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Isolation of a heterogeneous population of temperature-sensitive mutants of measles virus from persistently infected human lymphoblastoid cell lines.

Two human lymphoblastoid B-cell lines, WI-L2 and 8866, were infected with the Edmonston strain of measles virus at a multiplicity of infection of 10(-6), and stable persistent infections were established. By immunofluorescence and electron microscopy, the vast majority of cells from both cell lines were expressing viral antigens and releasing virion-like particles. However, very little infectious virus could be detected at 37 degrees C, either by an infectious centers assay or by titration of supernates from persistently infected cultures. When cultures were shifted to 31 degrees C, the cells released a population of virus that was temperature-sensitive. Clonal analysis of supernatant virus at 31 degrees C revealed a highly heterogeneous population of temperature-sensitive mutants, differing in plating efficiency ratios, thermolability, and antigen production at the nonpermissive temperature. Factors such as interferon, defective interfering particles, and extracellular virus do not appear to be important in maintaining the persistent carrier state. These studies have important implications for persistent infections of lymphoid cells in vivo, and the slow neurological diseases associated with measles, subacute sclerosing panencephalitis, and multiple sclerosis.

Antibodies, Viral↗

Two amino acid substitutions in the type 3 poliovirus capsid contribute to the establishment of persistent infection in HEp-2c cells by modifying virus-receptor interactions.

After 2.5 months of persistent infection in human neuroblastoma cells by the type 3 poliovirus (PV3) wild-type Leon strain, a mutant (PVpi), L2-2, capable of establishing a persistent infection in nonneural HEp-2c cells was isolated. Sequence analysis of the viral capsid protein genes revealed the presence of seven missense mutations, three of which were also present in a second PVpi, suggesting that they could be important determinants of the persistent phenotype. When the three mutations were introduced into the lytic Leon strain separately, in pairs or all together, all but one of the viruses was capable of establishing a persistent infection. However, aside from the triple mutant, only one mutant virus, bearing a Leu at position VP213 in the capsid interior and an Asn at position VP1290 on the capsid surface, was capable of establishing persistent infections in more than 30% of the cultures. When present together, these two determinants affect the early steps of the virus cycle including cell binding and the receptor-mediated conformational changes believed to be necessary for viral penetration and uncoating. In fact, this persistent double mutant appears to undergo a novel capsid transition when in contact with the human PV receptor, altering from the native virion which sediments at 160S to a form which sediments at about 147S. We propose that this modification could be the mechanism by which PV3 is able to establish persistent infections in HEp-2c cell cultures.

Amino Acid Substitution↗

Ultrastructural localization of viral antigens in the CNS of mice persistently infected with lymphocytic choriomeningitis virus (LCMV).

Lymphocytic choriomeningitis virus (LCMV) produces a persistent infection of the nervous system in susceptible mice. To map the localization of viral antigens in the central nervous system (CNS), the authors studied, by means of ultrastructural immune peroxidase techniques, 4-6-month-old mice persistently infected with LCMV following an intracerebral inoculation at birth. The greatest number of infected neurons was observed in the cortex, particularly of the limbic system, and certain nuclei of the hypothalamus. In the cerebellum, Purkinje cells selectively expressed viral antigens. Moderate numbers of infected neurons were found in the anterior horns of the spinal cord, basal ganglia, and thalamus. The immunoperoxidase technique using monoclonal antibodies showed that persistently infected neurons primarily expressed the nucleocapsid protein antigens of LCMV. Glycopeptide antigens were minimally expressed. Electron-microscopic examination of selected individual infected neurons showed viral antigens exclusively associated with ribosomes. No staining was seen on cell surfaces. Glutaraldehyde-fixed CNS tissue studied by electron microscopy did not reveal morphologic abnormalities or mature viral particles. This study demonstrates that LCMV persistently infects specific neuronal populations. Infected neurons express viral antigens in association with host ribosomes and show no significant morphologic alterations.

Animals↗

Characterization and E protein expression of mutant strains during persistent infection of KN73 cells with Japanese encephalitis virus.

