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The hemagglutinin-neuraminidase protein of Newcastle disease virus determines tropism and virulence.

The hemagglutinin-neuraminidase (HN) protein of Newcastle disease virus (NDV) plays a crucial role in the process of infection. However, the exact contribution of the HN gene to NDV pathogenesis is not known. In this study, the role of the HN gene in NDV virulence was examined. By use of reverse genetics procedures, the HN genes of a virulent recombinant NDV strain, rBeaudette C (rBC), and an avirulent recombinant NDV strain, rLaSota, were exchanged. The hemadsorption and neuraminidase activities of the chimeric viruses showed significant differences from those of their parental strains, but heterotypic F and HN pairs were equally effective in fusion promotion. The tissue tropism of the viruses was shown to be dependent on the origin of the HN protein. The chimeric virus with the HN protein derived from the virulent virus exhibited a tissue predilection similar to that of the virulent virus, and vice versa. The chimeric viruses with reciprocal HN proteins either gained or lost virulence, as determined by a standard intracerebral pathogenicity index test of chickens and by the mean death time in chicken embryos (a measure devised to classify these viruses), indicating that virulence is a function of the amino acid differences in the HN protein. These results are consistent with the hypothesis that the virulence of NDV is multigenic and that the cleavability of F protein alone does not determine the virulence of a strain.

Animals↗

The matrix protein of Newcastle disease virus localizes to the nucleus via a bipartite nuclear localization signal.

The Newcastle disease virus matrix (M) protein expressed from a cDNA clone is observed in the nucleus of transfected cells, displaying a localization pattern identical to that observed in virus-infected cells. To identify the nuclear localization signal (NLS) in the M protein, M gene mutants encoding deletion and amino acid substitution proteins were constructed and expressed transiently in COS-1 cells. Protein products were examined for intracellular localization using indirect immunofluorescence. Two basic amino acid clusters in the M protein were found to be required for nuclear localization since deletion of these basic clusters or substitution with random amino acids resulted in cytoplasmic localization. Substitution of pairs of basic amino acids with non-basic residues revealed that components from both basic regions are required for nuclear localization. This interdependence between two basic clusters suggests that the NLS in the M protein belongs to the newly described class of "bipartite" NLSs. Unlike most NLSs, M protein sequences containing the critical basic amino acid clusters fused to two different cytoplasmic reporter proteins failed to transport these proteins to the nucleus.

Amino Acid Sequence↗

Induction of apoptosis by a Newcastle disease virus vaccine (MTH-68/H) in PC12 rat phaeochromocytoma cells.

The attenuated Newcastle Disease Virus (NDV) vaccine MTH-68/H has been found to cause regression of various tumors including certain types of human neoplasms (See Table 1 and References 86-88). The mechanism of its oncolytic action is poorly understood, but it appears to affect specific signaling pathways in the target cell. We studied the cellular effects of NDV employing PC12 rat phaeochromocytoma cells, a widely used model system to analyze differentiation, proliferation and apoptosis. The MTH-68/H vaccine was found to be cytotoxic on PC12 cells. It caused internucleosomal DNA fragmentation, the most characteristic feature of programmed cell death (PCD). A brief exposure (30 min) of P12 cells to the virus was sufficient to produce a full-blown apoptotic response. Major mitogen-activated protein kinase pathways (including the stress inducible c-Jun N-terminal kinase pathway and p38 pathway) or mechanisms regulated by reactive oxygen species appear to have no role in virus-induced cell death. The PCD-inducing effect of MTH-68/H could not be prevented by simultaneous treatment of the P12 cells with growth factors or second messenger analogs stimulating protein kinase C or Ca(++)-mediated pathways. In contrast, treatment with a cyclic AMP analog partially protected the them from virus-induced apoptosis. These experimental results suggests that MTH-68/H might disrupt a growth factor-stimulated survival pathway and that direct stimulation of protein kinase A-catalyzed phosphorylation events bypass this NDV-induced block.

Adolescent↗

Acidic pH enhancement of the fusion of Newcastle disease virus with cultured cells.

