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Persistent coinfection of T lymphocytes with HTLV-II and HIV and the role of syncytium formation in HIV-induced cytopathic effect.

We previously demonstrated a high permissiveness of HTLV-II-transformed T lymphocytes (C3) to human immunodeficiency virus (HIV) infection in vitro, and that this infection results in the lysis of cells (D.C. Montefiori and W.M. Mitchell (1986) Virology 155, 726-731). We now show that a small percentage of HIV-infected C3 cells resist cell lysis, grow continuously in culture, and express antigens of both viruses. High levels of reverse transcriptase activity found in the culture fluid of these coinfected cells were associated with the presence of fully infectious HIV and an absence of detectable infectious HTLV-II. Virus production in C3 cells coinfected with the HIV isolate HTLV-III was approximately threefold greater than in C3 cells coinfected with the HIV isolate LAV, a result which suggests that HIV genomic diversity may give rise to differences in replicative capacities. Lysis resistance was found to be a cellular-determined function in that HIV produced in cultures of C3/HTLV-III cells retained the capacity to elicit a lytic response upon repeated infection. Small syncytia (less than five nuclei) were rarely observed in cultures of C3 and nonlytic C3/HIV cells, whereas large syncytia (more than five nuclei) were in abundance during the lytic phase of coinfection, a result which supports a role for syncytium formation in the mechanism of HIV-induced cytopathic effects. The results of these studies further demonstrate that there exists a lack of viral interference by HTLV-II infection, and that HTLV-II-transformed lymphocytes could act as a chronic reservoir for HIV in vivo.

Antigens, Viral↗

RNA interference--small RNAs effectively fight viral hepatitis.

RNA interference (RNAi) is the process of sequence-specific gene silencing, initiated by double-stranded RNA that is homologous in sequence to the target gene. This unique phenomenon has been extensively investigated during the last few years not only in the context of its mechanism and its possible role in the regulation of gene expression and cell function, but also as a potential powerful tool for gene therapy. Targeting essential viral genes or oncogenic alleles are only some of the possible applications of RNAi in the field of gene-directed therapy. This review covers the potential use of RNAi against hepatitis B and hepatitis C viruses, the main pathogens causing chronic liver disease. The major milestones along the discovery of RNAi will also be covered.

Animals↗

Role of interferon in six cell lines persistently infected with rubella virus.

Presistent infections with rubella virus were established in baby hamster kidney, BSC-1, HeLa, RK-13, rabbit embryo chondrocyte, and Vero cell lines. All of the cultures except Vero continually produced rubella virus and interferon to which the virus was sensitive. Concurrently, only the Vero cells did not display interference against superinfection with Newcastle disease and vesicular stomatitis viruses. The addition of 1,000 U of exogenous interferon to the cultures cured only the rabbit embryo and Vero cells of the persistent infection. That the interferon is not required for the initiation and maintenance of rubella viral persistence in vitro is implied by the following. (1) Vero cells were persistently infected in the absence of interferon; (2) actinomycin D or cortisone inhibited interferon synthesis but not the rubella viral infection; and (3) cells continuously cultured in the presence of cortisone maintained a viral persistence without interferon synthesis. On the other hand, interferon seems to be responsible for the viral interference; Vero cells infected with rubella virus and cultures inoculated with rubella virus in the presence of actinomycin D or cortisone did not display interference against Newcastle disease or vesicular stomatitis viruses.

Amnion↗

Inhibitory effects of cytomegalovirus proteins US2 and US11 point to contributions from direct priming and cross-priming in induction of vaccinia virus-specific CD8(+) T cells.

The extent to which naive CD8(+) CTLs (T(CD8)(+)) are primed by APCs presenting endogenous Ags (direct priming) or Ags acquired from other infected cells (cross-priming) is a critical topic in basic and applied immunology. To examine the contribution of direct priming in the induction of VV-specific T(CD8)(+), we generated recombinant vaccinia viruses that express human CMV proteins (US2 and US11) that induce the destruction of newly synthesized MHC class I molecules. Expression of US2 or US11 was associated with a 24-63% decrease in numbers of primary or secondary VV-specific T(CD8)(+) responding to i.p. infection. Using HPLC-isolated peptides from VV-infected cells, we show that US2 and US11 selectively inhibit T(CD8)(+) responses to a subset of immunogenic VV determinants. Moreover, VV-US2 and lysates from VV-infected histoincompatible cells elicit T(CD8)(+) specific for a similar subset of VV determinants. These findings indicate that US2 and US11 can function in vivo to interfere with the activation of virus-specific T(CD8)(+). Furthermore, they suggest that 1) both cross-priming and direct priming contribute significantly to the generation of VV-specific T(CD8)(+), 2) the sets of immunogenic vaccinia virus determinants generated by cross-priming and direct priming are not completely overlapping, and 3) cross-priming overrides the effects of cis-acting viral interference with the class I Ag presentation pathway.

