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Sequence and phylogenetic analysis of the fusion protein cleavage site of Newcastle disease virus field isolates from Iran.

Nine Newcastle disease virus (NDV) isolates from Newcastle disease (ND) outbreaks in different regions of Iran were characterized at molecular level. Sequence analysis revealed that the isolates shared two pairs of arginine and a phenylalanine at the N-terminus of the fusion (F) protein cleavage site similarly to other velogenic isolates of NDV characterized earlier. Eight of the nine isolates had the same amino acid sequence as VOL95, a Russian NDV isolate from 1995. However, one isolate, MK13 showed 5 amino acid substitutions, of which 3 have been reported for other velogenic NDV isolates. These results suggest that the origin of the outbreaks of ND in different parts of Iran in 1995-1998 is VOL95.

Amino Acid Sequence↗

Effect of infectious bursal disease on the response of chickens to Mycoplasma synoviae, Newcastle disease virus, and infectious bronchitis virus.

At 35 days of age, chickens which as 1-day-old chicks were inoculated with the infectious bursal disease virus (IBDV) had significantly lower antibody titers against Mycoplasma synoviae, Newcastle disease virus, and infectious bronchitis virus than did those never inoculated with IBDV. The IBDV also had a marked effect on the development of air-sac lesions. Birds infected with IBDV that were later inoculated with M synoviae (day 14), Newcastle disease virus (days 14 and 28) experienced an increased incidence and greater seversity of airsacculitis than did chicks which were not exposed to IBDV.

Air Sacs↗

Velogenic Newcastle disease in imported caged birds.

Velogenic Newcastle disease was diagnosed in pet birds intended for importation into Canada. Virological and histopathological examination confirmed the presence of the disease. The group of birds was denied entry into Canada. Similar birds illegally imported are a potential source of velogenic Newcastle disease virus and are a threat to domestic poultry.

Animals↗

Agar-gel-immunodiffusion and counterimmunoelectrophoresis for diagnosis of Newcastle disease.

Chickens were experimentally infected with Newcastle disease virus (NDV) and different organs were collected at point of death. Demonstration of NDV specific antigen in tissue samples were detected by haemagglutination (HA), agar-gel-immunodiffusion (AGID) and counterimmunoelectrophoresis (CIE) tests. Out of 51 samples tested 44, 27 and 37 were positive by HA, AGID and CIE respectively. The usefulness of AGID and CIE in Newcastle disease diagnosis is discussed.

Agar↗

Velogenic Newcastle disease virus in captive wild birds.

Newcastle disease virus (NDV) was isolated from the faeces of seven different species of clinically healthy captive wild birds. All seven NDV isolates were characterized as velogenic based on the mean death time in embryonated hens' eggs and the intracerebral pathogenicity index in day-old chicks. Three of the isolates were placed in group C1 based on the reactions with monoclonal antibodies. The role of captive wild birds in the epidemiology of Newcastle disease is briefly discussed.

Animals↗

Lack of contact transmission of recombinant Marek's disease virus type 1 expressing the fusion protein of Newcastle disease virus.

To clarify the level of excretion of a recombinant Marek's disease virus type 1 (rMDV1) that confers good protection in chickens against both Marek's and Newcastle diseases, even in the presence of maternal antibodies, contact transmission tests were conducted. Naïve chickens kept in the same cage or room with chickens inoculated with rMDV1 did not produce antibodies against MDV1 or the fusion protein of Newcastle disease virus. Moreover, the rMDV1 was not isolated from the dander of chickens inoculated with rMDV1. Even under the stressful conditions of forced molting and a high temperature environment, rMDV1 was not isolated from the dander of inoculated birds. The viral DNA, however, was detected from the dander of chickens inoculated with rMDV1 as well as a commercial vaccine. These findings indicate that dander from chickens inoculated with rMDV1 includes viral DNA, but does not contain infectious virus.

Animals↗

Epizootiology of Newcastle disease in waterfowl.

