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C Orvell

Publications and source records attributed to C Orvell.

At least 37 records · Page 2Linked to original sources

A method for combined immunoaffinity purification and assay of HIV-1 reverse transcriptase activity useful for crude samples.

Detection of human immunodeficiency virus type 1 (HIV-1) reverse transcriptase (RT) activity in crude specimens was greatly enhanced using a novel capture RT assay. Eighteen different monoclonal antibodies (Mabs) raised against purified HIV-1 RT were tested for their ability to bind to HIV-1 RT without affecting its activity. The anti-HIV-1 RT Mabs were immobilized on plastic macrobeads and used as solid carriers in the capture RT assay. The assay system first involved RT's adherence to the immobilized Mabs. Nonspecific enzymes and other impurities were removed by a simple wash after which the RT reaction mixture was added. Substrate and product were finally separated by a wash of the beads. Practically all radioactivity incorporated into DNA (>98%) was recovered on the bead. The Michaelis-Menten constants and the saturation velocity values for the nucleotide substrate were similar for free and immobilized RT. The reaction mechanism for the immobilized RT is discussed. When comparing the function of this assay with more conventional soluble RT assays for samples consisting of recombinant HIV-1 RT mixed with an extract of peripheral blood lymphocytes (PBL), an almost 100-fold higher sensitivity was found. The capture RT assay had the capacity to recover approximately 80% of the RT activity added to an extract of 1 x 10(7) PBL cells/ ml. A strong correlation (r = 0.947) between the results obtained with this assay and a HIV-1 p24 enzyme-linked immunosorbent assay was found, when samples from a collection of 16 HIV strains propagated in cell culture were analyzed.

Antibodies, Monoclonal↗

Canine distemper virus from diseased large felids: biological properties and phylogenetic relationships.

Specific pathogen free (SPF) domestic cats were inoculated with tissue homogenate obtained from a Chinese leopard (Panthera pardus japonensis) that had died in a North American zoo from a natural infection with canine distemper virus (CDV). The cats developed a transient cell-associated CDV viraemia along with pronounced lymphopenia but did not show any clinical symptoms. Plasma neutralizing-antibody titres against the homologous CDV (A92-27/4, isolated from the Chinese leopard) were consistently higher than against the CDV vaccine strain 'Bussell'. The Chinese leopard CDV isolate showed in vitro biological properties reminiscent of virulent, wild-type CDV strains. Sequence analysis of the H gene of two large felid CDV isolates from the USA (A92-27/4 and A92-6) revealed up to 10% amino acid changes including up to four additional potential N-linked glycosylation sites in the extra-cytoplasmic domain as compared to CDV vaccine strains. Phylogenetic analysis was performed using the entire coding region of the H gene and a 388 bp fragment of the P gene of several morbillivirus species. Evidence was obtained that recent CDV isolates from different species in the United States (including isolates from large felids), Europe and Africa are significantly distinct from CDV vaccine strains. All wild-type CDV isolates analysed clustered according to geographical distribution rather than to host species origin. By sequence analysis a CDV epizootic among large felids in a Californian safari park was linked to a virus which most likely originated from feral non-felid carnivores.

Amino Acid Sequence↗

Heat-inactivated Sendai virus can enter multiple MHC class I processing pathways and generate cytotoxic T lymphocyte responses in vivo.

We have earlier described an alternative MHC class I processing pathway for Sendai virus (SV) in H-2Kb-transfected T2 cells (T2Kb). These cells have deleted genes for transporters associated with Ag processing (TAP1/2) and proteasome subunits LMP2/7 but can still process SV for the presentation of an immunodominant nucleoprotein CTL epitope (nucleoprotein peptide 324-332, FAPGNYPAL, SV9), even in the presence of the fungal metabolite brefeldin A (BFA). Presently we have compared live and heat-inactivated SV to investigate whether infectious virus, including early events such as binding and fusion at the host cell membrane, is important for nonclassical MHC class I processing and immunogenicity. We have found that heated virus (56 degrees C, boiled or autoclaved) with no fusion and hemagglutinin-neuraminidase activities, behaves similar to live SV in T2kb cells by entering a TAP-independent and BFA-resistant pathway. In EL-4 cells, which do not express this nonclassical TAP-independent and BFA-resistant pathway, heat-treated SV is processed in a BFA-sensitive way. In T1Kb- and TAP1/2-transfected T2Kb cells, as in T2Kb cells, processing of heat-inactivated SV was completely BFA resistant. Heat-inactivated SV was also found to prime CTLs in vivo. We conclude that heat-inactivated SV can enter both BFA-sensitive and -resistant MHC class I processing pathways and that SV in this respect may be particularly efficient. What property in the SV that is important for this characteristic is presently not clear but might be useful for the deliberate generation of CTL responses in vivo.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Spot synthesis of overlapping peptides on paper membrane supports enables the identification of linear monoclonal antibody binding determinants on morbillivirus phosphoproteins.

