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Biomedical subjects

G Lussier

Publications and source records attributed to G Lussier.

At least 19 recordsLinked to original sources

A casein kinase I activity is constitutively associated with Nck.

Nck is a 47-kDa cytosolic protein devoid of intrinsic catalytic activity and consisting of Src homology 2 and 3 (SH2 and SH3) domains organized as follows: SH3-SH3-SH3-SH2. Nck is believed to act as an adaptor protein mediating signal transduction initiated by receptor tyrosine kinases (RTKs). Through its SH2 domain, Nck recognizes a specific phosphotyrosine residue on RTKs or on protein substrates of RTKs like insulin receptor substrate-1, the major substrate of the insulin receptor, and through its SH3 domains it interacts with poorly characterized effector molecules. To identify novel proteins that might interact with Nck, we have used the amino-terminal segment of Nck encompassing its three SH3 domains in the yeast two-hybrid system. Among the polypeptides that associate with Nck, we have identified the gamma2 isoform of the serine/threonine casein kinase I (CKI-gamma2). In transformed rat hepatocytes overexpressing the insulin receptor (HTC-IR cells), serine/threonine protein kinase activity coimmunoprecipitates with Nck, an interaction mediated mainly by the third SH3 domain of Nck. This kinase activity is not apparently modulated by insulin, nor is it sensitive to staurosporine or heparin, and it does not use GTP as a phosphate donor. However the kinase activity coimmunoprecipitated with Nck is completely abolished by N-(2-aminoethyl)-5-chloroisoquinoline-8-sulfonamide, a specific inhibitor of casein kinase I. In an in vitro renaturation gel kinase assay, a protein kinase of 70-75 kDa was detected associated with the SH3 domains of Nck. Far Western analysis demonstrated that the SH3 domains of Nck bound directly to a cytosolic protein of 70-75 kDa. A rabbit polyclonal antibody raised against the C-terminal region of CKI-gamma2 protein kinase immunoprecipitated a single specific protein of 70-75 kDa from HTC-IR cell lysates and detected CKI-gamma2 among the proteins coimmunoprecipitated with Nck. These results support an in vivo interaction between Nck and CKI-gamma2 and suggest that CKI-gamma2 could be involved in signaling pathways downstream of RTKs.

Adaptor Proteins, Signal Transducing

Sex and mathematical background as predictors of anxiety and self-efficacy in mathematics.

Anxiety and self-efficacy in mathematics as a function of sex and mathematical background were investigated. This study employed an ex post facto 2 x 2 factorial design in which sex and mathematical background were classification variables. It was predicted that men would report lower anxiety scores and higher self-efficacy scores than women and that students with a high mathematical background would report lower anxiety scores and higher self-efficacy scores than those with a low background in mathematics. An interaction between sex and mathematical background was also predicted. 51 subjects were given the revised Mathematics Anxiety Scale and the Mathematics Self-efficacy Scale. Results supported the hypotheses with respect to background in mathematics for anxiety in mathematics, and all of the hypotheses were supported for self-efficacy in mathematics.

Adolescent

Molecular cloning, physical mapping and cross-hybridization of the murine adenovirus type 1 and type 2 genomes.

Murine adenovirus (MAd) type 1 strain FL and type 2 strain K87 genomes were cloned into plasmid pAT153 as HindIII restriction fragments. The MAd-1 and MAd-2 DNA genomes, 30.10 kb and 34.71 kb in length respectively, were mapped using BglII, ClaI, EcoRI, HindIII and SphI restriction endonuclease cleavage sites. In view of the large differences found between the MAd-1 and MAd-2 genomes in terms of the number and location of restriction sites, cross-hybridization experiments were performed. Homologous DNA sequences were located on the MAd-1 and MAd-2 physical maps. Both viruses are also genetically related to human adenovirus type 2 (HAd-2). Nucleotide sequences shared by HAd-2 and the MAds code for structural proteins, which may explain the antigenic similarities between these viruses from different origins. Our results confirm the existence of two distinct adenovirus species in the mouse.

