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Biomedical subjects

L A Babiuk

Publications and source records attributed to L A Babiuk.

At least 19 recordsLinked to original sources

An in vivo study of a glycoprotein gIII-negative bovine herpesvirus 1 (BHV-1) mutant expressing beta-galactosidase: evaluation of the role of gIII in virus infectivity and its use as a vector for mucosal immunization.

We constructed a recombinant BHV-1 in which the glycoprotein gIII gene was replaced by the Escherichia coli lacZ gene. The resultant virus mimics the simple gIII deletion mutant in its growth characteristics in cell culture; however, it expresses beta-galactosidase in virus-infected cells. Further characterization of its virulence and the immune responses elicited by it was conducted in cattle. The mutant virus retained the ability to establish an infection when administered intranasally. Infected animals were also capable of transmitting virus to sentinel penmates. However, the mutant virus showed a reduced replication efficiency in the respiratory tract of cattle, as manifested by significantly lower virus shedding and a shorter duration of shedding when compared to wild-type (wt) BHV-1 infections. The mutant virus induced an efficient anti-BHV-1 antibody response and convalescent cattle were fully protected from subsequent wt virus challenge. In addition, cattle infected with the lacZ-expressing virus developed antibodies to beta-galactosidase. Our results demonstrate that the presence of gIII is not a prerequisite for BHV-1 infection; however, gIII does play an important role in maintaining virus replication efficacy in its natural host. With respect to developing BHV-1 as a vaccine vector, our results indicate that deletion of the gIII gene, which partially attenuates the virus and serves as a vaccine virus marker, does not compromise immunogenicity to BHV-1. Most importantly, this vector is effective in delivering foreign antigens to mucosal surfaces of the respiratory tract.

Animals

Structural, functional, and immunological characterization of bovine herpesvirus-1 glycoprotein gl expressed by recombinant baculovirus.

The major glycoprotein complex gl of bovine herpesvirus-1 was expressed at high levels (36 micrograms per 1 x 10(6) cells) in insect cells using a recombinant baculovirus. The recombinant gl had an apparent molecular weight of 116 kDa and was partially cleaved to yield 63-kDa (glb) and 52-kDa (glc) subunits. This processing step was significantly less efficient in insect cells than the analogous step in mammalian cells, even though the cleavage sites of authentic and recombinant gl were shown to be identical. The oligosaccharide linkages were mostly endoglycosidase-H-sensitive, in contrast to those of authentic gl, which has mostly endoglycosidase-H-resistant linkages and an apparent molecular weight of 130/74/55 kDa. Despite the reduced cleavage and altered glycosylation, the recombinant glycoprotein was transported and expressed on the surface of infected insect cells. These surface molecules were biologically active as demonstrated by their ability to induce cell-cell fusion. Fusion was inhibited by three monoclonal antibodies specific for antigenic domains I and IV on gl. Domain I maps to the extracellular region of the carboxy terminal fragment glc and domain IV to the very amino terminus of the glb fragment, indicating that domains mapping in two distinct regions of gl function in cell fusion. Monoclonal antibodies specific for eight different epitopes recognized recombinant gl, indicating that the antigenic characteristics of the recombinant and authentic glycoproteins are similar. In addition, the recombinant gl was as immunogenic as the authentic gl, resulting in the induction of gl-specific antibodies in cattle.

Amino Acid Sequence

Characterization and activation requirements of bovine lymphocytes acquiring cytotoxic activity after interleukin-2 treatment.

Interleukin-2 (IL-2) treatment of cells and generation of non-major histocompatibility complex (MHC)-restricted cytotoxic cells from peripheral blood mononuclear leukocytes (PBML) was studied. Effector-target conjugate assays demonstrated that bovine PBML bound but did not lyse K562, HL60S and HL60R cells unless activated with IL-2. The magnitude of IL-2-activated killing of tumor cells as well as the magnitude of antibody-dependent cellular cytotoxicity depended on the IL-2 concentration. A short treatment (12-18 h) of effector cells with IL-2 was sufficient for development of cytotoxic activity. Withdrawal of IL-2 from the culture resulted in a reduction of cytotoxic activity that could be restored by further addition of IL-2. Cytotoxic activity of IL-2-activated populations obtained after nylon wool or Sephadex G-10 passage, and Percoll gradient centrifugation of PBML suggests that lymphokine-activated killer (LAK) cell activity in PBML is mainly mediated by a non-adherent lymphocyte lacking markers for B-cells. Positive and negative selection experiments using cell sorting confirmed these findings and demonstrated that the cell responsible for LAK cell activity in cattle belongs to a non-monocyte, non-B, CD2+ lymphocyte population. Furthermore, cytotoxic activity could not be generated in CD2+ populations enriched for cells expressing molecules equivalent to human and murine CD4 and CD8. These findings suggest that effector cells mediating non MHC-restricted cytotoxicity in cattle prevail in a population bearing a CD2+, CD4-, CD8- phenotype and that this population depends on the continuous presence of IL-2 for optimal cytotoxic function.