OBJECTIVE: To study the character of mutants originating from Japanese encephalitis viruses and the relationship between the characterization of mutant strains and E protein expression. METHODS: Persistent infection was established with standard strains of Japanese encephalitis viruse, known as parental viruse, in a human hepatoma cell line, KN73. Cells were subcultured weekly using trypsinization techniques. Cell-associated viruses of persistently infected cells were collected by a freeze and thaw method. Virus titers were examined by plaque method using baby hamster kidney (BHK) cells. Indirect immunofluorescence assays were used to examine E and NS3 protein antigens. Western blot analysis was used to test expression of E and NS3 proteins. RESULTS: In the early phase (24 - 36 h) post-infection, virus titer in culture fluid from KN73 cells infected with parental viruses were 10(6) PFU/ml. They were 10(3 - 4) PFU/ml in the late phase (3 years) post-infection. The titer of cell-associated viruse was 10(2 - 3) PFU/ml. A virus super-infection assay found that virus titers in culture fluid from persistently infected KN73 cells acutely super- infected with parental viruses were much lower than that of culture fluids in acutely infected normal KN73 at the same phase. Indirect immunoflurescence assay revealed that the quantity of viral antigens in persistently infected KN73 cells was lower than that in acutely infected KN73 cells with parental viruses. Western blot analyses indicated that the molecular weights of E and NS3 proteins were 53 kD and 73 kD, respectively. Expression of NS3 protein in persistently infected KN73 cells was stable but expression of E protein was markedly suppressed. CONCLUSIONS: The virulence and reproduction of viruses obtained from persistently infected KN73 cells, which have some features of DI viruses and were involved in persistent infection, was lower than that of parental viruses. These mutants may have be related to the decrease in E protein expression.

Carcinoma, Hepatocellular↗

Association between resistance to superinfection and patterns of surface protein labeling in mouse fibroblasts (L cells) persistently infected with Chlamydia psittaci.

When mouse fibroblasts (L cells) were persistently infected with Chlamydia psittaci strain 6BC, they became immune to superinfection because they no longer associated with exogenous C. psittaci in a way that led to ingestion and intracellular multiplication. At the same time, the persistently infected L cells also exhibited changes in surface structure as revealed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis and autoradiographic visualization of the surface-exposed plasma membrane proteins that had been labeled with 125I by lactoperoxidase-catalyzed iodination. The most prominent changes were the appearance of a highly labeled band with an apparent molecular weight of 35,000 and the generalized reduction in intensity of labeling of proteins migrating in the apparent molecular weight range of 60,000 to 100,000. Neither resistance to superinfection nor alteration in cell surface structure depended on the presence of visible chlamydial inclusions. When L cells were cured of persistent infection, either spontaneously or by treatment with chlortetracycline or rifampin, immunity to superinfection disappeared, and the patterns of surface-labeled proteins of the cured cells once again resembled the patterns of wild L cells. It was suggested that resistance to superinfection is the result of reversible changes in the structure of the putative host cell receptor for chlamydiae that are produced in some unknown way by the persistent chlamydial infection.

Animals↗

Response of cattle persistently infected with bovine virus diarrhoea virus to bovine leukosis virus.

Six cattle persistently infected with bovine virus diarrhoea virus (BVDV) and seronegative, and two control, virus negative seropositive cattle were inoculated with lymphocytes infected with bovine leukosis virus (BLV). The two controls produced a normal immune response to BLV, developing antibodies at four and five weeks after inoculation. Two of the six cattle persistently infected with BVDV developed a strong antibody response by six weeks after inoculation with BLV. Four developed a depressed response to BLV, characterised in three by a 'hooking' reaction in the immunodiffusion test which persisted in successive bleedings but was interspersed occasionally by a weak positive reaction. In one of these animals, a series of 'hooking' reactions was followed by a number of negative results. The fourth animal remained serologically negative until 16 weeks after inoculation when a 'hooking' reaction was observed followed by a series of negative results. BLV was isolated from all the cattle persistently infected with BVDV at 42 or 58 weeks after inoculation regardless of whether the serum samples gave negative, 'hooking', weak positive or positive reactions in the immunodiffusion test. BLV was consistently isolated from the nasal secretions of a steer which was BVDV negative but seropositive. The possibility of decreased immune responsiveness to BLV in animals persistently infected with BVDV should be considered when formulating regulations governing the testing of animals for freedom from BLV.

