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Biomedical subjects

C W Beard

Publications and source records attributed to C W Beard.

At least 19 recordsLinked to original sources

Genetic determinants of altered virulence of Taiwanese foot-and-mouth disease virus.

In 1997, a devastating outbreak of foot-and-mouth disease (FMD) in Taiwan was caused by a serotype O virus (referred to here as OTai) with atypical virulence. It produced high morbidity and mortality in swine but did not affect cattle. We have defined the genetic basis of the species specificity of OTai by evaluating the properties of genetically engineered chimeric viruses created from OTai and a bovine-virulent FMD virus. These studies have shown that an altered nonstructural protein, 3A, is a primary determinant of restricted growth on bovine cells in vitro and significantly contributes to bovine attenuation of OTai in vivo.

Amino Acid Sequence↗

Effective poultry programming in the next century. Poultry research: basic versus applied.

The debate over the relative merit of basic vs applied research has been going on for as long as there has been research. This debate could be resolved in many instances by better communication so that those who question the need for basic studies can see how basic findings can contribute directly and indirectly to the resolution of real problems. Applied research directed at problem-solving is usually dependent upon those facts that have been revealed by basic researchers. This is a debate that should be set aside. The poultry industry must have contributions from both the basic and applied researchers to remain competitive and produce those products society depends upon.

Agriculture↗

Out on the farm with DNA vaccines.

DNA vaccination is a rapidly developing technology that offers new approaches for the prevention of disease. This technology may permit the production of new vaccines against diseases that have no current vaccine, as well as allowing the development of improved vaccines to replace existing products. We describe how DNA vaccination is being developed for use in commercial animal production, with an emphasis on viral diseases, and discuss the existing hurdles to its development and use.

Animal Diseases↗

Interaction of mouse adenovirus type 1 early region 1A protein with cellular proteins pRb and p107.

We demonstrated functional associations between mouse adenovirus type 1 (MAV-1) early region 1A (E1A) protein and both the mouse retinoblastoma protein (pRb) and the mouse pRb-related protein, p107. Interactions between MAV-1 E1A and mouse pRb or mouse p107 proteins were examined in infected cell lysates using a mouse embryonic fibroblast cell line infected with wild-type and mutant MAV-1 viruses. Using a polyclonal antibody to MAV-1 E1A, exogenously added mouse pRb or mouse p107 was coimmunoprecipitated from wild-type, dIE105 (CR1 delta)-, and dIE106 (CR3 delta)-infected cell lysates. No coimmunoprecipitation was seen with cell lysates from dIE102 (CR2 delta) or pmE109, a mutant virus that produces no detectable E1A protein due to an ATG to TTG point mutation in the initiator methionine. Introduction of mouse pRb into SAOS-2 cells resulted in a flat and enlarged cell phenotype, whereas cotransfection of mouse pRb and MAV-1 E1A resulted in a significant reduction of flat cells, presumably due to E1A binding pRb. CR1 delta and CR2 delta E1A proteins were less effective at reducing the number of flat, enlarged cells induced by pRb expression than were the CR3 delta or wild-type E1A proteins. The reduced ability of these mutants to inactivate pRb relative to wild-type E1A correlated with their reduced ability to bind pRb in the in vitro coimmunoprecipitation experiments. As a measure of p107/MAV-1 E1A complex formation in MAV-1-infected cells, we used mobility shift assays to examine cell extracts for the presence of p107-containing E2F protein-DNA complexes. Mock-, dIE102-, and pmE109-infected cell extracts formed a p107-containing complex, whereas wild-type-infected cell extracts did not. Thus the formation of a p107-E2F complex in wild-type- or these mutant-infected extracts inversely correlated with the presence of E1A-p107 complexes identified in the vitro coimmunoprecipitation experiments. This is consistent with E1A-p107 complexes forming in wild-type MAV-1-infected cells.

Adenovirus E1A Proteins↗

Analysis of early region 3 mutants of mouse adenovirus type 1.

