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Strategies and mechanisms for host and pathogen survival in acute and persistent viral infections.

Persistent viral infections causing serious diseases derive, primarily, from altered function of the immune system. Knowledge of the very complex composition and function of the innate and adaptive branches of the immune system is essential to understanding persistent infection. The best solution to the problem of persistent infection is by prevention using prophylactic vaccines. Hit and run viruses evade immune destruction by infecting new hosts and rarely persist. Hit and stay viruses evade immune control by sequestration, blockade of antigen presentation, cytokine escape, evasion of natural killer cell activities, escape from apoptosis, and antigenic change. Twelve prophylactic vaccines against hit and run agents exist, and there are only three vaccines against hit and stay viruses, all of which are of DNA composition. Several new vaccines against hit and stay viruses are feasible, but protective vaccines against RNA HIV and hepatitis C agents are highly unlikely, short of a major breakthrough. Therapeutic vaccines are very improbable without a magnitude of favorable new discoveries. In the meantime, antiviral chemotherapy, chemotherapy/prophylactic vaccination, and short interfering RNA silencing are worthy of intense investigation.

Antibodies, Viral↗

Curing of foot-and-mouth disease virus from persistently infected cells by ribavirin involves enhanced mutagenesis.

BHK-21 cells persistently infected with foot-and-mouth disease virus (FMDV) can be cured of virus by treatment with the antiviral nucleoside analogue ribavirin. To study whether the process involved an increase in the number of mutations in the mutant spectrum of the viral population, viral genomes were cloned from persistently infected cells treated or untreated with ribavirin. An increase of up to 10-fold in mutation frequencies associated with ribavirin treatment was observed in the viral genomes from the treated cultures as compared with parallel, untreated cultures. To address the possible mechanisms of enhanced mutagenesis, we investigated the mutagenic effects of ribavirin together with guanosine, and mycophenolic acid in the presence or absence of guanosine. Changes in the intracellular nucleotide concentrations were determined for all treatments. The results suggest that the increased mutation frequencies were not dependent on nucleotide pool imbalances or due to selection of preexisting genomes but they were produced by a mutagenic action of ribavirin.

Animals↗

Synaptic pathology in Borna disease virus persistent infection.

Borna disease virus (BDV) infection of newborn rats leads to a persistent infection of the brain, which is associated with behavioral and neuroanatonomical abnormalities. These disorders occur in the absence of lymphoid cell infiltrates, and BDV-induced cell damage is restricted to defined brain areas. To investigate if damage to synaptic structures anteceded neuronal loss in BDV neonatally infected rats, we analyzed at different times postinfection the expression levels of growth-associated protein 43 and synaptophysin, two molecules involved in neuroplasticity processes. We found that BDV induced a progressive and marked decrease in the expression of these synaptic markers, which was followed by a significant loss of cortical neurons. Our findings suggest that BDV persistent infection interferes with neuroplasticity processes in specific cell populations. This, in turn, could affect the proper supply of growth factors and other molecules required for survival of selective neuronal populations within the cortex and limbic system structures.

Animals↗

The production and survival of lambs persistently infected with border disease virus.

From 1985 to 1989 lambs persistently infected with border disease virus (BDV) were produced for comparative immunological studies by infecting 57 susceptible pregnant ewes between 50 and 60 days' gestation with Moredun or Oban strains of BDV. Ewes were infected either by injection with virus grown in cell culture or by housing with lambs excreting BDV. There was no significant difference in the outcomes of these different methods of infection. There was a significant difference in the number of viable lambs born to ewes receiving the two viruses. Of 41 ewes infected with Moredun virus 21 produced 32 live lambs of which 17 were reared to 1 month old (53% viability). Of 16 ewes receiving Oban virus 10 gave birth to 17 live lambs of which 15 were reared to 1 month old (88% viability). All the lambs born to ewes infected with Moredun BDV had varying signs of tremor and increased hairiness ("hairy-shakers") while those born to ewes infected with the Oban virus had no obvious clinical signs. Survival of the lambs was poor. Up until February 1991, 14 Moredun and 10 Oban sheep between the ages of 4 months and 5.5 yr had died from a variety of causes. The two commonest causes were a chronic wasting syndrome and a mucosal disease-like syndrome which was associated with the recovery of cytopathic BDV. Mating of unrelated persistently infected sheep was largely unproductive although 2 lambs were reared.