In order to map antigenic domains on the P-protein of morbillivirus, a series of overlapping peptides, representing the P-protein sequences of phocid distemper virus strain 2558/Han88 and canine distemper virus strain Onderstepoort, were synthesized on a paper support by the spot-technique. The reactivity of six monoclonal antibodies with the peptides was tested in an enzyme immunoassay and compared to their reactivity in Western blots and in an ELISA using detergent extracts from virus-infected cells. Three linear determinants could be localized on the P-protein. Two antibody-binding sites were delineated within the C-terminal (between amino acids 307-322 and 382-400, respectively), and a third one was located on the N-terminal part (amino acids 13-31) of the protein. Fine mapping of this binding site revealed that this was a part of an antigenic domain. In Western blots, the monoclonal antibodies reacting with this domain also reacted with a second protein which was possibly the V-protein.

Amino Acid Sequence↗

Eosinophil cationic protein in nasopharyngeal secretions and serum of infants infected with respiratory syncytial virus.

Eosinophil cationic protein (ECP) was assayed in nasopharyngeal secretion (NPS) and serum from 42 infants, hospitalized with acute lower respiratory infection, in El Salvador and the results analyzed in relation to etiology of the infection. ECP concentrations were high in NPS, at an average 50 times higher than those found in serum. Exceedingly high levels of ECP (> 1000 micrograms/L) were found more frequently in wheezing than in non-wheezing children (30% vs 7%) and, accordingly, were more commonly found in children hospitalized with bronchiolitis than in those with pneumonia. Excessive levels were significantly more common in girls than in boys. Of the 42 cases, 28 were found to be caused by respiratory syncytial virus (RSV) subgroup A, and 3 by RSV-B, by means of detection of RSV antigen in nasopharyngeal cells. ECP serum levels were moderately elevated during the acute phase of the respiratory infection and increased slightly but significantly, in cases with RSV antigen-positive bronchiolitis, but not in those with pneumonia. The ECP levels in NPS from patients in Sweden who, by antigen detection in NPS cells, were diagnosed as either RSV or para-influenza 3 infection or none of these, were similar. These results indicate that elevation of ECP in NPS is associated with acute lower respiratory infection in general, but particularly pronounced in cases of bronchiolitis. Elevation of ECP is not an exclusive consequence of RSV infection, but may occur to an equal extent in infections caused by other agents.(ABSTRACT TRUNCATED AT 250 WORDS)

Acute Disease↗

Respiratory syncytial virus subgroup B dominance during one winter season between 1987 and 1992 in Vancouver, Canada.

A subgroup analysis of 613 specimens submitted to the British Columbia's Children's Hospital from 1987 to 1992 revealed that subgroups A and B of respiratory syncytial virus (RSV) were both circulating in our community, with some predominance for subgroup A during the period from October 1987 to September 1988 (the 1987-88 season) (64%), 1990-91 (60%), and 1991-92 (62%). During 1989-90 subgroup A represented the majority of isolates (80%). Subgroup B predominated during only one season, 1988-89 (94%). No microheterogeneity within subgroups was apparent as judged by the monoclonal antibody reactivity pattern. More male than female children were affected overall, but no sex-related difference between subgroup infections could be detected (P = 0.28). The majority of patients were less than 1 year of age, and no significant association between age and subgroup was detected after stratifying for year (P = 0.64). This is, to our knowledge, the first comprehensive longitudinal RSV subgroup prevalence study from the Pacific Northwest and from Canada.

Adolescent↗

Respiratory syncytial virus infection in hospitalized patients and healthy children in El Salvador.