Animals↗

Host genes conferring resistance to a central nervous system disease induced by a polytropic recombinant Friend murine retrovirus.

Infection of certain strains of mice with the ecotropic Friend murine leukemia virus results in the generation of recombinant polytropic mink cell focus-inducing viruses and the development of erythroleukemia. We isolated a Friend mink cell focus-inducing virus (F-MCF-98D) from a Friend murine leukemia virus-infected BALB/c mouse which caused primarily a neurological disease as well as a low incidence of leukemia in susceptible IRW mice. Through genetic studies with the resistant C57BL/10 strain, we identified two genes which correlated with restricted viral replication and resistance to the development of disease caused by F-MCF-98D. One gene correlated with the expression of an endogenous gp70 linked to the Rmcf gene and might act by viral interference. The mechanism of action of the second gene was less clear, but it appeared to be associated with development of an antiviral antibody response.

Animals↗

Immunogenicity and safety of two live-attenuated tetravalent dengue vaccine formulations in healthy Australian adults.

We conducted a Phase 1b study to evaluate the immunogenicity and safety of two live attenuated tetravalent dengue vaccines in healthy adult volunteers. After one injection, all subjects reported systemic reactions consistent with a mild dengue-like syndrome. Seven volunteers developed dengue 3 viraemia after vaccination. All subjects developed a neutralizing antibody response against serotype 3 with partial response against other serotypes. The trial was stopped early (after 10 subjects enrolled) due to formulation issues, which were related to the dengue 3 vaccine component. Managing viral interference and balancing attenuation to produce acceptable tetravalent immunogenicity with minimal reactogenicity may be a recurring problem for future multivalent live vaccines.

Adult↗

Cytokines restore MHC class I complex formation and control antigen presentation in human cytomegalovirus-infected cells.

CD8+ cytotoxic T cell (CTL) clones with specificity for defined minor and major histocompatibility (H) antigens were used to monitor antigen presentation in human cytomegalovirus (HCMV)-infected skin fibroblasts. At the immediate early stage of virus replication antigen presentation was intact, but was abolished during the early and late phase. Lack of CTL recognition was not selective for certain antigens but was associated with decreased steady state levels of nascent MHC class I complexes and unassembled MHC class I heavy chains, whereas free beta 2-microglobulin remained abundant. HCMV also affected the stability of both immature endoglycosidase H (Endo H)-sensitive and mature Endo H-resistant MHC class I molecules, suggesting that the virus interferes with antigen presentation at more than one step during maturation of the MHC class I complex. The action of interferon-gamma (IFN-gamma) and tumour necrosis factor-alpha (TNF-alpha) lifted the block of MHC class I complex formation by stimulating synthesis, assembly and stability of MHC class I molecules. This resulted in restored antigen presentation provided that cells were exposed to the factors before HCMV infection. Because few MHC molecules suffice for CTL recognition these cytokines compensated for the negative viral effect on the antigen presentation function. Nevertheless, the viral interference with MHC class I complex formation was still active. The data imply that specific cytokines limit the immune evasion potential of HCMV from CD8+ T lymphocyte control.

Antigen Presentation↗

Role of hepatitis C virus in dual and triple hepatitis virus infection.