Early region 3 (E3) of mouse adenovirus type 1 has the potential to produce three proteins which have identical amino termini but unique carboxy-terminal sequences. Three recombinant deletion viruses were constructed so that each could produce only one of the three E3 proteins. A fourth mutant that should produce no E3 proteins was also constructed. These recombinants were able to grow in mouse 3T6 cells and produced wild-type levels of viral mRNAs and proteins except for those specifically deleted by the mutations. Early mRNA production from the mutant viruses was analyzed by reverse transcriptase PCR and confirmed that each deletion mutant would be able to produce only one of the three E3 proteins. Late mRNA production was analyzed by Northern (RNA) blotting and found to be similar in wild-type and mutant viruses. Capsid morphology was unaltered in the mutant viruses as seen by electron microscopy. Immunoprecipitation of E3 proteins from infections of mouse 3T6 cells using an antiserum specific for all three E3 proteins was used to examine the effect of the introduced mutations on protein expression. Two mutants produced only one class of E3 protein as predicted from their specific mutations and mRNA expression profiles. One mutant virus failed to produce any detectable E3 proteins. The predicted E3-null mutant was found to be leaky and could produce low levels of E3 proteins. Outbred Swiss mice were infected with the E3 mutant viruses to determine if the E3 proteins have an effect on the pathogenicity of the virus in mice. All of the mutants showed decreased pathogenicity as determined by increased 50% lethal doses, indicating that the proteins of the E3 region are important determinants of the pathogenesis of mouse adenovirus in its natural host.

Adenoviridae↗

Characterization of an 11K protein produced by early region 3 of mouse adenovirus type 1.

Early region 3 (E3) of mouse adenovirus type 1 produces three mRNAs that can encode three proteins with unique carboxy-terminal exons. A bacterial fusion protein encoding the unique terminus of one the three predicted proteins was used to generate antiserum in rabbits. This antiserum detected a 14K protein on a Western blot of infected cell lysates. Immunoprecipitation and endoglycosidase H digestion revealed that the 14K protein was a glycoprotein with a core molecular weight of 11K, and we are designating this protein E3 gp 11K. Through in vitro translation experiments we determined that the previously predicted signal sequence of gp11K was cleaved when the protein was expressed during an infection. Biochemical and immunofluorescence microscopy data indicated that E3 gp11K was localized to the endoplasmic reticulum of infected cells. Biochemical experiments further indicated that gp11K is a peripheral membrane protein.

Adenoviridae↗

Research to understand and control Salmonella enteritidis in chickens and eggs.

When it became evident that the association of human Salmonella enteritidis (SE) outbreaks with the consumption of contaminated Grade A eggs posed a threat to public health and to the economic viability of the egg industry, research programs were rapidly initiated to investigate the many unanswered questions about SE in eggs and chickens. Research efforts have focused on the dynamics of deposition, survival, and growth of SE in eggs, the pathogenesis of SE in chickens, strategies for detecting SE-infected flocks, opportunities for intervening to prevent infection, the sources of SE in laying flocks, options for effectively cleaning poultry houses, and the epidemiology of SE infections of humans and chickens. This research has provided a substantially better understanding of the SE problem in poultry, but many further questions about the basis for and the prevention of eggborne transmission of SE remain to be answered.

Animals↗

Evaluation of a chick mortality model for predicting the consequences of Salmonella enteritidis infections in laying hens.

The effects of four domestic Salmonella enteritidis (SE) isolates were compared in experimentally infected chicks and laying hens. The pathogenicity of each strain for 1-day-old chicks was determined by recording postinoculation mortality. The effects of the SE strains on adult hens were measured in terms of changes in total egg production, the frequency of production of SE-contaminated eggs, the dissemination of SE to internal organs, and the elicitation of a specific antibody response. Significant differences in the consequences of infection with different SE strains were observed in mortality rates among chicks and in total egg production, the frequency of production of contaminated eggs, and the serum antibody response among laying hens. The usefulness of a chick mortality model for predicting the probable frequency of production of contaminated eggs by laying hens infected with particular SE strains was then further evaluated by infecting chicks and laying hens with four other field isolates of SE. Although significant differences between SE strains were observed in both chick mortality and the frequency of production of contaminated eggs by hens, a strong correlation between these two parameters was not evident.

Animals↗

Early region 4 sequence and biological comparison of two isolates of mouse adenovirus type 1.

