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Virus-induced immune complex disease: genetic control of C1q binding complexes in the circulation of mice persistently infected with lymphocytic choriomeningitis virus.

Virus-antibody immune complex formation, deposition, and disease is a common manifestation in most mice persistently infected with lymphocytic choriomeningitis virus (LCMV). Although mice of several strains persistently infected with LCMV mount continuous anti-LCMV immune responses to the three virion structural polypeptides, the amount of antibody(s) made varies among strains. The formation of antibody to LCMV correlates with the detection of C1q binding materials (immune complexes) in the circulation; however, there is no correlation between the total amount of IgG and the C1q binding material. SWR/J mice (H2qq) are high responders (high levels of anti-LCMV antibodies, high C1q binding responses), whereas BALB/W mice (H-2dd) are low responders (low levels of anti-LCMV antibodies, low C1q binding responses). Sera from 37 SWR/J mice, 12 wk of age, bound 55.1% of offered 125I C1q compared to 8.4% for 37 age and sex-matched BALB/W mice. SWR/J mice made approximately 60-fold more antibody to LCMV than did BALB/W mice. To define the genetic factors involved, we used the C1q binding assay, high responder and low responder mice, their hybrid offspring, backcrosses of the hybrids to both high and low responder parents, and selected recombinant inbred mouse strains. From studies with BALB/W mice persistently infected with LCMV, we defined low C1q responder mice as those having binding activity of 18.4% or less (BALB/W mean C1q binding value + 2 SD). By using this criteria for 12-wk-old mice, 55/57 (96%) of SWR/J, 27/37 (73%) of F1(SxB or BxS), 13/21 (62%) of qq or 11/20 (55%) qd from F1 x SWR/J, and 6/13 (45%) qd from F1 x BALB/W were high C1q responders. In contrast, none of the 17 dd mice from the F1 x BALB/W cross were high responders. Thus, F1 hybrid mice are high responders (dominant) and data from backcrossing F1 hybrids to either high or low responder parents suggested the complexes associated with C1q binding was controlled by gene(s) in the H-2 complex. Support for the role of Ir gene(s) was provided by experiments showing LCMV persistently infected BALB/kae (H-2 KkIkDk) and recombinant inbred strains B10.A (KkIkDd) and A.TL (KsIkDd) were high C1q responders, whereas B10.A(5R) (KbIbDd) and BALB/cby (KdIdDd) were not. The wide scatter in C1q binding levels observed among C1q high responder mice and the production of C1q binding levels in F1 mice that are intermediate between high and low responder strains suggested that, in addition to H-2-linked genes, other non-H-2-linked genes also play a role in this response. The amount of C1q binding complexes in LCMV persistently infected mouse strains and their crosses was unrelated to the amounts of infectious virus carried in their sera. Despite the low C1q binding by sera of H-2dd mice that originated from mating F1 hybrid (qd) x BALB/WEHI (dd), these mice carried equivalent amounts of infectious virus as their qd littermates or qd and qq mice originated from F1 x SWR/J mice.

Animals↗

Efficiency of viral entry determines the capacity of murine erythroleukemia cells to support persistent infections by mammalian reoviruses.

To determine mechanisms by which persistent viral infections are established and maintained, we initiated persistent infections of murine erythroleukemia (MEL) cells by using reovirus strains type 3 Abney and type 3 Dearing. Establishment of persistent reovirus infections of MEL cells was not associated with a significant cytopathic effect despite the presence of high titers of infectious virus in the cultures (>10(5) PFU/ml of culture lysate). Maintenance of persistently infected MEL-cell cultures was associated with coevolution of mutant viruses and cells. Mutant viruses produced greater yields than the parental wild-type (wt) strains in MEL cells cured of persistent infection and in cells treated with ammonium chloride, a weak base that blocks viral disassembly. Mutant cells supported growth of wt infectious subvirion particles, which are disassembly intermediates generated in vitro by treatment of virions with chymotrypsin, substantially better than growth of wt virions. These findings indicate that viral and cellular mutations selected during maintenance of persistently infected MEL-cell cultures affect acid-dependent proteolysis of virions during entry into cells. We also found that wt infectious subvirion particles produce greater yields than wt virions in wt MEL cells, which suggests that inefficient viral disassembly in MEL cells favors establishment of persistent infection. Therefore, steps in reovirus replication leading to viral disassembly appear to be critical determinants of the capacity of MEL cells to support both establishment and maintenance of persistent reovirus infections.