Fusion of the lentogenic strain "Clone 30" of Newcastle disease virus (NDV) with the cell line COS-7 has been studied. Fusion was monitored using the octadecylrhodamine B chloride dequenching assay [Hoekstra, D., de Boer, T., Klappe, K. and Wilschut, J. (1984). Biochemistry 23, 5675-5681]. In the present work, fusion of NDV with COS-7 cells was found to occur in a time- and temperature-dependent fashion. Significant dequenching of the probe occurred at temperatures higher than 28 degrees C. A 20-fold excess of unlabeled virus inhibited fusion by about 53% compared with the control, whereas 62% inhibition of fusion was obtained after digestion of viral glycoproteins with trypsin. The data are discussed in terms of the nonfusion transfer of the probe. In addition, preincubation of cells with 50 mM ammonium chloride or 0.1% sodium azide prevented NDV from fusing with COS-7 cells by about 30% in comparison with the control. The cytopathic effect of NDV infection in cell culture in the presence of ammonium chloride was reduced compared with control. Moreover, viral preincubation at pH 5 yielded a mild inhibition of fusogenic activity. Our results suggest that NDV may use the endocytic pathway as a complementary way of entering cells by direct fusion with the plasma membrane.

Ammonium Chloride↗

Introduction of adhesive and costimulatory immune functions into tumor cells by infection with Newcastle Disease Virus.

We demonstrate in this study that infection of tumor cells by Newcastle Disease Virus (NDV) leads to changes in tumor cell surface adhesiveness and tumor immune costimulatory function. While adsorbtion of virions to the cell surface occurs after short-term (10 min) incubation and leads to cells expressing viral antigens at low antigen density (LAD), viral replication in the cytoplasm occurs within 5-24 h leading to tumor cells expressing viral antigens at high antigen density (HAD) as shown by quantitative FACS flow cytometry. Virus infected tumor cells showed an increased adhesiveness for erythrocytes and lymphocytes. When IL-2 preactivated human lymphocytes with cytotoxic potential were coincubated with 51Cr-labeled NDV-infected or non-infected human colon carcinoma cells increased lysis of the virus infected targets was observed. The virus mediated cell adhesion could be inhibited by monoclonal antibody (mAb) against the hemagglutinin-neuraminidase (HN) molecule but not by antibody against the fusion protein. HN cDNA transfectants also mediated increased lymphocyte adhesion in comparison to wild-type or neo-vector transfected control cells. Further experiments demonstrated that not only the adhesion domain of HN but also the neuraminidase plays a role in cell-cell interactions. A comparison of an NDV neuraminidase mutant of the strain Australian Victoria (AV-L1) with the parental AV strain revealed pronounced differences in their capacity to mediate lymphocyte binding and costimulatory activity. The mutant with highly decreased neuraminidase activity was very similar to NDV Ulster in adhesive and costimulatory activity while the parental line with high neuraminidase activity was negative for both functions. Costimulatory effects of NDV Ulster and AV-L1 were revealed when virions and suboptimal concentrations of anti-CD3 mAbs were coated to microtiter plates for induction of murine CD4 T cell proliferation. In human autologous mixed lymphocyte-tumor cell cultures up-regulation of T cell activation markers CD69 and CD25 was seen with NDV modified but not with non-modified tumor cells.

Animals↗

Vaccination of chicken embryos with escape mutants of La Sota Newcastle disease virus induces a protective immune response.

To reduce the embryonic pathogenicity of Newcastle disease virus (NDV), escape mutants of the La Sota strain were produced with selected monoclonal antibodies. Immunoselection resulted in the elimination of an epitope by single amino acid substitution (F and HN molecule) or in a conformational change (HN molecule). The embryonic pathogenicity of these escape mutants was reduced and their dose was optimised for in ovo vaccination. Because antibody responses and protection of in ovo vaccinated chicks were similar to controls vaccinated at hatch with the La Sota strain, immunoselection appears a valuable technique to produce attenuated NDV strains, which are candidate in ovo vaccines.

Animals↗

Effect of incubation temperature or maternal antibody on virus growth and mortality of embryonated chicken eggs inoculated with the B1 strain of lentogenic Newcastle disease virus.

The effects of incubation temperature on virus growth and mortality patterns were studied in antibody-free chicken eggs inoculated with the B1 strain of Newcastle disease virus. Embryo mortality patterns did not differ much between 37, 39, and 41 C of incubation, although virus growth curves were higher at 39 C and 41 C than at 37 C. Below 35 C, embryo mortality was delayed, although from 48 hours after incubation the virus growth curves were similar to those at 37 C. In eggs with and without maternal antibody, virus titers were maximum 48 hours after incubation, although slightly higher in antibody-free eggs than in eggs with antibody whether the eggs were alive or dead. Eggs with maternal antibody had delayed mortality patterns.

