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Prolonged replication in the mouse central nervous system of reoviruses isolated from persistently infected cell cultures.

We examined pathogenic characteristics of plaque-purified reoviruses isolated from persistently infected L-cell cultures (PI viruses) after intracranial inoculation into newborn mice. The PI viruses were isolated from independent cultures initiated with high-passage stocks of the wild-type (wt) strain, type 3 Dearing. The virulence of most PI viruses was equivalent to that of the wt strain. However, replication of PI viruses in the central nervous system of infected mice was prolonged to 25 (but not 50) days postinoculation. Thirty-eight percent (n = 186) of mice inoculated with the PI viruses had residual virus detectable in brain tissue 25 days after inoculation, in contrast to only 16% (n = 57) of mice inoculated with wt virus (P = 0.009). Mean residual brain titers were more than 20-fold higher in mice inoculated with PI viruses compared with wt virus (4.3 x 10(4) versus 2.1 x 10(3); P = 0.006). Tropism of PI virus within the brain resembled that of wt virus, and the distribution of PI virus antigen in the brain did not change over time. The extent of necrosis in the brains of mice harboring PI virus 25 days after inoculation was minimal, despite continued presence of high titers of infectious virus. The latter observation resembles the absence of cytopathicity seen in L-cell cultures persistently infected with reovirus. These observations suggest that the interaction of PI viruses with cells can be altered in vivo as well as in cell culture, but virus is eventually cleared from the infected animal.

Ammonium Chloride↗

Temperature-sensitive HVJ (sendai virus) with altered P polypeptide derived from persistently infected cell lines.

HVJ isolated from culture fluids of G2, THEL and GM2 cells persistently infected with HVJ (G2-HVJ, THEL-HVJ and GM2-HVJ) were characterized in comparison with wild-type HVJ (HVJo). Viral structural proteins were analysed by 10% SDS-polyacrylamide gel electrophoresis and its was found that only the P polypeptides of all the HVJ clones isolated from G2-HVJ cells had a smaller size mol. wt. of 77 000 (77K), than that of HVJo with a mol. wt. of 79 000 (79K). One of six clones from THEL-HVJ cells and one of ten clones from GM2-HVJ cells exhibited the same migration pattern of P polypeptide as that of the clones from G2-HVJ cells. However, the other structural proteins were not different from those of the wild-type virions. All the clones from these carrier cultures were temperature-sensitive and were blocked in early step(s) required for RNA synthesis. These results indicate that some mutations(s) associated with P polypeptides could occur during the course of HVJ persistent infection in cell cultures.

Animals↗

A stable cell line with a proportion of cells persistently infected with bovine viral diarrhoea virus.

Bovine turbinate (BTu) and lamb testis (LT) cell lines persistently infected with bovine viral diarrhoea virus (BVDV) arose as a result of a single change of medium containing commercial foetal calf serum. Infected cells comprise 30% and 50% respectively, of the total cell population, determined by immunohistochemical staining. The ratio of positive cells has remained unchanged during successive passages. Characterization of the persistently-infected BTu cells (BTuI) showed that only full length viral RNA was detected by northern blot hybridisation, indicating that DI particles were not involved. Secreted and intracellular virus from these cells was fully infectious for fresh BTu and LT cells. The BTuI cell line was fully permissive for a cytopathic BVDV isolate and a bovine herpesvirus, but non-permissive for two non-cytopathic BVDV isolates. Attempts to induce the permissive state in the BVDV-negative cells of the BTuI culture by treatment with actinomycin D and 5'-aza-cytidine failed. These cells provide a convenient model to study aspects of BVDV pathogenesis and replication.

Animals↗

A persistent infection in MDCK cells by an influenza type B virus.