Animals

Multiple administration with interleukin-2 potentiates antigen-specific responses to subunit vaccination with bovine herpesvirus-1 glycoprotein IV.

Interleukin-2 has been described as an effective adjuvant for a number of antigens in different host species. Previously, we demonstrated the adjuvant activity of recombinant bovine IL-2 with a glycoprotein IV (gIV) subunit vaccine from bovine herpesvirus type-1 (BHV-1). In the present study, primary antibody responses were assessed in cattle immunized with either 2 or 50 micrograms of gIV, and treated with multiple doses of IL-2 or combinations of IL-2 and IFN-alpha or IL-2 and IFN-gamma. IL-2 was able to augment significantly antibody responses detected by either ELISA or virus neutralization. More significantly, IL-2 was able to enhance antibody titres in animals immunized with only 2 micrograms gIV to levels similar to those immunized with 50 micrograms gIV in the absence of IL-2. For optimal stimulation, multiple injections of IL-2 and Avridine had to be used in the formulation; other oil adjuvants or IL-2 alone could not induce a primary serum antibody response. Addition of IFN-alpha or IFN-gamma to the IL-2/gIV/Avridine formulation did not affect any of the immune parameters tested. As IFN-alpha is an effective immunoprophylactic agent for infectious bovine rhinotracheitis (IBR), combination vaccine-immunoprophylaxis may become feasible using IL-2 as a co-adjuvant. Thus, extremely low doses of antigen and only one immunization may be an effective vaccine given in combination with interferon prophylactic treatment.

Animals

Biochemical and immunological characterization of a novel peptide carrier system using rotavirus VP6 particles.

A system which allows for the efficient attachment of synthetic peptides to spherical virus-like particles assembled from the VP6 rotavirus nucleocapsid protein is described. This attachment was shown to be mediated by peptide-protein interactions and did not require additional chemicals for conjugation. The resulting large macromolecular structure was highly immunogenic for both the VP6 protein and the coupled peptides. The antibody response to peptides bound to VP6 particles was of higher titre and longer duration than that induced by other carriers. In addition, the response to VP6-coupled peptides was not affected by prior exposure to rotavirus and exhibited a range of immunoglobulin subclasses in the absence of an adjuvant. These data demonstrate that assembled VP6 spherical particles are useful carriers for low doses of synthetic peptides.

Adjuvants, Immunologic

Effect of Haemophilus somnus on phagocytosis and hydrogen peroxide production by bovine polymorphonuclear leukocytes.

The interactions between bovine polymorphonuclear leukocytes (PMNs) and the bacterium Haemophilus somnus are known to be complex. In this paper, we evaluated the effect of H. somnus on PMN function using a flow cytometric (FC) technique that simultaneously determined the extent of phagocytosis and hydrogen peroxide production by PMNs, as well as using conventional techniques, such as the nitroblue tetrazolium (NBT) and chemiluminescence assays, to analyse the PMN respiratory burst. Results from the FC and chemiluminescence assays demonstrated that in vitro exposure of PMNs to logarithmically growing H. somnus reduced the respiratory burst of PMNs obtained from healthy calves. However, this reduction was not detected by the NBT assay. A decrease in phagocytosis by PMNs could also be shown using the FC assay. In addition, PMNs from calves with acute Hemophilosis (i.e. exposed to H. somnus in vivo) showed reduced activity when compared to PMNs from healthy calves. These in vitro and in vivo observations indicate that the modulation of bovine PMN function by H. somnus may contribute significantly towards the pathogenesis of the disease.

Animals

The role of bovine intraepithelial leukocyte-mediated cytotoxicity in enteric antiviral defense.