Animals

Characterization of the DNA of rodent herpesviruses by restriction endonuclease analysis and hybridization.

Restriction endonuclease analysis, dot-blot hybridization, and dried gel hybridization were used to differentiate mouse cytomegalovirus, rat cytomegalovirus, and mouse herpesvirus strain 76. Viral DNA was obtained directly from virus-infected mouse or rat cells. Restriction endonuclease digestion was performed by standard methods with BamHI, EcoRI, HindIII, and PstI, and DNA was analyzed by electrophoresis on agarose gels. Cross-hybridization was used to determine the degree of genetic homology among the three viruses. Electrophoretic patterns revealed clear differences between mouse cytomegalovirus and rat cytomegalovirus restriction profiles. Extensive comigration of DNA was observed for rat cytomegalovirus and mouse herpesvirus strain 76. Both viruses also shared common DNA sequences. These results suggest that mouse herpesvirus strain 76 is probably a rat cytomegalovirus strain infecting mice.

Animals

Mouse thymic virus infection: ultrastructural and immunocytochemical studies of infected thymus cells.

Only limited attention has been paid to the cell population that is affected in the course of Mouse Thymic Virus (MTV) infection. In the present study, thymic cells of newborn mice infected with MTV were examined for general ultrastructural and immunocytochemical characteristics. The earliest sign of infection was detected 5 days after inoculation. Lymphocytes, epithelial reticular cells, macrophages, and lymphoepithelial cell complexes (thymic nurse cells) were affected. Viral particles and filamentous structures were present in both the nucleus and the cytoplasm of these cells. At more advanced stages of cellular necrosis, 6 to 7 days post-infection, cytoplasmic granulation and loss in definition of cytoplasmic organelles became apparent. This was followed by nuclear degradation and cellular aggregation. The selective effect of MTV on lymphocyte subpopulations was also observed. Two populations of infected lymphocytes were identified by single and double immunogold labelling employing monoclonal antibodies and different sizes of gold particles. CD4+8+ and CD4+8- lymphocytes were found to be selectively lysed by MTV.

Animals

Electron microscopy of mouse thymic virus.

Thymuses of mice infected with mouse thymic virus (MTV), a herpesvirus, were examined with the electron microscope. Damage was manifested by distortions of cells, nuclei, and other organelles, with cellular aggregation apparent at advanced stages of necrosis. Infected cells also contained MTV particles and filaments. Negative staining showed that naked MTV capsids were icosahedral in shape with diameters ranging from 95 to 110 nm. Enveloped capsids appeared spherical and ranged in diameter from 125 to 165 nm. Immunogold labeling revealed the presence of antigenic sites around both naked and enveloped capsids, and also on the 10 nm filaments. The use of electron microscopy and immunohistochemical techniques as diagnostic tools to demonstrate MTV infection could prove valuable for the detection of the infection and the study of its pathogenesis.

Animals

Low tumorigenicity of canine cells transformed by the human cytomegalovirus.

Dog embryo kidney cells transformed by the human cytomegalovirus (HCMV) were obtained after non-permissive infection or transfection with viral DNA digested by restriction endonuclease EcoR I. The transformed cells, growing rapidly and showing an unlimited division potential, could use medium with only 2% serum for growth, contained nuclear virus antigens, and formed small colonies (less than 0.2 mm) in agarose. From 40 mice inoculated with transformed canine cells, only one eventually developed a tumor. Results indicate that dog cells are immortalized but not tumorigenically transformed by the human cytomegalovirus.

Animals

Experimental infection of young rabbits with a rabbit enteric coronavirus.