Animals↗

Identification of mutations in a Sindbis virus variant able to establish persistent infection in BHK cells: the importance of a mutation in the nsP2 gene.

Sindbis virus is a positive strand RNA virus that has provided a valuable model for studying virus structure and replication. It is also being developed as a vector for the expression of heterologous proteins. Many studies with this virus are carried out in cultured BHK cells where infection is usually highly cytopathic and within 1 or 2 days after infection all of the cells are dead. Weiss et al. had established a persistently infected culture of BHK cells by infecting the cells with a virus preparation highly enriched in defective interfering (DI) particles and had isolated an attenuated virus, SIN-1 virus, from the culture [Weiss et al. (1980) J. Virol. 33, 463-474]. SIN-1 virus, free of DI particles, was able to establish a persistent infection in BHK cells. We initiated studies to determine what changes in the genome of the virus were responsible for this phenotype. We describe here the cDNA cloning and sequencing of the 5' terminus and the four nonstructural protein genes from SIN-1 virus. A single coding mutation in the nsP2 gene (a predicted change of Pro-726 --> Ser) produced a virus that was able to establish persistent infection in BHK cells. Additional mutations in the other genes were required to decrease the synthesis of viral RNA to a level similar to that found in cells infected with SIN-1 virus. Incorporation of the nsP2 mutation into a Sindbis virus expression vector led to a higher level of synthesis of the reporter protein, beta-galactosidase, than that obtained with the original Sindbis virus replicon.

Animals↗

Coevolution of persistently infecting small DNA viruses and their hosts linked to host-interactive regulatory domains.

Although most RNA viral genomes (and related cellular retroposons) can evolve at rates a millionfold greater than that of their host genomes, some of the small DNA viruses (polyomaviruses and papillomaviruses) appear to evolve at much slower rates. These DNA viruses generally cause host species-specific inapparent primary infections followed by life-long, benign persistent infections. Using global progressive sequence alignments for kidney-specific Polyomaviridae (mouse, hamster, primate, human), we have constructed parsimonious evolutionary trees for the viral capsid proteins (VP1, VP2/VP3) and the large tumor (T) antigen. We show that these three coding sequences can yield phylogenetic trees similar to each other and to that of their host species. Such virus-host "co-speciation" appears incongruent with some prevailing views of viral evolution, and we suggest that inapparent persistent infections may link virus and most host evolution. Similarity analysis identified three specific regions of polyoma regulatory gene products (T antigens) as highly conserved, and two of these regions correspond to binding sites for host regulatory proteins (p53, the retinoblastoma gene product p105, and the related protein p107). The p53 site overlaps with a conserved ATPase domain and the retinoblastoma site corresponds to conserved region 1 of E1A protein of adenovirus type 5. We examined the local conservation of these binding sequences and show that the conserved retinoblastoma binding domain is characteristic and inclusive of the entire polyomavirus family, but the conserved p53-like binding domain is characteristic and inclusive of three entire families of small DNA viruses: polyomaviruses, papillomaviruses, and parvoviruses. The evolution of small-DNA-virus families may thus be tightly linked to host evolution and speciation by interaction with a subset of host regulatory proteins.

Amino Acid Sequence↗

Proteins specifically binding to the 3' untranslated region of hepatitis A virus RNA in persistently infected cells.

Establishment of persistency is the common result of hepatitis A virus (HAV) infection in most HAV/cell culture systems. Previous studies provided evidence that shortly before or concomitantly with establishment of persistent infections synthesis of viral RNA is down-regulated. This may be an effect of regulating factors. Using RNA/protein binding assays it was shown that, at the critical time during virus replication, proteins accumulate which interact specifically with a distinct nucleotide sequence (HPE) within the 3' non-coding region of the HAV genome and/or (HME) within the 5' terminal region of the HAV antigenome. The sequences consist of 23 nucleotides (HPE: 5'-AAAUUUUCUUAAAAUUUCUGAGG-3'; HME: 5'-CCUCAGAAAUUUUAAGAAAAUUU-3'). A sequence with 79% similarity was found in the corresponding 3' non-coding region of poliovirus type I (Sabin) RNA. The latter sequence was shown to bind proteins from HAV infected cells but comparable proteins were absent in cells infected poliovirus.