Ammonium Chloride↗

Establishment of persistent infection in mouse cells by Sindbis virus and its temperature-sensitive mutants.

The ability of wild-type (wt) Sindbis virus and six temperature-sensitive (ts) mutants to establish persistent infection in mouse L cells and a line of mouse embryo (ME) cells was determined. The wt established persistent infection in both ME cells and L cells at 39 degrees C. At 30 degrees C the wt established persistent infection in L cells but not ME cells, which did not recover from the initial infection. For the ts mutants, both cell lines survived the initial infection at 39 degrees C (the restrictive temperature) but the virus was eventually eliminated. At 30 degrees C (the permissive temperature) in L cells all mutants established persistent infection. In ME cells at 30 degrees C, RNA- mutants (unable to synthesize virus-specified RNA at 39 degrees C) established persistent infection whereas the cells did not recover from infection with RNA+ mutants (able to synthesize virus-specified RNA at 39 degrees C). The wt virus was less cytopathic in L cells than in BHK or ME cells. Interferon was produced by both L and ME cells at 30 degrees C and 39 degrees C, but its activity could not be detected in either cell line at 30 degrees C. It is proposed that establishment of persistent infection is dependent on reduced cytopathogenicity in the early stage of infection, and that further evolution of the virus then occurs to a less cytopathic form. Elimination of the virus at 39 degrees C is probably due to the action of interferon.

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Multiple factors including subgenomic RNAs and reduced viral protein expression are associated with a persistent infection by porcine rubulavirus (LPMV).

The synthesis of virus specific RNA and the expression of viral proteins in PK-15 cells persistently infected with the porcine rubulavirus LPMV have been studied at two different cell-passages following establishment of persistency (passages 25 and 65). Protein analysis of persistently infected cells and the virus particles released from these failed to demonstrate the presence of the polymerase (L) protein. A decrease in the amount of the phospho- (P) protein was also noted. The genome and mRNAs, both mono- and bicistronic, could readily be identified in the persistently infected cells with the exception of the L mRNA. By analysis of transcription gradients generated using the NIH Image analysis software, as well as analysis of the editing frequency, it was concluded that the changes in viral protein levels in persistently infected cells could be associated with a reduction in the amount of L mRNA and a shift in editing of the P gene. In addition, several large subgenomic RNAs of both the internally deleted and copy-back type were found in the persistently infected cells. The relevance of these findings to the persistent state is discussed.

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Adaptation of coronavirus JHM to persistent infection of murine sac(-) cells.

Coronaviruses can establish persistent infections in the central nervous system of rodents, and these are associated with demyelinating encephalomyelitis. The effects of persistence on the virus are difficult to study in vivo but may have a crucial influence on the course of infection. We therefore produced a persistent infection in vitro using the neurotropic coronavirus JHM, in order to investigate the events underlying the establishment of such an infection and the adaptation of the virus to persistence. The persistent infection was maintained for over 115 passages and continued to release high levels of infectious virus. During the 18 months of culture the number of cells expressing virus antigen detected by indirect immune fluorescence decreased to 40%. Analysis showed that the carried virus contained a significant proportion of heterogeneous temperature-sensitive mutants. All virus clones isolated possessed the capacity to induce a more productive growth cycle, a less pronounced cytopathic effect and showed a much reduced neurovirulence when inoculated into newborn and weanling rats. Evidence for structural changes involving the surface peplomer protein (E2) was obtained using hybridoma antibodies, which neutralized the parental JHM virus but not the JHM-Pi virus. Defective interfering particles and interferon activities have been excluded as possible agents instrumental in the establishment and maintenance of the chronic infection, and we suggest that the emergence of virus variants of lowered virulence is central to these processes.

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Persistent infection of Vero cells by the flavivirus Murray Valley encephalitis virus.

Murray Valley encephalitis (MVE) virus strain OR2 was serially passaged on Vero cells to establish a persistent infection which was maintained for over 300 days. Supernatants from infected cells protected Vero cells from c.p.e. and caused up to a 95% reduction of wild-type virus yield. These protective and interfering effects suggest that defective interfering (DI) particles are responsible for the establishment and maintenance of the MVE virus persistent infection. The persistently infected cell supernatant preparations shared several features with DI particle preparations from other viral systems, such as their amplification to detectable levels after two to four passages of virus. However, results from this study suggest that DI particles of MVE virus differ from other studied systems in that they are able to affect only moderately the yield of infectious wild-type virus. The genetic drift of the parental virus during the course of a long term persistent infection in vitro appears to be minimal.