Animals↗

Preliminary characterization of a persistent infection of HeLa cells with human rhinovirus type 2.

We were able to initiate a persistent infection (PI) in HeLa cells with a temperature-sensitive (ts-) mutant of rhinovirus type 2 (TS-1), but not with the corresponding wildtype (wt) virus. The ability to initiate a PI may be related to the multiplicity of infection. Persistence was established at 37 degrees C but not at 32 degrees C and the virus isolated from the PI was no longer temperature-sensitive. Infectious virus was continually produced at low levels throughout the course of the PI and cell cultures underwent multiple episodes of partial destruction (crisis) and subsequent recovery. PI virus and the initiating virus were neutralized to the same extent by hyperimmune polyclonal TS-1 antiserum indicating that no significant change had occurred with respect to serological type. The presence of either interferon or virus-related interfering activity could not be demonstrated in the PI cultures. Superinfection experiments in cells that were 'cured' of PI virus indicated the selection of a cell population during persistence that could no longer support the growth of homologous-type virus. This effect became less pronounced upon further passage of the cured cells. When compared with the wt and ts viruses, the PI virus yielded comparable amounts of infectious virus in HeLa cells but with decreased synthesis of RNA.

HeLa Cells↗

A persistent infection of baby hamster kidney-21 cells with mumps virus and the role of temperature-sensitive variants.

A persistent infection of baby hamster kidney-21 (BHK-21) cells with mumps virus (BHKpi) was maintained for over 60 cell passages in the absence of antiserum. Viral persistence was demonstrated in the cultures by hemadsorption, immunofluorescence, multinucleate syncytia, and released mumps virus at the level of 10(2)--10(3) fluorescent focus-forming units/ml. No detectable levels of interferon were found in cultures persistently infected with mumps virus. Approximately 85--95% of the cells contained viral antigens. Nuclear fluorescence was observed in the persistently infected cells. Mumps virus from persistently infected clutures (MuVpi) was more heat-labile than wild-type mumps (MuVo) when subjected to 40 degrees C. BHKpi cells had a more rapid doubling time and a higher cloning efficiency in soft agar in comparison to BHK-21 cells. MuVpi was also found to be temperature-sensitive. The temperature-sensitivity of MuVpi was determined by the efficiency of plating at 33 degrees and 39 degrees C. MuVpi readily established a persistent infection in BHK-21 cells with less cytopathology than MuVo, and released temperature-sensitive virus.

Animals↗

Persistent infection of BHK cells with herpes simplex virus types 1 and 2 in the absence of specific anti-herpetic antibody.

Persistent infection of BHK-21 cells with 5 strains of herpes simplex virus (HSV) type 1 and a 1 strain of HSV type 2 is described. Acute infection only was obtained with two strains of type 1 and one strain of type 2. Persistent infection could not be established in HeLa and rabbit lung cells. Persistent infection of BHK cells proceeded in the absence of specific antibody. Persistently infected cells were more resistant to superinfection with homologous or heterologous HSV as compared to infection of normal BHK cells. No interferon activity was demonstrated in persistently infected cell cultures. The results of virus titration were in accordance with the demonstration of fluorescent antigen of HSV.

Animals↗

Ultrastructural and replicative features of foot-and-mouth disease virus in persistently infected BHK-21 cells.