Base Sequence↗

Antigenic shift of visna virus in persistently infected sheep.

Visna viruses isolated from persistently infected sheep were antigenically distinct from the plaque-purified virus used for inoculation. The selection of antigenic variants under antibody pressure, thought to occur in vivo, was reproduced in sheep cell cultures inoculated with plaque-purified visna virus and maintained in antibody. Antigenic shift may be a mechanism for persistence of virus in slow or recurrent viral infections.

Animals↗

[Growth of mumps virus in human stomach cancer cell lines. I. Establishment of persistent infections (author's transl)].

Human stomach cancer cells (MKN, KATO cells) were infected with Urabe strain and wild type of mumps virus at an input multiplicity of 0.01. Both Urabe strains and wild type of mumps virus propagated rapidly in both cells and more than 10(7) p.f.u./ml of infectious virus was released. Moreover, all cultures were led to the establishment of persistent infection. These persistently infected cells were maintained under the absence of anti-serum. In all of the cultures, mumps viral antigens were detected in almost all of the cells and 10(5) - 10(7) p.f.u./ml of infectious virus was constantly released. Furthermore, interferon was not detected in the culture fluid and carried viruses had similar plaquing efficiencies at both 33 degrees C and 39 degrees C.

Antigens, Viral↗

Persistent infection of rabies virus (HEP-Flury strain) in human neuroblastoma cells capable of producing interferon.

Apparent interferon-mediated persistent infection of rabies virus (HEP-Flury strain) was established in a human neuroblastoma SYM-I (clone K-104) cell line, which had the ability to produce interferon. This infection produced variable but small amounts of progeny virus and interferon (up to 100 IU/ml), and resisted superinfection with vesicular stomatitis virus (VSV) and Sindbis virus as well as homologous rabies virus. The treatment of this infection with anti-interferon antibody stimulated virus replication and extensive c.p.e. However, some cells survived and grew rapidly without any sign of c.p.e. These produced increased amounts (100 to 1000 times) of infectious and DI particles in the presence of anti-interferon antibody, becoming susceptible to superinfection with VSV but remaining resistant to the original rabies virus. Small plaque mutants appeared and replaced the original virus during the long-term cultivation of the persistent infection. Several mutants tested were all identified as Sdi (DI-resistant) mutants, suggesting that the persisting viruses were endowed by the Sdi mutation with a selective advantage over the original virus even in interferon-mediated persistent infections.

Animals↗

A comparative study of tick-borne encephalitis virus RNA synthesis in acutely and persistently infected cells.

Rate zonal and buoyant density gradient centrifugation did not reveal any difference between tick-borne encephalitis virus virions released from acutely or persistently infected cells. All three RNA species characteristic for flavivirus replication were found both in acutely or persistently infected cells, but increased levels of intracellular 42S RNA polyadenylation was observed in persistently infected cells.

Animals↗

"Self" and "nonself" manipulation of interferon defense during persistent infection: bovine viral diarrhea virus resists alpha/beta interferon without blocking antiviral activity against unrelated viruses replicating in its host cells.