Nasopharyngeal specimens from 42 children less than one-year old hospitalized with bronchiolitis or pneumonia in El Salvador were analyzed for the presence of subgroup-specific respiratory syncytial virus (RSV) antigens by the indirect immunofluorescence technique. The antigen RSV-A was demonstrated in 28 children, RSV-B in three, and in one child subgroup, specificity could not be determined. The male:female ratio in the RSV-infected children was 1.9:1. The most severe disease, requiring intensive care, was observed in two infants with RSV-B infection. Determination of serum IgG, IgA, and IgM antibodies in acute and convalescent sera showed that none of the tests alone had sufficient sensitivity for routine diagnostic purposes, although, in combination, they provided a correct diagnosis in 86% of the RSV-infected children. A seroprevalence study of IgG, IgA, and IgM antibodies in 206 healthy children showed that a primary RSV infection is usually acquired during the first year of life in El Salvador. These results also indicated that reinfections with RSV frequently occur during the first 3-4 years of life and suggest that the occurrence of serum RSV IgA antibodies may be a marker of reinfection.

Age Factors↗

Disruption of a salt bridge between Asp 488 and Lys 465 in HIV-1 reverse transcriptase alters its proteolytic processing and polymerase activity.

The conserved aspartic acid residue 488 in the RNase H domain of HIV-1 reverse transcriptase (RT) was mutated to alanine. RT was expressed in Escherichia coli alone or with the entire pol-gene polyprotein consisting of proteinase, RT, and integrase and processed by the HIV-1 proteinase in the bacterial cell. Expression of mutant RT together with the proteinase resulted in an overproduction of RT p51 vs p66. The mutation also altered the conformation of the RT p66/p51 heterodimer as shown by the loss of binding of monoclonal antibodies to mutant RT in ELISA. Crystallographic data shows that a salt bridge exists between Asp 488 and Lys 465 of RNase H which stabilizes the uncleavable form of RT p66, and that substitution of Asp for Ala would prevent the formation of this salt bridge. Our results indicate that disruption of this salt bridge through mutation of Asp 488 interferes with the conformational changes that regulate the limited processing of p66 to 51 by the virus proteinase. Homology data suggest that such a bridge may be present in other lentiviruses. The mutation introduced caused a moderate decrease in both the RNase H activity and the polymerase activity of RT, indicating that the proper folding of the RNase H domain of RT is necessary to achieve full polymerase activity.

Amino Acid Sequence↗

Restricted expression of viral surface proteins in canine distemper encephalitis.

Sixteen dogs with naturally occurring acute and chronic canine distemper virus (CDV) encephalitis were examined immunohistochemically for the presence of the five major CDV-specific proteins in the central nervous system. Monoclonal antibodies (mAbs) directed against two, three, four and five epitopes of the nucleo- (N), phospho- (P), fusion (F), and hemagglutinin (H) protein, respectively, and a polyclonal monospecific antibody recognizing the matrix (M) protein were used. Both core proteins and their epitopes, three F protein epitopes and the M protein were demonstrated in all animals examined. A fourth F protein epitope was found only in 13 animals. The H-2 and H-3 epitope of the H protein were detected in 15, the H-1 and H-5 epitope in 14, and the H-4 epitope in 3 animals. All viral proteins were observed in the same types of brain cells including neurons and astrocytes. The N and P protein were demonstrated in nucleus, cytoplasm and cell processes, whereas M, H and F protein were observed in the cytoplasm only and rarely in cell processes. In addition, the M protein was detected occasionally in the nucleus of neurons and reactive astrocytes. Intralesional distribution of CDV-specific proteins varied between core and surface proteins. In acute and subacute lesions without associated inflammation, expression of the M, H and F protein was only slightly diminished compared to the N and P protein. However, plaques with severe inflammation were either devoid of viral antigen or exhibited N- and P protein-specific immunoreactivity exclusively at the periphery, whereas expression of surface proteins was severely reduced or absent. These results are suggestive of restricted synthesis of CDV envelope proteins in acute, and more prominent in chronic, distemper encephalitis.

Animals↗

In vivo and in vitro expression of canine distemper viral proteins in dogs and non-domestic carnivores.