Hepatitis B virus (HBV), hepatitis C virus (HCV), and hepatitis delta virus (HDV) share same transmission routes, thus dual or triple infection may occur and even persist in the same patients. A significant amount of literature has accumulated since the advent of HCV assays. It is pertinent to review and evaluate the clinical and virological significance of HCV in multiple hepatotropic viral infection. The reported series on seroprevalence of HCV indicate that HCV is found in more than 10% of HBV- or HDV-infected patients worldwide. Of the patients with dual or triple infection involving HCV, those having coreplication of viruses tend to have severe and progressive liver disease that is resistant to interferon therapy, in contrast with patients having a single virus infection. Paradoxically, dual or triple hepatitis virus infections are associated with viral interference. In particular, HCV exerts a suppressive effect on HBV and HDV and may enhance seroclearance of HBV antigens or even usurp the role of preexisting virus as the agent for continuing hepatitis. Although HBV and HDV may also suppress HCV, it appears to be less effective. These findings clearly suggest the necessity of monitoring patients with HBV or HDV infections. In view of complex dynamism of viral interaction in multiple hepatotropic virus infection, the importance of HCV assay in the clinical studies can not be overemphasized. The basic mechanisms that regulate the viral interactions, in particular the impact of HCV in dual or triple virus infections, remain to be investigated.

Antiviral Agents↗

Selection of feline leukemia virus envelope proteins from a library by functional association with a murine leukemia virus envelope.

Libraries of feline leukemia virus subgroup A (FeLV-A)-derived envelope (Env) proteins with random peptides incorporated into the cell-targeting region were screened for productive gene delivery to the PC-3 human prostate cell line. In order to increase the efficiency of recovering and testing functional clones, the screen was performed in the presence of a replication-competent 4070A Env-expressing virus under conditions of viral interference. The Env proteins resulting from this library screen were able to mediate gene delivery to 4070A-infected human PC-3, DU145 prostate and TE671 rhabdomyosarcoma cells in the presence, but not absence, of 4070A helper virus. FeLV-A, FeLV-B and Moloney murine leukemia virus (Mo-MuLV) Env proteins were unable to substitute for 4070A Env. Flow cytometry and Western blot analyses indicated increased cell-surface expression and virion incorporation of library-derived Env proteins in the presence of 4070A Env. Interference assays on cells infected with both 4070A and FeLV-B are consistent with the combination of library-derived and 4070A Env proteins utilizing the Pit1 receptor.

Animals↗

Atypical cilia in the bronchiolar epithelium of pigs experimentally infected with hog cholera virus.

To study the effect of hog cholera virus on the epithelial cells of the bronchiolar mucosa, 12 pigs were inoculated with a highly virulent strain. Immunohistochemical and ultrastructural examination of the ciliated epithelial cells demonstrated an increase in the number of atypical cilia. The latter showed alterations in the microtubular pattern, possibly resulting from viral interference with the normal metabolism of the epithelial cells.

Animals↗

Regulation of gene expression in lymphocytes and antigen-presenting cells by measles virus: consequences for immunomodulation.

Acute measles, a well known disease usually contracted during early childhood, is still the major cause of vaccine-preventable infant deaths worldwide. There are about 40 million cases of acute measles per year, with more than one million cases of infant death as a consequence of measles. These are mainly due to opportunistic infections which develop on the basis of a generalized suppression of the cellular immunity in the course and after the acute disease. Lymphopenia, a general proliferative unresponsiveness of T cells ex vivo and cytokine imbalance, are considered as major hallmarks of measles virus (MV) induced immunosuppression. These findings are compatible with modulation of T cell responses by viral interference with professional antigen-presenting cells such as dendritic cells or direct effects on T cells by suppression of survival or proliferation signals. In vitro, MV interaction causes a variety of effects on dendritic cells, including maturation and loss of their allostimulatory functions. Whether there is an additional impact on the quality of T cell responses is unknown as yet. It is clear, however, that surface interaction of lymphocytes with the MV glycoprotein complex is necessary and sufficient to induce a state of proliferative unresponsiveness in T cells. This surface contact mediated signal essentially interferes with the propagation of the interleukin 2 receptor signal by blocking the activation of the protein kinase B, also called Akt kinase, both in vitro and after experimental infection.

Animals↗

Structural genes, not the LTRs, are the primary determinants of reticuloendotheliosis virus A-induced runting and bursal atrophy.