Bovine viral diarrhea virus (BVDV), together with Classical swine fever virus (CSFV) and Border disease virus (BDV) of sheep, belongs to the genus Pestivirus of the Flaviviridae. BVDV is either cytopathic (cp) or noncytopathic (ncp), as defined by its effect on cultured cells. Infection of pregnant animals with the ncp biotype may lead to the birth of persistently infected calves that are immunotolerant to the infecting viral strain. In addition to evading the adaptive immune system, BVDV evades key mechanisms of innate immunity. Previously, we showed that ncp BVDV inhibits the induction of apoptosis and alpha/beta interferon (IFN-alpha/beta) synthesis by double-stranded RNA (dsRNA). Here, we report that (i) both ncp and cp BVDV block the induction by dsRNA of the Mx protein (which can also be induced in the absence of IFN signaling); (ii) neither biotype blocks the activity of IFN; and (iii) once infection is established, BVDV is largely resistant to the activity of IFN-alpha/beta but (iv) does not interfere with the establishment of an antiviral state induced by IFN-alpha/beta against unrelated viruses. The results of our study suggest that, in persistent infection, BVDV is able to evade a central element of innate immunity directed against itself without generally compromising its activity against unrelated viruses ("nonself") that may replicate in cells infected with ncp BVDV. This highly selective "self" and "nonself" model of evasion of the interferon defense system may be a key element in the success of persistent infection in addition to immunotolerance initiated by the early time point of fetal infection.

Animals↗

Flow cytometric detection of bovine viral diarrhea virus in peripheral blood leukocytes of persistently infected cattle.

Flow cytometry was investigated for detection of bovine viral diarrhea virus (BVDV) in peripheral blood mononuclear leukocytes of persistently infected cattle. The mononuclear leukocytes were purified by sedimentation in a gradient of Ficoll-Paque, fixed, permeabilized, and then labelled by indirect immunofluorescence using biotinylated immunoglobulins from a porcine antiserum to BVDV. Flow cytometric analysis of blood samples obtained from persistently infected cattle revealed virus in 3.0-21.0% (mean +/- SD, 11.2% +/- 6.4%) of the mononuclear leukocytes. Fluorescent cells were not observed in controls. Flow cytometric detection of BVDV in blood cells of persistently infected bovines is a rapid and objective technique which does not require cell culture facilities.

Animals↗

Measles virus gene expression in lytic and persistent infections of a human lymphoblastoid cell line.

MOMP1 is a measles virus (MV) long-term steady-state persistently infected culture of the human T lymphoblastoid cell line MOLT4. The analysis of MV gene expression revealed that in MOMP1 cells, the major MV proteins, haemagglutinin (H), phosphoprotein (P), nucleoprotein, fusion (F) and matrix (M), are present and the fusion precursor (F0) is cleaved into F2 and F1 peptides. H and F2 proteins are glycosylated in both lytic and persistent MOLT4 infections. All major proteins are underexpressed in the persistently infected cultures in comparison to the lytically infected cells. However a relatively greater reduction was observed for H, M and P proteins. Pulse-chase labelling experiments indicated that this underexpression of H, M and P proteins was not due to selective degradation of these proteins in the persistent infection (p.i.). The relative amounts of the major monocistronic and dicistronic mRNAs for MV proteins, with the exception of P mRNA, was not altered in the p.i. with respect to lytically infected MOLT4 cells, suggesting that the defective expression of H and M proteins was not due to a restriction in the transcription of their mRNAs. In contrast, the mRNA for P protein, the most abundant MV mRNA in these lytically infected T lymphoid cells, is markedly underexpressed in the homologous p.i. Thus the underexpression of P protein in p.i. could be due to a decreased availability of P mRNA. This unbalanced underexpression of MV proteins may impair the cell fusion and c.p.e. of MV and facilitate viral persistence in human lymphoid cells.

Gene Expression Regulation, Viral↗

Border disease in sheep caused by transmission of virus from cattle persistently infected with bovine virus diarrhoea virus.

Two outbreaks of border disease occurred on farms with sheep flocks and breeding cattle. The infection of the pregnant sheep was probably caused by transmission of virus from calves persistently infected with non-cytopathic bovine virus diarrhoea virus (BVDV) which were kept in close confinement with the ewes during mid-pregnancy. Border disease was also induced experimentally in eight lambs by exposing their dams at 38 to 78 days of gestation to a heifer persistently infected with BVDV. Both the natural and the experimental infections were characterised by typical signs such as 'hairy-shaker' lambs and high lamb mortality. The diagnosis was confirmed by virus isolations from live-born lambs, seroconversion and pathology. The study supports the assertion that cattle persistently infected with BVDV and in close contact with pregnant sheep, are an important source of strains of virus capable of causing border disease.