A persistent infection in Madin Darby Canine Kidney (MDCK) cells by an influenza B virus (B/Tecumseh/63/80) has been established and characterized. Virus recovered from the persistent state titrated lower in relation to the parental wild-type (wt) that initiated the infection as measured by hemagglutination and egg and tissue culture infectious dose, suggesting that the virus is a less cytopathic variant of the original wt virus. The persistent virus (pv) has decreased cytopathology for both MDCK and primary chick kidney (PCK) cell lines, and exhibits different RNA and protein electrophoretic migrations. Plaques of the persistent virus are smaller and take longer to appear, indicating that the pv is a slower growing variant of the wt. The small plaque mutant phenotype may play a role in the maintenance of the persistent infection in MDCK cells. The pv differs from the wt antigenically and in its ability to form deposits of uric acid-like crystals beneath the culture monolayers.

Animals↗

Infectious virus with reduced cytopathogenicity resulting from persistent infection of normal lung fibroblasts by HIV type 1 strains.

We asked whether HIV-1 had the capacity to establish a persistent infection of cultured human diploid fibroblasts. Human strains of normal diploid embryo lung fibroblasts were infected with HIV-1 of the HTLV-IIIB and HIV-1P1 strains. Infection was followed over time, to analyze HIV expression. Virus production (intra- and extracellular virus) was evaluated as follows: ability to form syncytia in the C8166 T cell line, production of p24 and other viral antigens (ELISA and indirect immunofluorescence), search for a gag sequence in cell DNA by the polymerase chain reaction followed by hybridization to an HIV-1-specific probe (SK19). Cell-free culture supernatant was used as a virus source to infect de novo fibroblasts and C8166 T cells. Infection of cultured fibroblasts with either the HTLV-IIIB or HIV-1P1 strain led regularly to the establishment of persistently infected cultures. Fibroblast cells were capable of continuous virus production for at least 10 months. The released virus was capable of reinfecting cultured fibroblasts and of producing cytopathic effects in the C8166 T cell line. However, when compared to wild-type strains, the infectious virus derived from fibroblasts showed a prolonged replication cycle and a decreased ability to form syncytia in the T cell line. Therefore, HIV-1 can establish a persistent and productive infection in normal lung fibroblasts. The data are consistent with the hypothesis that in vivo, at least in the lung, fibroblasts may represent a virus reservoir and that infection of these cells may lead to the production of attenuated variants of HIV.

Cell Line↗

Suppression of NF-kappaB and AP-1 activation in monocytic cells persistently infected with measles virus.

A major cause of the high morbidity and mortality associated with measles infection is attributed to virus-mediated immunosuppression. In this report, we present evidence for a novel strategy of immunosuppression by the measles virus. We observed a marked suppression of lipopolysaccharide (LPS)-induced IL-8, RANTES, TNF-alpha and IL-6 production and NF-kappaB activation in human monocytic cell lines persistently infected with measles virus. This effect was not observed in human epithelial cells lines persistently infected with measles virus. There were no significant differences in expression levels of Toll-like receptors (TLRs) and their associated molecules, or other intracellular signaling molecules of the NF-kappaB signaling pathway in measles-virus-infected monocytic cells compared to uninfected cells. Infected monocytic cells exhibited decreased LPS-induced DNA binding of NF-kappaB and phosphorylation of JNK, namely activation of transcription factors NF-kappaB and AP-1. NF-kappaB was constitutively activated in human epithelial cells persistently infected with measles virus, and LPS treatment resulted in further activation. The cell-type-specific suppression of NF-kappaB activation represents a potential strategy of escape from the host immune system by measles virus via induced immunological silencing in infected cells.

Cell Line↗

Screening of neonatal calves for persistent infection with bovine viral diarrhea virus by immunohistochemistry on skin biopsy samples.