Persistent foot-and-mouth disease (FMD) virus infection in vitro has been studied in a chronically infected cloned BHK-21 cell line. Virus growth during serial cell passages was followed by infectivity assay and immunocytochemical staining. Only a small percentage of cells (0.006-6%) was found to harbour virus during persistence. Light and electron microscopy showed the presence of cytoplasmic protuberances ("blebs") at the surface of persistently infected cells. The curing of cell cultures was achieved by passaging them in the presence of polyvalent immune serum. The absence of virus in cured cells was confirmed by infectivity assay and immunocytochemistry. This finding, together with the low percentage of infected cells in cultures confirms that persistently infected BHK-21 cells satisfy the definitions of a carrier culture. The characteristics of the in vitro system and its relevance to the study of FMD carrier state in vivo are discussed.

Animals↗

Effects of antibodies and interferon on mumps virus persistently infected L929 cells. Generation of variant viruses in the cells during incubation with monoclonal antibodies and interferon.

We studied the effect of antibodies and interferon (IFN) on L929 cells persistently infected with mumps virus (MuV). The persistent infection was maintained by horizontal transmission of the virus within the culture but was regulated by endogenously produced IFN (8). The maintenance of the persistently infected cells in the continuous presence of anti-MuV serum suppressed the production of infectious virus. No virus antigen-positive cells were detected beyond 14 passages. Once antiserum was removed from the seemingly "cured cultures", however, a small number of antigen-positive cells appeared and the release of infectious virus into the culture fluid resumed. Even after 67 passages (200 days) of culture in the presence of anti-serum, the virus reappeared in the culture. At least 0.01 per cent of L929 cells in cultures maintained under antiserum harbored the virus without expression of virus antigen. The virus recovered from such cells was temperature sensitive. The infection of fresh L929 cells with the variant led to noncytocidal persistent infection which was maintained by propagation of virus-infected cells. MuV carrier cultures could be cured by serial cultivation in medium containing the mixture of antiserum and IFN. When L-MuV cells were subcultured with medium containing neutralizing monoclonal antibodies (MoAbs), antibody-resistant variant viruses were rapidly generated and selected. In the presence of IFN variant viruses resistant to IFN were generated. In view of the small amount of virus produced from persistently infected cells, variant viruses appeared to be generated in an unusually high frequency in carrier cultures. Thus, this experimental system may offer a useful in vitro model for studying antigenic variation and generation of various variant viruses.

Animals↗

Effect of prostaglandin A1 in porcine cells persistently infected with classical swine fever virus.

Cyclopentenone prostaglandins are potent inhibitors of a wide variety of RNA and DNA viruses. In this report we describe that prostaglandin A1 (PGA1) potently inhibited the replication of classical swine fever virus in cultures of PK-15 cells. The highest non-toxic dose (5 microg/ml) inhibited virus yield in 99% at the initial phase of infection and in 77% in persistent infected cells. However when PGA1 was removed from persistently infected cells, the inhibition of virus replication was partially reverted.

Animals↗

Studies on persistent infections of tissue cultures. III. Some quantitative aspects of host cell-virus interactions.

Efforts were made to obtain information on some of the quantitative aspects of host cell-virus interactions in MCN cultures persistently infected with Newcastle disease, mumps, and 6-6 viruses, and to elicit the mechanism which permits simultaneous maintenance of virus and cells for indefinite periods of time. It was shown by 4 different technics that only between 10 and less than 1 per cent of the cells yield infectious virus, depending upon the agent employed and, possibly, variations in the conditions of the cultures. No evidence was found to indicate production of non-infectious virus materials. Only the cells carrying infectious virus are capable upon transfer to uninfected cultures to transmit the infection. Cells from persistently infected cultures, which are free of infectious virus at the time of transfer, failed to liberate virus at a later time during incubation periods of up to 4 weeks. The virus-producing cells contain at any given moment not more than 1 infectious unit of virus, suggesting a linear mode of production; i.e., as soon as a virus particle is completed, it is released. Upon inoculation of MCN test tube cultures with chick embryo-adapted NDV persistent infection and interference with vesicular stomatitis virus (VSV) is established with considerable delay. In contrast, following transfer of MCN-adapted NDV, in form of MCN(NDV) cells or first allantoic passage seeds derived therefrom, the number of virus-producing cells increases logarithmically, doubling every 6 to 8 hours until a total of about 10(4) is reached. Thereafter their numbers rise in proportion to the increase in total cell population; i.e., doubling approximately every 48 hours. At the time when 10(4) virus-producing cells are present in the culture interference with VSV is solidly established. In order to obtain this result about 10(6) cells must have adsorbed virus particles, or, in other words, at least 10(6) virus units must have totally been produced instead of the 10(4) measured by infectivity assay. The implications of these and previously reported data have been discussed in detail and a scheme of the course of events in persistently infected cultures has been presented.