Animals↗

Evaluation of a novel rapid kit for the visual detection of Newcastle disease virus antibodies.

A sensitive diagnostic kit for the rapid visual detection of Newcastle disease virus antibodies is described. The kit--ImmunoComb--is based on a modification of the enzymelinked immunosorbent assay and was found to be highly sensitive for detecting local immunity as well as marginal levels of humoral immunity. Therefore, it determines status of immunity and vaccine efficiency. The assay is simple and does not require special equipment or laboratory facilities. This endows the new kit with field applicability. The effectiveness and reliability of the kit were proven by a series of field experiments. Tracheal swabs and blood samples were taken from 20 flocks (chickens and turkeys) and tested by the hemagglutination-inhibition test and by the new kit. There was high correlation between the methods where the level of antibodies in the flocks ranged between negative and very high.

Animals↗

Cloning and expression of the phosphoprotein gene of Newcastle disease virus in Escherichia coli.

The phosphoprotein (P) gene of a heat stable Newcastle disease virus (NDV) was cloned, sequenced and expressed in Escherichia coli. SDS-PAGE analysis of the recombinant P protein (395 amino acids) and a C-terminal extension derivative (424 amino acids), gave rise to two distinct protein bands with molecular masses of approximately 53-55 and 56-58 kDa, respectively, which are approximately 26-30% heavier than those calculated from the deduced amino acid sequences. The differences in molecular mass on SDS-PAGE are thought to be attributed to the acidic nature of the P protein (pI=6.27) and also the different degrees of phosphorylation in the prokaryotic cell. Amino acid sequence comparison of the P protein among the published NDV strains showed that they were highly conserved particularly at the putative phosphorylation sites.

Amino Acid Sequence↗

Characterization of Newcastle disease viruses isolated from migratory waterfowl in the Atlantic flyway.

Four isolants of Newcastle disease virus (NDV) obtained from free-flying Canada geese in the Atlantic flyway were characterized and compared with the B1, LaSota, Roakin, and Texas-GB strains of NDV. The 4 isolants were identified as lentogenic strains on the basis of embryo mean death times of greater than 100 hours and relative lack of pathogenicity for 1-day-old and 3-week-old chickens. The hemagglutinin of 2 of the isolants was stable at 56 C for 15 minutes, 1 for 30 minutes, and the other for at least 2 hours. When held at 4 C for 24 hours, none of the 4 isolants could be eluted from chicken erythrocytes. All 4 of the isolants produced plaques in chicken embryo fibroblast cell cultures without additives, whereas the B1 and LaSota strains did not. The 4 lentogenic NDV isolants from Canada geese differed in many respects from currently used commerical vaccine strains (B1 and LaSota).

Animals↗

Strain variation and nuclear association of Newcastle disease virus matrix protein.

Five monoclonal antibodies to the matrix (M) protein of Newcastle disease virus (NDV) Australia-Victoria (AV) strain were generated and characterized. In competitive antibody-binding assays, the antibodies fell into three discrete groups. The antigenic sites described by these antibody groups were designated M1, M2, and M3. Each antibody reacted with a panel of NDV strains in a manner unique to its group, confirming the grouping by competitive antibody binding. Only site M1 was found on all 12 of the strains tested and may be a "pan-NDV" epitope. A large portion of the M protein of strain AV was detected in the nuclei of infected cells by all five monoclonal antibodies. In addition, the antibodies only stained the nuclei of cells infected with NDV strains expressing M protein containing the corresponding antigenic site. These results confirm that the immunoreactivity in the nucleus is actually caused by the M protein and not by a cross-reacting host protein induced by viral infection.

Animals↗

Cytopathic effect of lentogenic strains of Newcastle disease virus in cultured chicken muscle cells.