Detection and elimination of cattle that are persistently infected with bovine viral diarrhea virus (BVDV) is important for controlling the transmission of this virus. Colostrum-derived antibodies make the detection of persistently BVDV-infected neonatal calves cumbersome and expensive. The objective of this study was to evaluate the use of immunohistochemical staining of skin biopsy samples from neonatal calves as a method for the early detection of persistent BVDV infection. Three hundred thirty-two 1- to 4-week-old dairy calves were screened for BVDV as part of a routine control program. Formalin-fixed skin biopsy samples were stained for BVDV antigen by immunohistochemistry (IHC), and the results were compared to those of virus isolation (VI) from white blood cell preparations. Six calves were positive by both IHC and VI and remained positive for BVDV upon subsequent follow-up testing; thus, they were classified as persistently infected with BVDV. One calf was positive by VI but negative by IHC. On subsequent testing, the calf was negative by VI, suggesting that the initial VI result was due to an acute BVDV infection. One calf was positive by IHC but negative by VI. This calf remained negative by VI on follow-up testing. Immunohistochemical staining of skin biopsy samples is a reliable method for screening neonatal calves for persistent BVDV infection and would be a useful management tool as an aid for controlling and preventing BVDV infection.

Animals↗

Identification of a consensus mutation in M protein of vesicular stomatitis virus from persistently infected cells that affects inhibition of host-directed gene expression.

In addition to its function in virus assembly, the viral matrix (M) protein of vesicular stomatitis virus (VSV) inhibits host-directed gene expression. The goal of this study was to determine whether sequence changes in M protein contribute to a reduced shut off of host gene expression in cells persistently infected with VSV. Viruses isolated from L cells persistently infected with VSV inhibited host RNA synthesis more slowly than wild-type (wt) VSV. M genes of the persistent viral population were cloned and sequenced. One mutation, an N to D change at position 163 of the protein sequence (N163D), was common to all the molecular clones. The N163D M protein was synthesized from transfected mRNA at a rate that was 30% of that of wt M protein, but was turned over at a rate that was similar to that of wt M protein. Transfection of mRNA encoding N163D M protein inhibited expression of a cotransfected target gene encoding chloramphenicol acetyl transferase (CAT), but the inhibition was 6 to 10 times less effective than transfection of equivalent amounts of wt M mRNA. This difference could not be accounted for by differences in translation of CAT mRNA. Thus, when the differences in M protein expression were taken into account, N163D M protein was 2 to 3 times less effective than wt M protein in the inhibition of host-directed gene expression, similar to the differences in host transcription observed in virus-infected cells. Point mutations in addition to the N163D mutation were found in about half of the M gene molecular clones. The M gene of an independently isolated molecular clone, N163D.2, contained two additional point mutations in its carboxy terminal region. N163D.2 M protein was highly defective in inhibition of host gene expression and was turned over more rapidly than wt M protein. These results support the idea that M gene mutations contribute to a reduced cytopathic effect in cells persistently infected with VSV.

Cell Line↗

Superoxide anion production by granulocytes incubated with HeLa 229 cells persistently infected with influenza virus B/Lee/40.

OBJECTIVE: The purpose of this study was to determine whether granulocytes can be primed to produce superoxide anion by incubation with cells persistently infected with influenza viruses. METHODS: The effect of in vitro incubation with HeLa 229 cells persistently infected with influenza virus B/Lee/40 (He/Le cells) on the generation of superoxide anion by human granulocytes was examined by a cytochrome c reduction assay. RESULTS: Generation of superoxide anion from granulocytes, preincubated with He/Le cells in the productive phase and stimulated with formyl-methionine-leucine-phenylalanine, was significantly enhanced compared with granulocytes preincubated with uninfected HeLa 229 cells. He/Le cells in the productive phase were positive for viral proteins by immunofluorescence and for viral particles by scanning electron microscopy. The priming effects were concentration-dependently inhibited by polyclonal antibodies to the virus. He/Le cells in the latent phase, negative for viral proteins and viral particles, did not prime granulocytes. Culture supernatants of the productive phase did not prime granulocytes. CONCLUSION: Unreleased influenza viruses on He/Le cells in the productive phase primed granulocytes to produce excessive amounts of superoxide anion, suggesting that cytotoxicity by hyperresponsive granulocytes could take place in persistent influenza infection as well as in acute infection.

Antibodies, Viral↗

Role of interferon in persistent infection of macrophages with herpes simplex virus.