Antibodies to Newcastle disease virus (NDV) as measured by hemagglutination-inhibition and virus-neutralization tests were detected in 40/236 Canada geese captured while in their southward migration or in their wintering grounds. Antibodies were also found in 37/267 wild ducks and in 20/31 domestic geese. Adult geese were readily infected by several routes. Inapparent disease usually resulted, and only 1/13 cases were fatal. Goose embryos responded differently to inoculation with selected NDV strains than did chicken embryos of comparative developmental stages. Some goslings that hatched from inoculated embryos died and were found to have virus, whereas others survived and developed active antibodies. Four strains of virus isolated from migratory ducks of the Pacific flyway were characterized. All 4 strains were lentogenic but differed from lentogenic strains prevalent in chickens by being thermostable. It is proposed that wild waterfowl neither receive their ND infection from domestic poultry nor pass their disease to poultry. The virus reservoir probably exists in nature.

Animals↗

Infective and noninfective hemagglutinating particles of Newcastle disease virus: biological and chemical characterization.

Newcastle disease virus (Herts strain), grown in embryonated eggs or in a line of bovine kidney cells, was purified and then separated by sucrose density gradient centrifugation into infectious (IH) and noninfectious hemagglutinating (NIH) particles. These particles were morphologically similar, although the average size of IH was twice that of NIH particles. The activity of hemagglutinin per milligram of virus protein was two- to threefold higher in NIH particles than in IH particles, whereas the specific activity of neuraminidase did not differ in the two particle types. This was consistent with the observed particle size difference. The distribution of the major proteins in IH and NIH particles from egg-grown virus, determined by polyacrylamide gel electrophoresis (PAGE), was significantly different. In IH particles the molar ratio of protein 1 (74,000 daltons) to proteins 2 and 3 (56,000 daltons): protein 6 (41,000 daltons) was 1.0:2.5:2.5; in NIH particles the ratio was 1.0:0.6:1.0. When Newcastle disease virus was grown in bovine kidney cells, the molar ratio of proteins in IH particles resembled that of of egg-grown virus. However, in NIH particles from bovine kidney cells, only protein bands corresponding to protein 1 and proteins 2-3 were present and their molar ratio was 1.0:0.6. Protein 6 was marginally detectable in these particles. Analysis of the proteins in [3H]isoleucine- and [14C]glucosamine-labeled virus showed proteins 1 and 2 (glycoproteins) present in the ratio of 1.0:0.5; protein 3, the nucleoprotein, was not detected. These results are compatible with previous findings by others that NIH particles are deficient in RNA and nucleoprotein antigen, and suggest that formation of discrete particles of Newcastle disease virus by budding requires at most minimal amounts of proteins 3 or 6. The fatty acid composition of egg-grown IH and NIH particles was not significantly different and resembled that of normal allantoic fluid.

Cell Line↗

Intranuclear inclusions in cells infected with Newcastle disease virus.

Cells infected by Newcastle Disease Virus were observed to contain both intracytoplasmic and intranuclear inclusion bodies. Ultrastructurally, they consisted of twisted strands of about 18-20 nm diameter resembling nucleocapsids. The presence of these inclusions was detected irrespective of host cell or pathogenicity of the virus. In immunofluorescence and immunogold labelling experiments, these structures were tagged by an anti-P protein monoclonal antibody. In summary, we show that intracytoplasmic and intranuclear inclusion bodies, hitherto used as a taxonomic characteristic for the genus Morbillivirus of the Paramyxoviridae, also occur in a member of the genus Rubulavirus.

Animals↗

Biological and molecular characterization of Indian isolates of Newcastle disease virus from pigeons.

Five Newcastle disease virus (NDV) isolates from pigeons were characterized by biological and molecular methods. Four of the five isolates were found to be velogenic with high intracerebral pathogenicity indices (ICPI). The fusion protein cleavage site (FPCS) sequences of these isolates had multiple basic amino acids RRQKRF at positions 112-116 and a phenyl alanine at position 117 characteristic of velogenic isolates. Three of these velogenic isolates were phylogenetically related to mesogenic vaccine virus strain and the fourth one to a few exotic velogenic isolates. The lentogenic isolate obtained in this study was identical with the LaSota strain.