The occurrence of the nucleo-, phospho-, matrix, fusion, and hemagglutinin proteins of the canine distemper virus (CDV) was investigated immunocytochemically in the brains of 3 dogs, 6 stone martens, 1 polecat, and 1 weasel. In addition, viral protein expression was studied in primary brain cell cultures of the 3 dogs after co-cultivation with Vero cells. Immunohistochemically, only minor differences, restricted to the H-4 epitope, were noted between the various species and CDV isolates. The data presented indicate that the mustelid virus is antigenically not distinct from the canine morbillivirus.

Animals↗

The mumps virus V protein is unstable in virus infected cells.

The mumps virus (MuV) V protein was characterized in virus infected cells by the use of antipeptide sera. In radioimmune precipitation assay (RIPA), the sera reacted with the V protein and also immunoprecipitated the nucleocapsid (NP) and phospho (P) proteins. However, by depletion RIPA (in which either the NP and P proteins or the V protein were removed) and Western immunoblotting, it was demonstrated that the V protein was not associated with the NP and P proteins, but that the anti-V sera cross-reacted with the NP protein. Pulse-chase experiments demonstrated that the V protein was gradually decreased during the chase period and could not be detected by antibodies raised against peptides representing three different regions of the protein at the end of the chase, while the NP and P proteins were relatively stable during the chase period. These results suggest that the V protein is unstable and degraded gradually in virus infected cells.

Amino Acid Sequence↗

Intertypic differentiation and detection of intratypic variants among canine and phocid morbillivirus isolates by kinetic neutralization using a novel immunoplaque assay.

Intertypic antigenic differences and the intratypic variability of the closely related canine (CVD) and phocid distemper viruses (PDV) were examined using a molecular (monoclonal antibodies specific for the H- and F-glycoproteins) and a functional (kinetic neutralization, KN) approach. KN studies were carried out using a novel immunoplaque technique which combined conventional plaque assay and antigen-specific enzyme-immunostaining techniques. Morbillivirus isolates of canine and phocid origin clearly formed two separate groups. Minor antigenic differences were also evident within each cluster. A distemper isolate of mustelid origin was distinguishable from both CDV- and PDV-like prototype viruses by kinetic neutralization.

Animals↗

Studies on manifestations of canine distemper virus infection in an urban dog population.

An upsurge of canine distemper was recognized at the beginning of 1991 in the urban dog population of the Copenhagen area. The outbreak had the characteristics of a virulent morbillivirus introduction in a partly immune population, where the disease primarily was manifested in young individuals. Testing of single serum samples for the presence of canine distemper virus (CDV) IgM antibodies using an IgM ELISA confirmed current and recent CDV infections in an urban dog population, where the use of attenuated CDV vaccines was widespread. In 49 out of 66 sera from clinical cases suspected of canine distemper we detected CDV IgM antibodies, as compared to the detection of viral antigen by indirect immunofluorescence in 27 of 65 specimens of conjunctival cells. The antigenic make-up of isolates from acute and subacute clinical cases was investigated with a panel of 51 monoclonal antibodies directed against CDV and the related phocine distemper virus. The isolates exhibited an homogeneous reaction pattern and shared overall antigenic characteristics of the CDV prototype. The majority of cases were diagnosed among unvaccinated dogs and individuals with unknown or obscure vaccination record. However, severe clinical cases were also diagnosed in vaccinated individuals.

Animals↗

Characterization of morbilliviruses isolated from dolphins and porpoises in Europe.

A previously unidentified morbillivirus was isolated from two harbour porpoises (Phocoena phocoena) that had died in the Dutch Waddensea (North Sea) in 1990. This porpoise morbillivirus (PMV) and a dolphin morbillivirus (DMV), which had recently caused a heavy mortality in Mediterranean striped dolphins (Stenella coeruleoalba), were compared antigenically with other members of the genus Morbillivirus, including the newly recognized phocine distemper virus type 1. DMV and PMV proved to be similar but distinct morbillivurses, closely related to rinderpest virus and peste-des-petitsruminants virus. Cell cultures of cetacean, pinniped, ruminant and canine origin showed a different pattern of susceptibility to DMV and PMV infection. Ruminants and dogs proved to be susceptible to experimental infection with DMV and PMV, which both caused a transient leukopenia most pronounced in the ruminants. Pre-exposure of dogs to DMV and PMV protected them from developing CDV viraemia and clinical signs upon challenge infection with virulent CDV. A serological survey among stranded animals of different cetacean species in Europe indicated that infections with DMV- and PMV-like morbilliviruses are not uncommon among these aquatic mammals.