Splenic macrophage cultures from C57BL/6 mice resistant to infection with herpes simplex virus (HSV) in vivo survived HSV infection in vitro. In contrast, macrophages from HSV-susceptible DBA/2 mice were completely lysed by the virus. During prolonged culturing, macrophages from C57BL/6 mice continued to produce infectious virus, indicating establishment of a persistent infection. At this time, interferon (IFN) was undetectable. However, as shown directly by the addition of an anti-IFN serum and indirectly by an increased activity of (2'-5')oligoadenylate synthetase, IFN was involved in the maintenance of the persistent infection. During the acute phase of virus infection, viral DNA replication was identical in macrophages from resistant or susceptible mice. Later, viral DNA content and the number of cells expressing HSV antigens decreased in macrophages from C57BL/6 mice. However, single cells remained to express viral proteins and to produce infectious particles. The results show that macrophages can be persistently infected with HSV due to their genetically controlled properties.

2',5'-Oligoadenylate Synthetase↗

Augmentation of verotoxin-induced cytotoxicity/apoptosis by interferon is repressed in cells persistently infected with mumps virus.

Verotoxin type 2 (VT2) produced by enterohemorrhagic Escherichia coli (EHEC) has been shown to have high cytotoxic potency toward several human B lymphoid cell lines with and without Epstein-Barr virus (EBV). Cell death, apoptosis induced by VT2, is closely correlated with the expression of receptor molecule Gb3/CD77, recognized by the toxin, but not with the infection or presence of EBV. Pretreatment of cells with interferon-alpha (IFN-alpha) for 24 h resulted in augmentation of apoptosis by VT2. Pretreatment within 8 h, however, was not effective. It has been reported that IFN-alpha-induced apoptosis is correlated with the induction of the 2',5'-OAS/RNase L system or dsRNA-activated protein kinase (PKR) or both. We have established persistent infection in both Akata and P3HR-1 cells with mumps virus. The persistently infected cell lines, P3HR-MP2 and Akata-MP2, showed poor induction of 2',5'-OAS and PKR in response to IFN-alpha. Augmentation of VT2-induced apoptosis by IFN-alpha was not found in the cell lines P3HR-MP2 and Akata-MP2. Therefore, these findings were interpreted to indicate that augmentation of VT2-induced apoptosis by IFN-alpha may be mediated by PKR and the 2',5'-OAS/RNaseL system. It is also suggested that mumps virus can suppress apoptosis and establish persistent infection.

Antiviral Agents↗

Bovine viral diarrhea virus replication in bovine follicular epithelial cells derived from persistently infected heifers.

Bovine follicle fluid and oocytes surrounded by follicular epithelial (FE) cells were collected from ovaries of two heifers persistently infected with bovine viral diarrhea virus (BVDV). BVDV was present in the follicle fluid at a higher titer than in serum. The oocytes were matured in vitro under culture conditions of 39 degrees C in humidified air containing 5% CO2. In vitro fertilization was performed after 24 hr in culture (the day of insemination was defined as day 1), and culture was continued through day 10. BVDV was present in the culture medium at titers of 10(2.25) to 10(3.25) TC(I)D50/0.1 ml. The virus was also detected in FE cells collected on day 10. Viral antigen was demonstrated in the cytoplasm of FE cells by the indirect immunofluorescence technique. However, no BVDV was detected in the embryos on day 10. These findings suggested that the oocytes or embryos were unlikely to be infected with BVDV, but that the FE cells were infected with BVDV and supported virus replication in cattle persistently infected with BVDV.

Animals↗

Comparison of blood non-specific immune parameters in Bovine virus diarrhoea virus (BVDV) persistently infected and in immune heifers.