Reticuloendotheliosis virus strain A (REV-A) and chicken syncytial virus (CSV), two replication competent avian retroviruses, differ in the extent to which they induce a runting syndrome that includes anemia, lymphoid organ atrophy, and reduced body size. We have isolated an infectious clone of CSV, the less pathogenic of the two viruses, and compared it to REV-A. Partial DNA sequence analysis suggests that it differs from REV-A by no more than 1 to 2% at the nucleotide level. Analysis of viral interference indicates that these two viruses use the same cell receptor for infection of both fibroblasts and hematopoietic cells, DNA sequence of the CSV and REV-A long terminal repeats (LTRs) reveals that these structures differ principally by two small insertions (5 and 19 bp) present in the U3 region of REV-A. The larger of these may encode enhancer sequences that have been reported to influence transcription rates in vitro. Measurement of steady-state levels of viral RNA in infected cells, however, as well as circulating virus in infected chicks indicates that the different pathogenic responses elicited by these two viruses are not due to large differences in viral transcription or replication. Chimeric viruses were constructed in which the LTRs from one virus were used to express the structural genes of the second virus. Infection of 1-day-old chicks by parental virus as well as the reciprocal chimeric constructs demonstrated that the ability to induce both runting and bursal atrophy segregated with the structural genes of REV-A. Infection of birds with additional chimeric viruses in which the env genes of REV-A and CSV were exchanged indicated that the pathogenic response resulting from REV-A infection was due to at least two regions of the viral genome encoding structural genes.

Anemia↗

Variable infection of Vero cells and homologous interference after co-cultivation with HeLa cells with persistent defective infection by Edmonston measles virus.

The HeLa subline K11A-HG-1 (line of HeLa cells persistently infected with Edomonston measles virus but containing little or no transmissible infectious virus) was co-cultivated with Vero cells. Focal syncytia were formed containing measles antigen and accumulations of nucleocapsid-like structures with no detectable production of transmissible infectious virus or positive hemadsorption. The infection aborted between 2 and 3 weeks after preparation of co-cultures. Upon subculture of co-cultures, occasionally complete infections (progressive syncytial degeneration, hemadsorption, and production of transmissible infectious virus) appeared. A linear dose response curve for nontransmissible infection was obtained along with evidence that measles antigen had to be present on the surface of K11A-HG-1 cells for their infectivity for Vero cells. The basis for initiation of Vero cell infection by living K11A-HG-1 cells, but not by nonviable intact K11A-HG-1 cells killed by a virus-preserving technique, nor by disrupted K11A-HG-1 cells, is, at present, a matter of speculation. However, several lines of evidence were obtained which suggested that subsequent development of delayed variable transmissible Vero cell infection occurred because of a type of viral interference, including the presence of an inhibitor in K11A-HG-1 cultures, the bulk of which was cell-associated.

Antigens, Surface↗

Subversion of effector CD8+ T cell differentiation in acute hepatitis C virus infection: the role of the virus.

In a companion study, we showed a dichotomy between the expansion of central memory (CCR7(+)) hepatitis C virus (HCV)-specific CTL and the incomplete memory effector differentiation in patients with acute HCV infection. Indeed, effector cells were unable to perform immediate functions, despite expressing the tissue-homing phenotype of effector memory cells (CCR7(-); semi-effectors). However, since they promptly differentiated into full-effectors upon IL-2 contact, we suggested that the inhibitory effect by environmental (possibly viral) factors on IL-2 production may have a pivotal role in generating the large population of semi-effector CCR7(-)/IFN-gamma(-) CTL. In accord with this view, we report here strong evidence in support of circulating HCVcore protein (HCVcore) playing a central role in inhibiting effector CTL differentiation, but not memory CTL expansion. The regulatory HCVcore effect is related to inhibition of the signal transduction pathway instrumental for IL-2 production, supporting the evidence that IL-2 was capable both of pushing semi-effector CTL to complete their effector cell program and of restoring the HCVcore-dependent inhibitory effect. Therefore, the strength of CTL activation is dependent on the balance between the threshold of stimulatory signals and the viral interference capacities provided during priming.

Acute Disease↗

PKA/PrKX activity is a modulator of AAV/adenovirus interaction.

Interference between viruses occurs when infection by one virus results in the inhibition of replication of another virus. Adeno-associated virus (AAV2) is a human parvovirus with the unique characteristics of a dependence upon a helper virus for a productive infection and the ability to interfere with the replication of the helper virus. Previously, we demonstrated that AAV2 Rep78 and Rep52 interact and inhibit cAMP-dependent protein kinase A (PKA) and its novel homolog PrKX. We hypothesized that modulation of PKA activity by AAV2 may be responsible for inhibition of helper virus replication. In this study we demonstrate that adenovirus replication is sensitive to PKA activity and that AAV2 Rep78/Rep52 proteins contain an inhibitory domain similar to that of the heat-stable PKA inhibitor. This domain, while not directly necessary for AAV2 replication and packaging, is necessary to preserve AAV2 replication fitness during an Ad co-infection. Furthermore, a mutant AAV2 virus lacking this region fails to inhibit adenovirus replication. Thus, inhibition of PKA activity by AAV2 constitutes a novel form of viral interference.