The ability of lentogenic strains of Newcastle disease virus (NDV) to inhibit the development of embryonic chicken muscle cells in vitro is described. In contrast to the uninfected control, which displayed a thick network of branched multinucleated muscle fibers, cultures infected with NDV exhibited a severely reduced potential to differentiate. The few differentiated muscle fibers that formed in the presence of NDV were poorly developed, displayed an attenuated morphology, and detached from the substrate 2 to 3 days before uninfected cultures showed signs of cell aging. When NDV-infected cultures were stained before muscle fiber detachment with a fluorescent-labeled NDV-specific antibody, the infected muscle fibers reacted strongly relative to neighboring myoblasts and fibroblasts. All six strains of NDV induced a similar inhibitory effect, and no strain-specific differences were detectable. These results indicate that differentiating muscle fibers are highly susceptible to infection by NDV in vitro and that this tissue exhibits an early NDV-induced cytopathic effect.

Animals↗

Separation and sugar component analysis of the oligosaccharides in the surface glycoproteins of Newcastle disease virus.

The precursor glycoproteins HN0 and F0 in the surface spikes of Newcastle Disease Virus strain Ulster as produced by MDBK cells, were found to contain 10.4 and 11.9 weight per cent, respectively, of the sugars typical for N-glycosidically linked glycoprotein glycans. A molar ratio of D-mannose:D-galactose: L-fucose:N-acetyl-D-glucosamine approaching 1.0:1.1:0.5:1.0 was found for HN0, and of 1.0:0.7:0.3:0.6 for F0. By a sequence of degradation (with pronase, with endo-beta-N-acetylglucosaminidase H [endo H], and by hydrazinolysis) and separation procedures (Concanavalin A-affinity and Biogel P-4 chromatography), the radiolabelled carbohydrate moieties of NDV HN0 and F0 (as oligosaccharitols) were separated into (at least) ten and eight fractions, respectively. Separate in vivo labelling with tritiated derivatives of the four sugars showed that both glycoproteins contain oligosaccharides of the oligomannosidic ("high mannose"), of the N-acetyllactosaminic ("complex"), as well as of the "mixed" type. The majority of the oligosaccharides in F0, but not of those in HN0, was found to be endo H-sensitive.

Carbohydrates↗

Mutations in the cytoplasmic domain of the fusion glycoprotein of Newcastle disease virus depress syncytia formation.

The role of the cytoplasmic domain of the Newcastle disease virus fusion protein in syncytia formation was explored by characterizing the intracellular processing and activities of proteins with deletions and point mutations in this region. Deletion of the entire domain (amino acids 523 to 553) resulted in a protein which was minimally proteolytically cleaved and had no syncytia forming activity. Deletion of the carboxy terminal half of the domain (amino acids 540 to 553) resulted in a protein that was normally processed but had no syncytia forming activity. Deletion of amino acids 547 to 553 resulted in a protein with approximately 30% wild-type levels of activity while deletion of amino acids 550 to 553 yielded a protein with wild-type activity. The results suggested that amino acids 540 to 550 are important for syncytia formation and this conclusion was supported by two internal deletions as well as point mutations in this region. Mutation of two cysteine residues in and adjacent to the transmembrane domain, which are potential sites for fatty acid acylation, had no effect on syncytia formation either singly or in combination.

Amino Acid Sequence↗

Nonspecific innate immunity against Escherichia coli infection in chickens induced by vaccine strains of Newcastle disease virus.

The objective was to test the hypothesis that vaccine strains of Newcastle disease virus (NDV) induce nonspecific immunity against subsequent infection with Escherichia coli. White leghorn chickens at 5 wk of age were vaccinated with a NDV vaccine at various days before challenge exposure with O1:K1 strain of E. coli via an intra-air sac route. Immunity was determined on the basis of the viable number of E. coli in the spleen 24 hr after the infection. Roakin strain induced significant (P < 0.05) immunity against E. coli at 4, 6, and 8 days, and La Sota strain at 2, 4, and 8 days, postvaccination. Secondary NDV vaccination administered 14 days later failed to induce immunity against E. coli when chickens were infected 1 or 5 days after the vaccination. Significant (P < 0.05) suppression of this nonspecific immunity was observed in birds treated with corticosterone, 40 mg/kg in feed, given for three consecutive days immediately prior to the bacterial exposure but not in those treated prior to the period. The results indicate that innate immunity induced by the primary NDV vaccination may significantly suppress the multiplication of E. coli in chickens for a period of 2-8 days postvaccination. The NDV-induced immunity was inhibited by corticosterone, which is known to mediate physiological responses to stress.

Animals↗