Animals↗

Demonstration of duck hepatitis B virus in bile duct epithelial cells: implications for pathogenesis and persistent infection.

Hepatitis B virus (HBV) has been demonstrated in bile duct epithelial cells (BDEC) during chronic infection. The persistence of virus in BDEC may play an important role in disease pathogenesis, and may be at least partly responsible for the relapse phenomenon observed in antiviral treatments using nucleoside analogues. The aims of this study were to examine the morphological changes within the liver in the duck hepatitis B model following bile duct ligation (BDL), and to assess the effect of biliary hyperplasia upon viral DNA and proteins. Seven-day-old ducklings, congenitally infected with the duck hepatitis B virus (DHBV), were subject to BDL. The pathological and virological changes were then followed at 5, 10, 15, and 20 days after ligation. All results were compared with age-matched unligated control birds congenitally infected with DHBV. To assess the early morphological changes, additional animals were sacrificed at 1, 2, 3, and 4 days post-BDL. The proportion of DHBV-infected BDEC, was examined by immunohistochemistry and in situ hybridization. BDL induced rapid biliary hyperplasia, with a doubling time for BDEC of 1.3 days. The proliferated BDEC displayed immunohistochemical features identical to resting BDEC. More than 50% of BDEC in unligated controls, and more than 46% of proliferated BDEC in ligated animals were positive for DHBV DNA and structural proteins. The intensity of immunohistochemical staining and in situ hybridization signal in the BDEC was consistently greater than that of the hepatocytes, both before and after BDL. BDL induces biliary hyperplasia in the duck model, and BDEC division does not reduce the viral burden in infected cells.

Animals↗

Pregnancy rate of heifers bred by an immunotolerant bull persistently infected with bovine viral diarrhoea virus.

Twenty four maiden heifers were bred by natural route by a specific immunotolerant bull, that was persistently infected with Bovine Viral Diarrhoea virus (BVD virus). The quality of the bull's semen was normal. Twelve heifers became pregnant in the first oestrus cycle and the remaining twelve in the second oestrus cycle. This leads to the conclusion that such persistently infected bulls may have good fertilisation results. Nevertheless, it is felt that bulls persistently infected with the BVD virus must be excluded from artificial insemination centres because of the risk of introducing BVD virus in a herd by the semen.

Animals↗

Pneumoviruses: the cell surface of lytically and persistently infected cells.

Human embryonic lung (MRC-5), feline embryo (FEA), mink lung (Mv1Lu) and monkey kidney (BSC-1) cells infected by respiratory syncytial virus showed characteristic morphological changes when viewed by scanning electron microscopy. The surfaces of respiratory syncytial virus-infected cells developed a profusion of slender filaments after 48 h incubation at 31 degrees C. Similar changes in surface morphology were observed in BSC-1 cells infected by murine pneumonia virus. Filament production therefore appears to be a common property of pneumo-viruses. Filaments were not observed in cells infected with either syncytial and non-syncytial herpes simplex virus, the cytocidal vesicular stomatitis and Batai (Bunyaviridae) viruses, or the focus-inducing rabbit fibroma virus. Filament production was not observed in cells infected with ts mutants of respiratory syncytial (RS) virus during incubation at the restrictive temperature, or in a persistently infected culture of BSC-1 cells at 37 degrees C. The persistently infected cells (the RS ts 1/BSC-1 line) had some of the characteristics of cells transformed by oncogenic viruses, namely ability to overlap adjacent cells and agglutination by a low concentration of concanavalin A. The pseudo-transformed phenotype was temperature-dependent, however, and suppressed by raising the temperature of incubation to 39 degrees C. The presence of virus antigen at the cell surface was similarly temperature-dependent in these cells, diminished at high temperature (39 degrees C) and enhanced at low temperature (31 degrees C), suggesting that the changes in the host cell were the result of insertion of virus protein into the cell membrane. Evidently, persistent infection by a cytoplasmic virus can produce alterations in the host cell usually associated with transformation by nuclear viruses.

Animals↗