Amino Acid Sequence↗

High prevalence of hepatitis delta virus infection detectable by enzyme immunoassay among apparently healthy individuals in Mongolia.

A previous study revealed a high prevalence of hepatitis B surface antigen (HBsAg) and hepatitis delta virus (HDV) RNA among 249 apparently healthy individuals (mean+/-standard deviation age, 48.4+/-13.9 years; 126 males and 123 females) in Ulaanbaatar, Mongolia. To investigate further the prevalence of HDV infection there, the same serum samples obtained from the cohort were tested for the presence of immunoglobulin G (IgG) class antibody to HDV (anti-HDV) by a newly developed enzyme-linked immunosorbent assay using recombinant hepatitis delta antigen protein expressed in the pupae of silkworm as the antigen probe. Anti-HDV was detected in 42 persons (16.9%), among whom 22 (52.4%) were positive for HBsAg and 20 (47.6%) had detectable HDV RNA. Among 170 persons with anti-HBc in the absence of HBsAg, 20 (11.8%) tested positive for anti-HDV, and 1 of the 20 subjects was positive for HDV RNA. Of note, none of 55 anti-HBc-negative persons had anti-HDV, supporting the specificity of the anti-HDV assay. The optical density (OD) value of anti-HDV was significantly higher among HDV RNA-positive subjects (n=21) than among HDV RNA-negative subjects (n=21) (2.513+/-0.514 vs. 0.836+/-0.550, P<0.0001). The present study confirmed the extremely high prevalence of HDV infection in Mongolia, and identified a person who was positive for both anti-HDV and HDV RNA despite negativity for HBsAg and HBV DNA probably due to viral interference. The anti-HDV assay may be useful for further epidemiological studies on HDV infection in larger cohorts in urban and rural areas of Mongolia, where elucidation of the transmission route of HDV is required urgently.

Adult↗

Synthesis and processing of viral glycoproteins in two nonconditional mutants of Rous sarcoma virus.

We have studied the pattern of glycoprotein synthesis in two nonconditional mutants of Rous sarcoma virus. One mutant, SE33, produces no viral particles but synthesizes Pr92env, which is cleaved intracellularly to mature glycoproteins. The second mutant, SE521, encodes a gPr92env which is not cleaved to gp85 or gp37 and therefore produces virions with the phenotype of Bryan RSV(-) or NY8. Neither of these mutants have detectable genomic deletions. The study of these mutants has led to the following conclusions. (i) In the absence of particle production or p15 synthesis, gPr92env can be cleaved to the mature glycoprotein which is found on the cell surface. (ii) Noncleaved gPr92env is not packaged into virions but is found on the cell surface. (iii) gPr92env alone can account for subgroup specific viral interference. (iv) gPr92env is probably transported to the cell surface before additional glycosylation or cleavage to mature virion glycoprotein. The nonprocessed precursor of SE521 appears to be glycosylated normally, and thus far we have been unable to determine the basis for the defect in this mutant.

Avian Sarcoma Viruses↗

Impaired lymphoid chemokine-mediated migration due to a block on the chemokine receptor switch in human cytomegalovirus-infected dendritic cells.

Dendritic cell (DC) migration from the site of infection to the site of T-cell priming is a crucial event in the generation of antiviral T-cell responses. Here we present to our knowledge the first functional evidence that human cytomegalovirus (HCMV) blocks the migration of infected monocyte-derived DCs toward lymphoid chemokines CCL19 and CCL21. DC migration is blocked by viral impairment of the chemokine receptor switch at the level of the expression of CCR7 molecules. The inhibition occurs with immediate-early-early kinetics, and viral interference with NF-kappaB signaling is likely to be at least partially responsible for the lack of CCR7 expression. DCs which migrate from the infected cultures are HCMV antigen negative, and consequently they do not stimulate HCMV-specific CD8(+) T cells, while CD4(+)-T-cell activation is not impaired. Although CD8(+) T cells can also be activated by alternative antigen presentation mechanisms, the spatial segregation of naive T cells and infected DCs seems a potent mechanism of delaying the generation of primary CD8(+)-T-cell responses and aiding early viral spread.

Chemokine CCL19↗