Amino Acid Sequence↗

Newcastle disease in a vaccinated flock which had experienced subclinical infectious bursal disease.

A flock of 4,500 Cobb broilers inoculated with Newcastle disease vaccine intra-ocular strain B1 type at 10 days of age developed clinical signs of the disease 19 days later; the mortality rate was 71%. Necropsy examinations showed characteristic lesions. Newcastle disease virus was isolated and identified in the allantoic fluid of embryonating chicken eggs by haemagglutination and haemagglutination-inhibition tests. Histopathological examination showed that follicles of the bursa were depleted of lymphocytes, had many large cavities and were being repopulated by newly formed healthy lymphocytes. Both the acute and convalescent serum samples were positive for infectious bursal disease antibodies in agar gel precipitation tests. Haemagglutination inhibition titres of the acute and convalescent sera were 20 to 80 and 80 to 640 respectively. The vaccine failure may be due to either the subclinical bursal disease or the highly pathogenic nature of the wild Newcastle disease virus.

Animals↗

An epidemic of Newcastle disease in double-crested cormorants from Saskatchewan.

A Newcastle disease epidemic in double-crested cormorants (Phalacrocorax auritus) occurred in July and August 1995, during a 1994-96 study of a breeding colony of this species on Doré Lake (Saskatchewan, Canada). Clinical signs and mortality were observed from a tunnel-and-blind system, and moribund and freshly dead birds were examined virologically. Yolks from cormorant eggs and sera from cormorants and other birds were tested for hemagglutination inhibiting antibodies to Newcastle disease virus (NDV). Evidence of Newcastle disease was limited to juvenile double-crested cormorants, despite close contact with other birds, including American white pelicans (Pelecanus erythrorhynchos) and gulls (Larus spp.). Clinical signs included limb, head or neck paralysis, head or body tremors, ataxia, and blindness; pathogenic NDV was isolated from affected birds. The mortality rate of juvenile cormorants was 32 to 64%, which was high relative to overall first-year mortality in years without epidemics. Thirty-seven of 63 (59%) cormorant sera collected during the epidemic tested positive for antibodies to NDV. Antibody status of cormorant egg yolks depended on stage of incubation, likely due to changes in the amount of water in the yolks. The departure of juvenile cormorants from their nests at 4 wk of age, resulting in an increased contact rate among individuals, may have been important in triggering the epidemic.

Animals↗

The effect of iodination on the haemolytic property and the fatty acids of Newcastle disease virus.

Treatment of Newcastle disease virus with iodine inhibits haemolysis and infectivity, but has no effect on haemagglutination. This is shown to be concurrent with the incorporation of iodine in the hydrocarbon chain of fatty acyl residues of the viral membrane lipid. It is concluded that iodine incorporation, by reducing membrane fluidity, is responsible for these biological phenomena.

Animals↗

Localization of 2',3'-decycling phosphodiesterases in the Newcastle disease virus virion.

Purified Newcastle disease virus (NDV) virions possess 2',3'-cyclic nucleotide 2'-phosphohydrolase (2'-CNPase) and 2',3'-cyclic nucleotide 3'-phosphohydrolase (3'-CNPase) activities. These enzyme activities cannot be removed from the virion even after extensive purification by chromatography on controlled-pore glass. In the intact virion, the 3'-CNPase activity was stimulated by Triton X-100, while the 2'-CNPase activity was partially inhibited. We have prepared the NDV subunits and have shown that 3'-CNPase was associated exclusively with the viral nucleocapsid. In contrast, the 2'-CNPase activity was associated with both the envelope as well as the nucleocapsid. A threshold amount of both enzyme activities was detected in viral M protein.

2',3'-Cyclic Nucleotide 3'-Phosphodiesterase↗

Restriction enzyme analysis of tissue culture-adapted velogenic Newcastle disease virus.