The defense of a mucosal surface against viral infection is dependent in part on the leukocyte population resident at that site. In this study, leukocytes from the bovine intestinal epithelium were isolated and assessed for their ability to inhibit in vitro replication of an enteric pathogen, bovine coronavirus (BCV). As well, the intraepithelial leukocytes (IEL) were tested for their ability to mediate different types of cytotoxicity. The IEL were able to inhibit virus replication, and this activity was markedly enhanced by interleukin-2 and tumor necrosis factor. This combination of cytokines has similar effects on IEL-mediated cytotoxicity, which implicated cytotoxicity as a mechanism by which viral replication was limited. The IEL demonstrated enhanced cytotoxic function when compared with lymphocytes isolated from other sites in the gut-associated or systemic immune system. The IEL mediated higher levels of IL-2-activated, antibody-dependent, and lectin-dependent cytotoxicity than did lymphocytes from mesenteric lymph nodes, Peyer's patches, or the spleen. This function may be a reflection of the type of cell recruited to the epithelium, as indicated by the increased prevalence of T cells, and particularly CD8+ cells in the IEL population. Cytokine activation and the presence of a recognition signal, such as antibody, resulted in a synergistic increase in the level of IEL-mediated cytotoxicity. This type of interaction could serve to enhance the efficiency of IEL cytotoxic cells in vivo. Thus IEL-mediated cytotoxicity has the potential to serve as a mechanism of defense to enteric viral infection.

Animals

Synthesis and processing of the haemagglutinin-esterase glycoprotein of bovine coronavirus encoded in the E3 region of adenovirus.

The haemagglutinin-esterase gene (HE) of bovine coronavirus (BCV) encodes a major viral membrane glycoprotein that elicits BCV-neutralizing antibodies. The BCV HE gene was cloned into a human adenovirus serotype 5 (Ad5) transfer vector in place of early transcription region 3, and a helper-independent recombinant virus was constructed by rescue of the transcription unit by homologous in vivo recombination between the vector and Ad5 genomic DNA. The BCV HE polypeptide expressed by this recombinant Ad was characterized in vivo and in vitro. A 65K polypeptide was identified using an anti-BCV antibody in both human (293) and bovine (MDBK) cells infected with the recombinant Ad. In the absence of a reducing agent, migration of the 65K polypeptide was shifted to 130K, indicating that the recombinant HE polypeptide existed in a dimeric form. The HE polypeptide was glycosylated, as demonstrated by labelling with [3H]glucosamine, and was immunoreactive with three distinct groups of conformation-specific anti-HE monoclonal antibodies (MAbs). Cells infected with recombinant Ad expressing BCV HE exhibited both haemadsorption activity and acetylesterase activity. In addition, the anti-HE group A MAbs HC10-5 and KD9-40 inhibited both the haemadsorption activity and esterase activity of the recombinant HE polypeptide, suggesting that the antigenic domain responsible for BCV neutralization may overlap (or is closely associated with) the domain(s) responsible for haemagglutination and/or acetylesterase activities. When mice were inoculated intraperitoneally with live recombinant Ad, a significant level of BCV-neutralizing HE-specific antibody was induced. These results indicate that the recombinant Ad replicates and directs the synthesis of the BCV HE polypeptide in vivo.

Adenoviridae

Sequence analysis of bovine adenovirus type 3 early region 3 and fibre protein genes.

The DNA sequences of the early region 3 (E3) and fibre protein genes of bovine adenovirus type 3 (BAd3) have been determined and the amino acid sequences predicted to be encoded by their open reading frames (ORFs) compared to those of the fibre and E3 proteins from other Ads. One of the BAd3-E3 proteins contains a region homologous to the 14.7K E3 protein of human Ad5 (HAd5). The putative BAd3 fibre protein contains a number of regions homologous to the HAd2 fibre protein sequence, but is predicted to be 244 amino acids longer owing to an increase in the number of repeating structural motifs of hydrophobic amino acid residues in the shaft region. Sequences to the left of the BAd3-E3 gene region contained the 3' end of another ORF with extensive identity with the hexon-associated protein precursor (pVIII) of HAd2. Like mouse Ad1 and canine Ad1, the BAd3 E3 gene is approximately 1.5 kb, about half the size of the E3 region of HAd2 and HAd5.

Adenoviridae

Effects of recombinant granulocyte-macrophage colony-stimulating factor on bovine peripheral blood and mammary gland neutrophil function in vitro.

Modulation of peripheral blood and mammary gland neutrophil function following in vitro exposure to recombinant bovine granulocyte-macrophage colony-stimulating factor (rBoGM-CSF) was studied. Bovine blood and mammary gland neutrophils were cultured for 9 h in media containing 0.005, 0.05 or 0.5 microgram/mL rBoGM-CSF. Neutrophils treated with rBoGM-CSF exhibited significantly more chemotactic and bactericidal activities and tended to produce more superoxide anion than control cells. The effects of rBoGM-CSF on bovine neutrophil populations appeared to be dose-dependent. The production of superoxide anion and the bactericidal activity of mammary gland neutrophils were consistently higher than blood neutrophils. Only moderate increases in lipopolysaccharide-induced mammary gland neutrophil functions were observed following incubation with rBoGM-CSF which suggests that there may be a threshold of immunomodulation for these prestimulated cells. It may be possible to augment the functional capacity of bovine neutrophil populations in vivo through the therapeutic application of rBoGM-CSF and consequently enhance resistance of dairy cattle to bacterial infections.