The clinical signs and lesions caused by the rabbit enteric coronavirus (RECV) were studied in young rabbits orally inoculated with a suspension containing RECV particles. The inoculated animals were observed daily for evidence of diarrhea. Fecal samples and specimens from the small intestine and from the gut associated lymphoid tissue (GALT) were collected from 2 h to 29 days postinoculation (PI) and processed for immune electron microscopy (IEM) and light microscopy. Coronavirus particles were detected in the cecal contents of most inoculated animals from 6 h to 29 days PI. Lesions were first observed 6 h PI and were characterized by a loss of the brush border of mature enterocytes located at the tips of intestinal villi and by necrosis of these cells. At 48 h PI, short intestinal villi and hypertrophic crypts were noted. In the GALT, complete necrosis of the M cells as well as necrosis of the enterocytes lining the villi above the lymphoid follicules with hypertrophy of the corresponding crypts were observed in all the animals. Five inoculated rabbits had diarrhea three days PI. The presence of RECV particles in the feces of the sick animals and the microscopic lesions observed in the small intestine suggested that the virus was responsible for the clinical signs. A few inoculated rabbits remained free of diarrhea. Fecal material collected at postmortem examination contained RECV particles. The results suggest that the virus could also produce a subclinical infection.

Animals

Comparison of caprine, human and bovine strains of respiratory syncytial virus.

A new continuous ovine kidney cell line allowing the growth of caprine, human and bovine respiratory syncytial virus was used to minimize host cell related variations for the direct comparison of the viral ultrastructures, serological relationships and structural protein profiles. Results show that all three strains are closely related although a closer relationship was found between bovine and caprine RS.

Animals

Experimental polyvalent ISCOMs subunit vaccine induces antibodies that neutralize human and bovine respiratory syncytial virus.

The purpose of the present study was to evaluate experimentally, in guinea-pigs, the immunogenicity of respiratory syncytial (RS) virus subunit vaccines. Immunostimulating complexes (ISCOMs), made from the surface proteins of both human (Long) and bovine (A-51908) RS strains adsorbed to the adjuvant Quil A, were assayed for their capacity to induce neutralizing antibodies, in comparison to experimental live virus vaccines. Serums from animals vaccinated with either the human or bovine RS subunit vaccines were equally efficient in neutralizing human or bovine RS virus. ISCOMs prepared with bovine RS virus proteins were significantly (p less than 0.05%) more efficient than their human counterpart, in inducing neutralizing antibodies, suggesting their greater potential as a subunit vaccine.

Adjuvants, Immunologic

Mouse thymic virus-mediated immunosuppression: association with decreased helper T cells and increased suppressor T cells.

Mouse thymic virus (MTV) is a herpesvirus which, when administered to newborn mice, induces an extensive but temporary thymic necrosis associated with immunosuppression. In the present study, the T cell subsets in the thymus of MTV infected newborn C57Bl/6 mice were evaluated at 4, 7, 14, 28, 56, and 84 days after infection, using labeled monoclonal anti-CD4 and anti-CD8 antibodies with two-color flow cytometry. At 7 and 14 days, the percentages of CD4+8- and CD4+8+ cells were significantly decreased whereas the percentage of CD4-8+ cell was increased. At days 28 and 56 percentages had returned to normal. These results indicate that the virus has an affinity for CD4+ T cells (helper cells and their precursors). Increased percentage of CD4-8+ T cells (suppressor cells) is also associated with depressed immune functions in MTV infected newborn mice.

Animals

Genotypic differences between the mouse adenovirus strains FL and K87.

Restriction endonuclease analysis was used to compare the genome of mouse adenovirus (MAd) strains FL and K87. Large differences were found between the Kpn I, PaeR7, Pvu I, Sal I and Sma I restriction profiles of the prototype strains. MAd-FL and MAd-K87 thus represent two distinct species of mouse adenovirus.

Adenoviridae

Potential detrimental effects of rodent viral infections on long-term experiments.

Healthy animals are of paramount importance in obtaining meaningful, reliable scientific results. Viral infections of rodents often have a significant impact on various types of biomedical research. Laboratory animal specialists and researchers must be aware of the possible consequences associated with the use of infected animals. The objective of the paper is a discussion of the frequently encountered viral infections that can complicate or invalidate the interpretation of results by altering the host's response.