The DNA sequence of 88-100 map units of mouse adenovirus type 1 (MAV-1) was determined. One translational open reading frame showed 48% sequence similarity to a human adenovirus type 2 early region 4 protein. Based on the protein similarity, genome location, and transcriptional polarity, we concluded that this region of MAV-1 corresponds to early region 4. A 241-bp sequence consisting of 10 imperfect direct repeats with sequence similarity to minisatellite DNA was found in this region. Two virus isolates with different passage histories were examined and were found to have a sequence polymorphism within this region. The two viruses were compared for growth in cell culture and mice and small quantitative differences were observed only in vivo.

Adenoviridae↗

Detection of Salmonella serogroup D-specific antibodies in the yolks of eggs laid by hens infected with Salmonella enteritidis.

Eggs laid by hens experimentally infected with Salmonella enteritidis were assayed for the presence of Serogroup D-specific yolk antibodies. Yolk antibodies were detected with S. enteritidis and Salmonella pullorum antigens in the microantiglobulin test as early as 9 days after inoculation of hens with S. enteritidis. Yolk antibody titers reached peak levels at 3 to 5 wk postinoculation and remained at detectable levels for at least 7 wk postinoculation in eggs from both orally inoculated and horizontally contact-exposed hens. Eggs laid by hens from commercial flocks implicated in epidemiological investigations of human S. enteritidis outbreaks were also tested. Serogroup D-specific yolk antibodies were detected in 5 to 22% of eggs from hens in houses identified as infected by bacteriological culturing of internal organs of hens for S. enteritidis.

Agglutination Tests↗

Transcription mapping of mouse adenovirus type 1 early region 3.

Early region 3 (E3) of mouse adenovirus type 1 was analyzed using S1 nuclease protection and primer extension assays, cDNA sequencing, and genomic sequencing. We present the genomic sequence from 79 to 83 map units of the viral genome, the precise ends and splice sites of the E3 mRNAs, and the predicted protein sequence encoded by the mRNAs. Three major classes of early mRNAs were identified; all were approximately 1 kb long, consisted of three exons, and shared 5' and 3' ends. The three classes had alternative splicing at the junction between the second and third exon. The three proteins predicted by the three mRNAs were slightly similar to the E3 19K glycoprotein of human adenovirus type 3; the longest of the three was the most similar. Open reading frames corresponding to late proteins were also identified in the translated mouse adenovirus type 1 DNA sequence. In mouse adenovirus, as in the human adenoviruses, L4 overlaps E3, and L5 starts just downstream of the E3 region.

Adenovirus Early Proteins↗

Genome organization of mouse adenovirus type 1 early region 1: a novel transcription map.

Mouse adenovirus type 1 (MAV-1) genomic DNA from 8.9 to 13.7 map units was sequenced and the early region 1 (E1) transcription map was determined by S1 nuclease, primer extension, and Northern analyses, and cDNA sequencing. The E1 transcription map of MAV-1 had marked dissimilarities from the conserved transcription maps of primate adenovirus E1s. One major E1A and two E1B mRNAs were identified in overlapping transcription units. The single E1A mRNA was composed of three exons; the last exon was coincident with the last exon of the E1B mRNAs. While human adenovirus type 2 (Ad2) utilizes alternate splice donors for the first E1A mRNA exon, MAV-1 does not. Thus, no protein is predicted that would correspond to the Ad2 243 amino acid protein, although MAV-1 can encode a protein similar to the Ad2 289 amino acid protein (A. O. Ball, M. E. Williams, and K. R. Spindler, 1988, J. Virol. 62, 3947-3957). Two spliced E1B mRNAs differed from each other in an intron near the 5' end of the smaller E1B mRNA. This smaller mRNA could encode only the 55K E1B protein, while the larger mRNA could encode both the 21K and 55K E1B proteins.

Adenoviridae↗

Age-related changes in the persistence and pathogenicity of Salmonella typhimurium in chicks.