Animals↗

Altered membrane fatty acids of cultured human retinal pigment epithelium persistently infected with rubella virus may affect secondary cellular function.

Persistent infection with rubella virus (RV) can alter secondary functions of host cells. Previously we had documented defective phagocytosis of latex beads by cultured human retinal pigment epithelial cells (RPE), persistently infected with M-33 RV (RPE/RV). Here, examining possible mechanisms for altered function, we reported significant differences between the total esterified fatty acids (FA) of RPE and RPE/RV membranes, measured by gas liquid chromatography. RPE/RV contained an increased proportion of saturated FA, particularly palmitic acid, with a presence of unusual chromatographic FA peaks co-eluting with odd-numbered long-chain carbon atom FA not normally found in human cells. Apical membrane microvilli, structures essential to phagocytic activity of RPE and RPE/RV, observed by scanning and transmission electron microscopy, were similar in number and appearance between uninfected RPE and RPE/RV cells before and after latex bead addition. However, RPE/RV microvilli, possibly reflecting altered membrane FA composition, engaged latex beads less effectively than uninfected RPE microvilli. In addition, microvilli remained abnormally distributed on RPE/RV cell surfaces at 48 h after latex addition. Thus, RV persistent infection may affect the cellular membrane fluidity and functional activity of human cells with increased saturated FA proportions and altered FA components of membrane phospholipids. These changes may participate in the defective phagocytosis of RPE/RV.

Cells, Cultured↗

Cells and viruses with mutations affecting viral entry are selected during persistent infections of L cells with mammalian reoviruses.

Previous studies demonstrated that both cellular and viral mutants are selected during maintenance of persistent infections established in murine L cells with high-passage stocks of mammalian reoviruses. In particular, when one culture was cured of persistent infection, the resulting cells were found to support the growth of viruses isolated from persistently infected cultures (termed PI viruses here) better than that of wild-type (wt) viruses (R. Ahmed, W. M. Canning, R. S. Kauffman, A. H. Sharpe, J. V. Hallum, and B. N. Fields, Cell 25:325-332, 1981). To address the nature of cellular and viral mutations selected during maintenance of persistent reovirus infections, we established independent, persistently infected cultures with L cells and high-passage stocks of wt reovirus. These cultures served as sources of new PI viruses and cured cells for study. We found that although wt viruses grew poorly in cured cells when infection was initiated with intact virions, they grew well in cured cells when infection was initiated with infectious subvirion particles generated from virions by in vitro treatment with chymotrypsin. This finding indicates that the block to growth of wt viruses in cured cells involves an early step that is unique to infection by virions, such as proteolytic processing in an endocytic compartment. We also found that PI viruses grew better than wt viruses in L cells treated with ammonium chloride, a weak base that inhibits the pH decrease in endosomes and lysosomes. Because ammonium chloride blocks an early step in infection by intact virions, probably the proteolytic processing of viral outer capsid proteins by acid-dependent cellular proteases in late endosomes or lysosomes, this finding indicates that PI viruses differ from wt viruses with respect to viral entry into cells. Therefore, these results indicate that both cells and viruses evolve mutations that affect one or more early steps in the viral growth cycle during maintenance of L-cell cultures persistently infected with reoviruses.

Ammonium Chloride↗

Persistent infection of L cells with vesicular stomatitis virus: evolution of virus populations.