Several data from different authors show that Bovine virus diarrhoea virus (BVDV) could be a key component in multiple-etiology diseases, indeed a lower leukocytes number and their impaired functions decrease the resistance to infections. However, most of the information on the impairment of immune function during BVDV infections arise from circumstantial evidence and from experimental infection studies, and few from field data. To assess the effects of BVDV on blood cells parameters, cellular and humoral functions under field conditions, we designed a controlled study in commercial dairy herds, comparing persistent infected (PI) and healthy heifers. A total of 45 heifers were considered, the PI animals were nine, the control animals were 34, while two controls were considered as acute infected animals. The comparison of the mean values in PI calves showed a significant decrease for leukocytes and granulocytes, while platelets showed a significant increase, when compared with control animals. The total number of lymphocytes decreased not significantly in PI animals, while the proportion significantly increased. The number and proportion of monocytes was significantly reduced in PI animals, when compared with controls. The data collected on markers of cellular immunity during our study cannot be compared with the literature because there are no reference values. The presence of a persistent infection affected the cellular enzymes: NAGase, lysozyme and respiratory burst showed a large statistically significant decrease in PI animals when compared with controls. The presence of a persistent infection with BVD virus influenced blood cells number and impaired some blood cell functions. Such impairment confirms that PI animals represent a threat to the herd not only because they could spread BVDV, but also because they are more susceptible to other infectious diseases.

Animals↗

Antibody-dependent transcriptional regulation of measles virus in persistently infected neural cells.

Application of neutralizing anti-hemagglutinin antibodies to mouse neuroblastoma cells (NS20Y/MS) persistently infected with measles virus (MV) leads to a significant reduction of viral structural proteins within 6 days. While the transcriptional gradient for MV-specific mRNAs remained unaffected upon antibody treatment, the total amount of MV-specific transcripts dropped by 80% after 24 h. The expression of genomic RNA was affected similarly, with slightly slower time kinetics. Both transcription and expression of the viral structural proteins could be completely reactivated when viral antibodies were removed from the tissue culture. The same findings could be obtained in rat glioma cells persistently infected with subacute sclerosing panencephalitis virus (C6/SSPE) but not in cells of nonneural origin. The data indicate that antibody-induced antigenic modulation affects the early stages of viral transcription within a few hours after the addition of antibodies and leads to an almost complete repression of viral gene expression in cells of neural origin.

Animals↗

Inhibition of opiate receptor-mediated signal transmission by rabies virus in persistently infected NG-108-15 mouse neuroblastoma-rat glioma hybrid cells.

Acute and persistent rabies virus infection of mouse neuroblastoma-rat glioma hybrid cells (NG-108-15) results in a loss of the normal inhibiting function of opiates via the opiate receptor on hormone-stimulated adenylate cyclase activity. Previous studies of these persistently infected cells have shown a decrease in the affinity of the opiate receptors for agonists without any change in the number of these receptors. We now demonstrate that persistently infected cells are unable to couple the opiate receptors to the inhibitory regulatory protein Ni of the adenylate cyclase, as measured by the loss of stimulation of the GTPase activity of this protein. However, the unstimulated basal GTPase activities of the regulatory components Ni and Ns are unchanged in the persistently infected cells. These studies also reveal a disorder of the stimulation of the adenylate cyclase by GTP or fluoride via the stimulating regulatory G/F protein (Ns) in persistently infected cells, whereas direct stimulation of the catalytic subunit of the adenylate cyclase by forskolin remains unchanged. Therefore, there are different points of dysfunction caused by the persistent rabies infection in the signal pathway from the opiate receptor to the adenylate cyclase and from the stimulating Ns protein to the enzyme: (i) opiate receptor binding is reduced by a decrease of agonist affinity (previously published data), (ii) the stimulation of GTPase activity of the inhibiting regulatory component Ni of the adenylate cyclase system is inhibited, and (iii) the signal pathway from the stimulating regulatory component of the adenylate cyclase system to the unchanged activity of the catalytic subunit is defective.

Adenylyl Cyclases↗

Infection of human monocyte-derived macrophages with Chlamydia trachomatis induces apoptosis of T cells: a potential mechanism for persistent infection.