Animals

Control of infectious bovine rhinotracheitis in calves with a BHV-1 subunit-ISCOM vaccine.

An ISCOM subunit vaccine was prepared by adsorption of purified viral membrane proteins of BHV-1 on the glycoside Quil A and assayed in six-month-old seronegative calves. Groups of five animals were given three intramuscular doses of 50 or 25 micrograms BHV-1/ISCOMs or a commercial attenuated vaccine. Both types of vaccine induced seroconversion: the ISCOM vaccine consistently gave a serological response superior to that of the attenuated vaccine with maximal titres of 1/608 in haemagglutination inhibition and 1/53 in neutralization for the 50 micrograms dose compared to 1/152 haemagglutination units and 1/16 neutralizing titres for the attenuated vaccine. Calves vaccinated with the ISCOM vaccine were protected upon challenge whereas control animals showed signs of respiratory distress, and calves vaccinated with the attenuated vaccine developed only mild respiratory tract infection and mild increased rectal temperature. Virus shedding was reduced 100-fold in the attenuated vaccine group compared to 10,000-fold reduction in the ISCOM vaccine groups. The high level of protection induced indicates the potential of BHV-1/ISCOM as a subunit vaccine.

Animals

Further biological, serological and biochemical characterization of North American, European and Southeast Asian strains of bovine herpesvirus 1 compared with other alphaherpesvirinae members.

Hemagglutination activity, structural protein profiles and neutralization assays were used in a comparative study of bovine herpesvirus 1 strains from the U.S.A., Canada, Great Britain, Denmark and Malaysia with equine, feline and human herpesviruses in order to further characterize the bovine herpesvirus 1 hemagglutinin. Bovine herpesvirus 1 strains of different geographical origins all showed hemagglutinating activity for mouse erythrocytes; furthermore, feline herpesvirus 1 was also shown to hemagglutinate mouse erythrocytes. Analyses of partly purified viruses showed that a distinctive and specific polypeptides profile is associated with each species of herpesviruses used in our study; strains of bovine herpesvirus 1 from North America, Europe and Southeast Asia however, presented a remarkable similarity as to their electrophoretic protein patterns. A protein similar to the 97-kDa bovine viral hemagglutinin was not identified with the hemagglutinating feline herpesvirus. An important neutralization epitope on the bovine viral hemagglutinin was also not found on feline, equine and human herpesviruses but was identified on all bovine strains tested from North America, Europe and Southeast Asia stressing the importance of the bovine hemagglutinin for eventual prophylactic purposes.

Animals

Electron microscopic evidence for bridges between bovine respiratory syncytial virus particles.

Electron microscopic examination of ultrathin sections of a continuous cell line of ovine kidney (OK) origin, infected by bovine respiratory syncytial virus (BRSV), revealed the presence of well defined bridges between virus particles. This is the first report of this novel structure. Observation of ultrathin sections of human RSV Long strain also grown on OK cells did not show inter-particle bridges and therefore suggested that this structure could be specific to BRSV. The biological significance of these bridges is not clear at this time; a possibility is that the bridges are formed by the fusion protein of BRSV which is known to cause cell fusion. Besides the structural implications, the importance is in relation to purification strategies for this virus, which must now take into account that most of the viral particles occur in large aggregates.

Animals

Genome typing of mouse adenoviruses.

Restriction endonuclease cleavage site analysis was used to differentiate between mouse adenovirus (MAV) types 1 and 2 strains. Viral DNA of suitable purity and quantity for multiple enzymatic digestions was obtained from cloned CMT-93 mouse tumor cells infected with each type of MAV. Clear differences between the MAV-1 (FL) and MAV-2 (K87) genomes were observed after cleavage with restriction enzymes such as BglII, EcoRI, and PaeR7. Fast electrophoresis of DNA fragments in miniature agarose slab gels allowed rapid and unequivocal identification of the MAV strains. This relatively simple and accurate method should be quite useful to determine the different modes of transmission of mouse adenoviruses and their presence in various animal populations.

Adenoviridae