A velogenic Newcastle disease virus isolate typed to belong to group C1 by monoclonal antibody typing was adapted 50 times in chicken embryo fibroblast cell culture and 60 times in Vero cells. At every 10th passage the virus was characterized on the basis of mean death time, intracerebral pathogenicity indices and viral titration studies. A gradual reduction in the virulence of the virus was noted as the passage number increased. RT-PCR of a 254 bp region of the fusion gene encompassing the fusion protein cleavage site was carried out for the virulent as well as cell culture-adapted viruses at every 10th passage level. The amplicons were subsequently digested with three restriction enzymes, viz. AluI, HaeIII and PstI. It was found out that there was difference in banding patterns between the virulent and adapted viruses, indicating nucleotide substitutions in the virulent virus when it was sequentially passaged onto cell culture systems.

Animals↗

Virion functions of RNA+ temperature-sensitive mutants of Newcastle disease virus.

Virions from Newcastle disease virus mutants in four temperature-sensitive RNA+ groups were grown in embryonated hen eggs at the permissive temperature, purified, and then analyzed for biological properties at both the permissive and nonpermissive temperatures. At the permissive temperature, virions of mutants in groups B, C, and BC (11 mutants) were all lower in specific (per milligram of protein) hemagglutination, neuraminidase, and hemolysis activities compared with the wild type. These deficiencies were related to decreased amounts of hemagglutinin-neuraminidase glycoprotein in the virions. Activities of these mutant virions at both the permissive and nonpermissive temperatures were similar, indicating that hemagglutinin-neuraminidase synthesized at the permissive temperature was not temperature sensitive in function. The three group D mutants displayed a different pattern. At the permissive temperature, they had wild-type hemagglutination and neuraminidase activities but were deficient compared with the wild type in hemolysis. Again, functions were similar at both temperatures. Most of the B, C, and BC mutants had specific infectivities similar to that of the wild type despite lower hemagglutination, neuraminidase, and hemolysis functions. However, the D mutants were all less infectious. This evidence is consistent with a shared hemagglutinin-neuraminidase defect in the B, C, and BC mutants and a defect in either the F glycoprotein or the M protein in the D mutants.

Glycoproteins↗

Thiol/disulfide exchange is required for membrane fusion directed by the Newcastle disease virus fusion protein.

Newcastle disease virus (NDV), an avian paramyxovirus, initiates infection with attachment of the viral hemagglutinin-neuraminidase (HN) protein to sialic acid-containing receptors, followed by fusion of viral and cell membranes, which is mediated by the fusion (F) protein. Like all class 1 viral fusion proteins, the paramyxovirus F protein is thought to undergo dramatic conformational changes upon activation. How the F protein accomplishes extensive conformational rearrangements is unclear. Since several viral fusion proteins undergo disulfide bond rearrangement during entry, we asked if similar rearrangements occur in NDV proteins during entry. We found that inhibitors of cell surface thiol/disulfide isomerase activity--5'5-dithio-bis(2-nitrobenzoic acid) (DTNB), bacitracin, and anti-protein disulfide isomerase antibody--inhibited cell-cell fusion and virus entry but had no effect on cell viability, glycoprotein surface expression, or HN protein attachment or neuraminidase activities. These inhibitors altered the conformation of surface-expressed F protein, as detected by conformation-sensitive antibodies. Using biotin maleimide (MPB), a reagent that binds to free thiols, free thiols were detected on surface-expressed F protein, but not HN protein. The inhibitors DTNB and bacitracin blocked the detection of these free thiols. Furthermore, MPB binding inhibited cell-cell fusion. Taken together, our results suggest that one or several disulfide bonds in cell surface F protein are reduced by the protein disulfide isomerase family of isomerases and that F protein exists as a mixture of oxidized and reduced forms. In the presence of HN protein, only the reduced form may proceed to refold into additional intermediates, leading to the fusion of membranes.

Animals↗