Viruses can escape T-cell surveillance by infecting macrophages and thereby induce apoptosis of noninfected T cells. This ability had not been demonstrated for bacteria. We investigated whether infection of macrophages with the important human pathogen Chlamydia trachomatis can induce T-cell apoptosis. Because Chlamydia-Mycoplasma coinfection is a frequent event, the ability of Mycoplasma fermentans-infected macrophages to induce T-cell apoptosis was also studied. Infected macrophages were cocultivated with autologous T cells in different activation states. Propidium iodide-based fluorescence-activated cell sorter analysis demonstrated that macrophages infected with viable chlamydiae induced T-cell death. Apoptosis was identified as the mode of death induction by using a terminal deoxynucleotidyltransferase-mediated dUTP-biotin nick end labeling assay. Induction of T-cell death was macrophage dependent. Incubation of T cells with infectious chlamydiae in the absence of macrophages did not lead to T-cell apoptosis. UV irradiation of chlamydiae diminished the ability to induce death. T-cell death was induced by a cell-free supernatant of infected macrophages. Not only phytohemagglutinin-preactivated T cells but also non-mitogen-preactivated T cells were susceptible to C. trachomatis-induced apoptosis. In contrast, M. fermentans infection of macrophages did not induce T-cell death. Coinfection had no additional effect. In summary, intracellular chlamydial infection of macrophages can induce T-cell apoptosis. Apoptosis induction by chlamydiae possibly explains how persistently infected macrophages escape T-cell surveillance and why the Chlamydia-specific T-cell response is diminished during persistent chlamydial infection.

Apoptosis↗

Economic costs associated with two testing strategies for screening feeder calves for persistent infection with bovine viral diarrhea virus.

OBJECTIVE: To develop partial budgets of the economic costs of 2 test strategies for screening cattle for persistent infection with bovine viral diarrhea virus (BVDV). DESIGN: Partial budget analysis. ANIMALS: 938 calves arriving at 2 stocker operations. PROCEDURE: Calves were tested to determine prevalence of persistent BVDV infection. Test strategies that were evaluated included a single-test strategy consisting of immunohistochemical staining of skin biopsy specimens from all animals and a 2-test strategy consisting of polymerase chain reaction (PCR) assaying of pooled blood samples followed by immunohistochemical staining of skin biopsy specimens from animals in pools for which assay results were positive. Break-even costs (i.e., cost of persistent BVDV infection per animal necessary to justify whole-herd diagnostic testing) associated with each test strategy were calculated as a function of disease prevalence and test cost. RESULTS: Apparent prevalence of persistent BVDV infection was 0.32%. Sensitivity and specificity of the PCR assay for pooled samples were 100% and 89.7%, respectively. Regardless of the prevalence of persistent BVDV infection, the break-even cost for the 2-test strategy was lower than the break-even cost for the single-test strategy. However, the economic advantage was greatest when prevalence was low. CONCLUSIONS AND CLINICAL RELEVANCE: Results suggest that using a 2-test strategy to screen cattle for persistent BVDV infection, whereby the first test involves PCR assaying of pooled samples and the second involves immunohistochemical testing only of those animals represented in pooled samples with positive assay results, will reduce the cost of screening incoming feedlot cattle, compared with immunohistochemical testing of all animals.

Animals↗

Antigenic analysis of type O foot-and-mouth disease virus in the persistently infected bovine.

The antigenic profiles of serotype O strains of FMDV collected from the oropharynx of persistently infected cattle were defined with a panel of monoclonal antibodies (mAb's) in an indirect antigen-trapping ELISA. The mAb profiling showed no significant loss of reactivity in two neutralising antigenic sites of persistent FMDV isolates collected over a period of eight months. Early and late serum taken from a carrier animal showed similar neutralising activity against early and late carrier isolates. The antigenic stability of serotype O strains of FMDV collected during the carrier state suggests that antigenic variation facilitated by pressure from the host humoral immune response is not critical to the establishment or maintenance of a persistent infection with FMDV.

Animals↗