Animals

Cell-mediated cytotoxic responses in lungs following a primary bovine herpes virus type 1 infection.

Non-major histocompatibility complex (MHC) restricted cytotoxicity is an important part of the immune reaction mounted in response to bovine herpes virus type 1 (BHV-1) infection. In this study, we evaluated the effect of BHV-1 infection on the ability of lung parenchyma leucocytes (LPL), cranial tracheobronchial lymph node cells (BLNC) and peripheral blood mononuclear leucocytes (PBML) to mediate this function. While LPL from non-infected calves mediated cytotoxicity against BHV-1-infected cells, a similar activity could not be detected in PBML or BLNC. In contrast, both LPL and PBML from naive calves could mediate cytotoxicity against K562 target cells but only after activation with interleukin-2 (IL-2). BLNC were unable to kill K562 cells. Infection of calves with BHV-1 enhanced the ability of LPL and PBML to kill BHV-1-infected cells. This enhancement was detected as early as Day 1 after infection in LPL whereas it could only be detected in PBML 8 days after infection. The results demonstrate that the leucocyte population present at the site of infection was able to mediate a potentially important antiviral function and that this function was enhanced rapidly in response to infection. Thus LPL-mediated cytotoxicity may be an important mechanism for the recovery from BHV-1 infection.

Animals

Mechanisms of heterotypic immunity against canine distemper.

Hep-2 cells infected with measles virus (MV) for as short as 6 h became refractory to superinfection with canine distemper virus (CDV) but not to vesicular stomatitis virus (VSV). The exact mechanism of such interference is unknown but probably occurs after virus attachment and penetration. These results verify the suggestion that virus interference may be a mechanism of heterotypic protection against canine distemper.

Animals

Sudden death in young dogs with myocarditis caused by parvovirus.

Sudden death of pups in the 4- to 6-week age range has recently been occurring in western Canada as a result of severe, primary, nonsuppurative myocarditis. At necropsy, the prominent macroscopic lesion was pulmonary edema, and microscopically, characteristic intranuclear inclusion bodies were found within cardiac myofibers in association with myocarditis. Ultrastructurally, numerous small particles resembling parvoviruses were found within the intranuclear inclusion bodies, which were positive by direct fluorescent antibody test for canine parvovirus. Of three pups inoculated with homogenate from affected myocardium, one developed lesions resembling canine parvoviral enteritis.

Animals

Induction, isolation and surface marker studies on bovine eosinophils.

A crude extract from Ascaris suum was infused into the teat canal of heifers to serve as an irritant or an antigens. The cells present in the mammary gland following such stimulation were assessed over a period of 2 weeks. Prior to stimulation there were few cells, predominantly macrophages, however, by 12 h post-stimulation a larger number of eosinophils and neutrophils were present. The eosinophils, which represented approximately 50% of the total population, could be purified by Ficoll-Hypaque flotation and nylon or glass wool column filtration to yield a population consisting of over 90% eosinophils. Surface marker studies on the purified eosinophils revealed that they contained both Fc and complement receptors.

Animals

Immunization of calves against enterotoxigenic colibacillosis by vaccinating dams with purified K99 antigen and whole cell bacterins.

Pregnant cattle were either vaccinated subcutaneously with (i) a suspension of purified Escherichia coli K99 pili, (ii) a Formalin-killed whole cell bacterin containing enterotoxigenic E. coli strain B44 (O9:K30;K99:H-), or (iii) a bacterin containing six different strains of bovine enterotoxigenic E. coli (multiple-strain bacterin), or were left as nonvaccinated controls. After birth, calves were allowed to nurse their dams and, at 12 to 14 h of age, were challenged orally with 10(11) cells of enterotoxigenic E. coli strain B44. Colostral antibody titers were determined against K99, K30, and O9 antigens of B44. In the nonvaccinated control group, 9 of 10 calves developed diarrhea and died within 24 to 72 h. Similarly, all six calves in the multiple-strain bacterin group developed diarrhea and four died. In contrast to calves in the two groups mentioned above, calves nursing cows vaccinated with either purified K99 or the homologous whole cell bacterin were protected against fatal diarrhea. There was a highly significant correlation (P less than 0.0005) between protection against fatal diarrhea and K99, but not K30 or O9 colostral antibody titers. Vaccination of cows with either purified pili or whole cell preparations containing sufficient K99 antigen may provide a means of preventing enterotoxigenic colibacillosis in calves.

Animals