Animals↗

Fusion protein gene nucleotide sequence similarities, shared antigenic sites and phylogenetic analysis suggest that phocid distemper virus type 2 and canine distemper virus belong to the same virus entity.

Nucleotide sequencing of the fusion protein (F) gene of phocid distemper virus-2 (PDV-2), recently isolated from Baikal seals (Phoca sibirica), revealed an open reading frame (nucleotides 84 to 2075) with two potential in-frame ATG translation initiation codons. We suggest that the second in-frame ATG triplet at positions 264 to 266 initiates the translation, resulting in a protein of 537 amino acid residues with a calculated M(r) of 63,035. The putative F1/F2 cleavage site, located approximately 100 amino acid residues from the N terminus, is identical to those of the F proteins of phocid distemper virus-1 (PDV-1) isolated from European harbour seals (Phoca vitulina) and of canine distemper virus (CDV). A full scale comparison of morbillivirus F genes reveals that the conserved F0 extracellular protein-encoding region contains a large number of non-expressed mutations, suggesting that this part of the protein is under strong functional constraints. Phylogenetic analysis of morbillivirus F gene nucleotide sequences revealed a closer evolutionary relationship between PDV-2 and CDV than between PDV-1 and PDV-2. These data were supported by cross-reactivity patterns of PDV-2 and CDV obtained with monoclonal antibodies to structural proteins of PDV-1 and CDV, and suggest that PDV-2 is a strain of CDV, resulting from a trans-species infection.

Amino Acid Sequence↗

Prevalence of morbilliviruses among pinniped and cetacean species.

Since 1987, morbillivirus infections have caused serious disease outbreaks with high mortality among aquatic mammals. Baikal seals (Phoca sibirica) in Siberia were involved in an outbreak caused by a virus closely related to canine distemper virus (CDV) in 1987. Harbour seals (Phoca vitulina) and grey seals (Halichoerus grypus) in north-western Europe were struck by a newly recognised morbillivirus of seals (PDV1). A serological survey has indicated that these morbillivirus infections frequently occur among several pinniped species. Besides pinnipeds, the presence of morbillivirus infections among cetaceans, including whales, dolphins and porpoises, has been demonstrated since the outbreak of PDV among seals in north-western Europe. Morbillivirus was isolated from several stranded harbour porpoises (Phocoena phocoena). This virus proved to be very similar to a virus which was isolated during a disease outbreak with high mortality among striped dolphins (Stenella coeruleoalba) in the Mediterranean area. The viruses isolated from these cetacean species were quite different from the viruses isolated from the seals. They proved more related to the ruminant morbilliviruses, peste des petits ruminants virus and rinderpest virus. The potential transmission of the dolphin morbillivirus to the endangered population of the Mediterranean monk seal (Monachus monachus) has been considered. Studies are presently being conducted into the possibility of inducing protection against morbillivirus infection in this species by vaccination with an immune stimulating complex (ISCOM) preparation based on CDV.

Animals↗

Comparison of detergents for extraction and ion-exchange high-performance liquid chromatography of Sendai virus membrane proteins.

The integral membrane proteins of Sendai virus, haemagglutinin-neuraminidase (HN) and fusion protein (F) were extracted from purified virions with a non-ionic and two zwitterionic detergents, i.e., pentaethylene glycol monolauryl ether (C12E5), lauryldimethylamine oxide (LDAO) and dodecyldimethylammoniopropane-1-sulphonate (SB12), respectively. The extracts were subjected to ion-exchange high-performance liquid chromatography (HPIEC) using 0.1% of the detergent in the eluent on four different columns (MA7Q, Zorbax BioSeries SAX, Mono Q and PL-SAX) with a quaternary amine as interacting ligand and with different pore sizes: non-porous and 30, 80 nm and 400 nm, respectively. The relative recoveries of protein were similar for all the columns. The highest recovery of HN and F protein and the best separation were obtained with C12E5. Analysis of HPIEC fractions with monoclonal antibodies directed against conformational epitopes showed that C12E5 had less effect on the conformation than the other two detergents.

Animals↗