presence of significant amounts of type-specific antibody.

Animals↗

Feline immunodeficiency virus: prevalence, disease associations and isolation.

Of 467 cat serums tested for antibody to feline immunodeficiency virus (FIV) 120 (26%) were positive. The average age of positive cats was 7.5 years (range 1 to 16 years), and 67% were male. Of 110 serums collected in 1980, 27 (24.5%) were positive. A wide variety of clinical signs including oral cavity disease, anorexia, weight loss, lethargy, depression, fever, respiratory and urinary tract disease, conjunctivitis, abscesses, anaemia and lymphadenopathy were observed in the cats with serum antibody. There was often a history of chronic disease or recurrence of particular or various clinical signs in these cats. FIV was isolated from 4 of 8 FIV antibody positive cats by cocultivation of patient lymphocytes with donor lymphocytes in the presence of interleukin 2.

Animals↗

Physical mapping of a genome of equine herpesvirus 2 (equine cytomegalovirus).

The genome of a low equine cell passage equine herpesvirus 2 was partially cloned and physical maps for the restriction endonucleases BamHI, EcoRI, HindIII, and SalI determined. The genome length was estimated to be 192 kilobase pairs (kbp) and no evidence of isomerization was found. Two separate repeat structures were detected: 18 kbp direct terminal repeats; and an unrelated second pair of short internal, indirect repeats at 0.20 and 0.75 map units. Such a genomic structure does not appear to have been reported amongst the herpesviruses--all the genomes that do not isomerize either have repeat structures only at the termini, or if present internally, have only direct repeats.

Blotting, Southern↗

Physical mapping of the genomic heterogeneity of isolates of equine herpesvirus 2 (equine cytomegalovirus).

The BamHI, EcoRI, and HindIII physical maps of the genomes of 14 isolates of equine herpesvirus 2 (EHV 2) were determined by Southern blot analysis using DNA fragments of a previously mapped EHV 2 strain 86/67. No two isolates had identical maps for all 3 enzymes, the number of differing cleavage sites between pairs of isolates varying from 3 to 21. Overall 75 cleavage sites were mapped, of which 40 were variable. Cleavage sites occurred throughout the genome, including within the terminal repeat regions. Additionally, fragment length polymorphisms, independent of cleavage site loss or gain, were mapped to 5 regions of the genome, 4 of which occurred within the terminal repeat regions.

Genes, Viral↗

Diagnosis of feline leukemia virus and feline immunodeficiency virus infections.

Feline leukemia virus is an oncogenic retrovirus that can result in a wide variety of neoplastic and non-neoplastic diseases, including immunosuppression. Diagnosis of FeLV infection can be achieved by several methods, including virus isolation; IFA assay of a peripheral blood smear; and detection of a viral protein (called p27) by ELISA testing of whole blood, plasma, serum, saliva, or tears. Commercially available ELISA kits have revolutionized FeLV testing and have become very popular as "in-house" procedures. This article discusses the interpretation of ELISA results and compares them with IFA assay findings. Feline immunodeficiency virus is a lentivirus that causes immunosuppression, but not neoplasia, in cats. It originally was called feline T-lymphotropic lentivirus. Differentiating FIV infection from the immunosuppressive type of FeLV infection requires virus isolation or serology. The most rapid method for diagnosis of FIV infection is ELISA testing for antiviral antibody.

Animals↗

Asinine herpesvirus genomes: comparison with those of the equine herpesviruses.

Two previously unknown and distinct herpesviruses were isolated from donkeys. One, with the characteristics of a betaherpesvirus, was isolated from the leukocytes of an apparently healthy donkey, while the second, an alphaherpesvirus, was recovered from the nasal cavity of donkeys given high doses of corticosteroids, and caused rhinitis in two seronegative weanling donkeys when they were intranasally infected. Few, if any, restriction endonuclease fragments were shared by the donkey betaherpesvirus, equine herpesvirus 2 (EHV 2) or EHV 5, a second distinctly different equine betaherpesvirus, nor by the donkey alphaherpesvirus, EHV 1, EHV 4, or EHV 3. In Southern blot analysis the donkey betaherpesvirus showed low levels of sequence similarity to both EHV 2 and EHV 5, while the donkey alphaherpesvirus and EHV 1 shared a moderate degree of sequence similarity, less similarity with EHV 4 and very low level of sequence similarity with EHV 3. These two isolates appear prototypic of two previously unrecorded herpesviruses for which the names asinine herpesvirus 2 and 3 are suggested for the betaherpesvirus and the alphaherpesvirus respectively.

Animals↗

Clinical and immunological responses of cats to feline herpesvirus type 1 infection.

Cats which were challenged with feline herpesvirus type 1 developed clinical signs typical of feline viral rhinotracheitis whether or not they had been vaccinated against the disease. However, the clinical disease was less severe and of shorter duration in the vaccinated cats. After challenge, feline herpesvirus type 1 was recovered from the nostrils, oropharynx and peripheral blood leucocytes. Leucocytosis, primarily a neutrophilia, occurred initially in all the cats and was followed after clinical recovery by a mild lymphocytosis. Intradermal skin testing with feline herpesvirus type 1 and cell control antigens produced a positive delayed type skin reaction. Histology of the affected skin 72 hours after injection showed cellular infiltration, predominantly with eosinophils and neutrophils. The severity of the reaction was greater and more prolonged in the skin of the ear than in the skin of the abdomen.

Animals↗

Genomic heterogeneity of equine betaherpesviruses.

The genomes of 51 isolates of slowly cytopathic equine herpesviruses were examined by digestion with restriction endonucleases. Forty-seven of the isolates showed considerable fragment pattern heterogeneity although common fragments were evident, especially when any two isolates were compared or when they were digested with SalI. Fifteen of the 47 viruses, selected for their diverse fragment patterns, showed a high degree of homology in Southern blot hybridization. In contrast, four viruses, representing three epidemiologically distinct isolations, shared few, if any, comigrating fragments with the 47 equine herpesvirus 2 (EHV-2) isolates, although they shared comigrating fragments with each other. These four viruses showed reduced homology to a representative EHV-2 isolate by Southern blot hybridization under stringent conditions. Although not sharply delineated from EHV-2, these four viruses grew very slowly and had low yields in vitro, and preliminary data suggested they had a significantly smaller genome than EHV-2 (148 +/- 12 kb compared to 190 kb). These four viruses may be prototypic of a novel equine betaherpesvirus.

Animals↗