A previous report (Youngner et al., J. Virol. 19:90-101, 1976) documented that noncytocidal persistent infection can be established with wild-type vesicular stomatitis virus (VSV) in mouse L cells at 37 degrees C and that a rapid selection of RNA(-), group I temperature-sensitive (ts) mutants consistently occurs in this system. To assess the selective advantage of the RNA(-)ts phenotype, evolution of the virus population was studied in persistent infections initiated in L cells by use of VSV ts 0 23 and ts 0 45, RNA(+) mutants belonging to complementation groups III and V. In L cells persistently infected with ts 0 23, the ts RNA(+) virus population was replaced gradually by viruses which had a ts RNA(-) phenotype. VSV ts 0 45 (V) has another marker in addition to reduced virus yield at 39.5 degrees C: a defective protein (G) which renders virion infectivity heat labile at 50 degrees C. Persistent infections initiated with this virus (ts, heat labile, RNA(+)) evolved into a virus population which was ts, heat resistant, and RNA(-). These findings suggest that the ts phenotype itself is not sufficient to stabilize the VSV population in persistently infected L cells and also indicate that the ts RNA(-) phenotype may have a unique selective advantage in this system. In addition to the selection of ts RNA(-) mutants, other mechanisms which also might operate in the maintenance of persistent VSV infections of L cells were explored. Whereas defective-interfering particles did not seem to mediate the carrier state, evidence was obtained that interferon may play a role in the regulation of persistent infections of L cells with VSV.

L Cells↗

Changes in levels of viremia in cattle persistently infected with bovine viral diarrhea virus.

Virus isolation and serum neutralizing antibody titers were determined over a period of time from samples collected from animals persistently infected with bovine viral diarrhea virus (BVDV). To evaluate over time the ability to detect BVDV by virus isolation from serum or white blood cell preparations, 4 persistently infected calves were monitored from birth until 70 days of age. In 3 of 4 persistently infected calves, virus isolation from serum and white blood cells was negative until approximately 42 days of age, when colostral antibody had declined. The level of viremia in 7 adult (> 12 months) persistently infected animals decreased by 1 10-fold dilution over at least a 2-year period. The level of viremia became undetectable by virus isolation from serum in 1 of the 7 animals examined. This decline was associated with the development of virus neutralizing antibody. Although the level of viremia is fairly stable within persistently infected animals, the presence of specific neutralizing antibody may affect the ability to isolate BVDV. These findings are important when considering diagnostic testing to identify persistently infected animals by virus isolation.

Animals↗

Effects of interferon, ribavirin, and iminosugar derivatives on cells persistently infected with noncytopathic bovine viral diarrhea virus.

Persistent infection with hepatitis C virus (HCV) is a major cause of chronic hepatitis in humans. In chronic carriers, the viral infection induces liver damage that predisposes the patient for cirrhosis and can lead to hepatocellular carcinoma. Current chemotherapies are limited to alpha interferon (IFN-alpha) used either alone or in combination with ribavirin (RBV). In addition to its limited efficacy, this treatment is frequently poorly tolerated because of its side effects. The urgently needed development of new drugs is made difficult by the lack of an in vitro or in vivo infectivity model, and no cell line has been found so far to reliably and reproducibly support HCV infection. For this reason, the closely related pestivirus bovine viral diarrhea virus (BVDV) has sometimes been used as a surrogate in vitro infectivity model. In this study we used an MDBK cell line persistently infected with noncytopathic BVDV to assess the antiviral effect of IFN-alpha and RBV, the two drugs currently in clinical use against HCV. The same system was then used to evaluate the potential of two classes of iminosugar derivates to clear noncytopathic BVDV infection from MDBK cells. We show that treatment with long-alkyl-chain deoxynojirimycin derivatives, which are inhibitors of the endoplasmic reticulum (ER)-resident alpha-glucosidases, can greatly reduce the amount of secreted enveloped viral RNA. Long-alkyl-chain deoxygalactonojirimycin derivatives, which do not inhibit ER alpha-glucosidases, were less potent but still more effective in this system than IFN-alpha or ribavirin.

Animals↗