Effects of age at exposure on the persistence of Salmonella in various tissues of chicks were assessed in two experiments. Broiler chicks, housed on wire floors in isolation cabinets, were orally inoculated with S. typhimurium at various ages (1 to 8 days after hatching). The postinoculation mortality of chicks declined significantly (P less than .05) as the age at inoculation increased. One experiment investigated the effect of age at inoculation on the persistence of S. typhimurium in the cecum. Salmonella persisted for 7 wk after inoculation in 81.3% of the chicks inoculated at 1 day of age and in 62.5% of the chicks inoculated at 8 days of age. The mean number of cecal Salmonella at 7 wk postinoculation was also greater for chicks inoculated on Day 1 than for those inoculated on Day 8. The second experiment examined the effect of age at inoculation on the adherence of S. typhimurium to and penetration through the cecal epithelium. The ceca of chicks inoculated at 1 day of age were colonized by significantly more adhering Salmonella at 2 days postinoculation (1.4 x 10(8)/g) than were those of chicks inoculated at 3, 5, or 7 days of age (8.0 x 16(6)/g or less), but age did not affect the recovery of S. typhimurium from livers or spleens.

Age Factors↗

Chemotherapy and vaccination: a possible strategy for the control of highly virulent influenza virus.

The influenza A virus [A/Chicken/Pennsylvania/1370/83 (H5N2)] that caused up to 80% mortality among chickens provided a model system for testing the efficacy of chemotherapeutic agents against highly virulent influenza virus. Amantadine and rimantadine administered in drinking water were efficacious both prophylactically and therapeutically. However, under conditions simulating natural transmission of virus, amantadine- and rimantadine-resistant viruses arose and were transmitted to other birds in contact with the infected chickens, causing mortality. Simultaneous administration of inactivated H5N2 vaccine and amantadine provided protection. Thus, chemotherapy may be useful in the treatment of a highly pathogenic influenza virus outbreak in humans or other animals when used in combination with vaccine.

Adamantane↗

Collection and processing of blood samples dried on paper for microassay of Newcastle disease virus and avian influenza virus antibodies.

A practical method for collection and processing of dried whole blood samples on filter paper was developed to facilitate large-scale testing programs for Newcastle disease virus and avian influenza virus antibodies. A modified paper punch was used to cut and place dried blood samples simultaneously in a standard 96-well microlate for elution of antibody. Twelve eluted samples were simultaneously transferred to another microplate for the hemagglutination-inhibition (HI) microtest. Similar HI titers were obtained with simultaneously collected serum and dried blood samples. Minor differences were not considered of practical importance in diagnostic serologic studies. Dried blood titers were not markedly affected by method of drying (37 C for 2 hours or 26 C for 4 hours), by storage for 24 hours before drying, or by storage of dried samples at 4 C for 28 days or 30 C for 14 days. Blood dried on paper was a satisfactory sample for assay of HI antibodies to Newcastle disease virus and avian influenza virus.

Animals↗

Immunization of chickens and turkeys against avian influenza with monovalent and polyvalent oil emulsion vaccines.

Chickens and turkeys vaccinated with inactivated virus oil-emulsion vaccines containing different concentrations of either 1 (monovalent) or 4 (polyvalent) strains of avian influenza virus (AIV) were challenged-exposed with virulent AIV A/chicken/Scotland/59 or A/turkey/Ontario/7732/66. Four of 6 vaccines protected completely against postexposure mortality. Vaccine valency did not alter the serologic and challenge-exposure responses of chickens vaccinated with AIV A/turkey/Wisconsin/68, which was the virus component common to both monovalent and polyvalent vaccines. The magnitude of the serologic responses and protection against challenge-exposure were dependent on the concentration of virus in the vaccines. These data indicate that control of virulent AIV in chickens and turkeys by vaccination with inactivated vaccines may be feasible.

Animals↗

Electrocardiographic and respiratory responses to viscerotropic and neurotropic strains of Newcastle disease virus measured by radio telemetry.

Two groups each of White Rock chickens from 6 to 23 weeks old were monitored by radio telemetry to determine their electrocardiogram and respiration response after they were infected with either a velogenic viscerotropic isolate of Newcastle disease virus (VVND) or the neurotropic GB strain of Newcastle disease virus (NGB). Significant changes were found in the heart rate, R wave amplitude, ST segment elevation, T wave amplitude, RS complex interval, ST segment duration T wave interval, TP segment duration, PR segment duration and TP interval of the birds infected with VVND, but no significant ECG changes were found in the birds infected with NGB. There were no significant changes in respiration rate in any birds.

Animals↗