Animals↗

A monoclonal ELISA for bovine viral diarrhoea pestivirus antigen detection in persistently infected cattle.

Detection of cattle persistently infected with bovine viral diarrhoea virus (BVDV) is crucial to controlling mucosal disease. A sandwich enzyme-linked immunosorbent assay (ELISA) using monoclonal antibodies raised against the 48-kDa glycoprotein and the 120/80-kDa protein was developed for detecting antigens in leucocytes of 3 persistently BVDV-infected calves. The test is simple, sensitive and rapid. Moreover the same ELISA was able to recognise Belgian field isolates of BVDV. These results show that the test can be applied in the field.

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Phospholipids in a measles virus persistent infection: modification of fatty acid metabolism and fatty acid composition of released virus.

The phospholipid metabolism of a measles virus persistently infected cell line, BGM/Hallé, was compared with that of uninfected BGM cells. Synthesis of phospholipid from the isotopic precursor [32P]phosphate was unaffected, but a significant increase in the synthesis of phospholipid from [3H-9,10(n)]palmitic acid was observed in persistently infected cells, reflecting an increase in the palmitic acid content of phospholipid previously described for these cells. The phospholipid composition of measles virus released from persistently infected cells was compared to that of virus from lytically infected BGM cells by radiolabelling to isotopic equilibrium and measuring the incorporation of labelled phosphatides into the virus particle. The incorporation and distribution of [32P]phosphate-labelled phosphatides in virus was similar in lytic and persistent infections. In contrast, the distribution of [3H]palmitic acid among the constituent phosphatides of virus released from the persistent infection was different, partly reflecting the altered saturated fatty acid composition of the phosphatides of the host cell.

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Expression of Anaplasma marginale major surface protein 2 variants in persistently infected ticks.

Anaplasma marginale, an intraerythrocytic ehrlichial pathogen of cattle, establishes persistent infections in both vertebrate (cattle) and invertebrate (tick) hosts. The ability of A. marginale to persist in cattle has been shown to be due, in part, to major surface protein 2 (MSP2) variants which are hypothesized to emerge in response to the bovine immune response. MSP2 antigenic variation has not been studied in persistently infected ticks. In this study we analyzed MSP2 in A. marginale populations from the salivary glands of male Dermacentor variabilis persistently infected with A. marginale after feeding successively on one susceptible bovine and three sheep. New MSP2 variants appeared in each A. marginale population, and sequence alignment of the MSP2 variants revealed multiple amino acid substitutions, insertions, and deletions. These results suggest that selection pressure on MSP2 occurred in tick salivary glands independent of the bovine immune response.

Amino Acid Sequence↗

Measles virus-specified polypeptide synthesis in two persistently infected HeLa cell lines.

Measles virus-directed protein synthesis was examined in two HeLa cell lines (K11 and K11A) that are persistently infected with wild-type measles virus. Four viral proteins (H, hemagglutination protein; P, nucleocapsid-associated protein; NP, the major nucleocapsid protein; and M, the matrix protein) were readily detected in both cell lines by immune precipitation of [(35)S]methionine-labeled cell extracts followed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. When analyzed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis, three (H, NP, and M) of the four viral proteins in both K11 and K11A cells differed from the corresponding viral proteins synthesized in HeLa cells acutely infected with the parental wild-type virus. In addition, the M protein from K11A cells migrated significantly more slowly on sodium dodecyl sulfate-polyacrylamide gel electrophoresis than the M protein from K11 cells, and there appeared to be slight differences in the H and NP proteins between these two persistently infected cell lines. The altered viral proteins detected in K11 and K11A cells appeared to be the result of viral mutations rather than changes in the host cell, since virus recovered from these cells directed the synthesis of similar aberrant viral proteins in HeLa cells. Virus recovered from K11 cells and virus recovered from K11A cells were both temperature sensitive and grew more slowly than wild-type virus. HeLa cells infected with virus recovered from K11 cells readily became persistently infected, resembling the original persistently infected K11 cells. Thus, viral mutations are associated with persistent measles virus infections in cell cultures.

Capsid↗

Biochemical analysis of rabies virus proteins in three persistently infected BHK-21 cell lines.

Three BHK-21 cell lines persistently infected with the CVS strain of rabies virus were passaged for 2.5 years at 37 degrees C. These cells contained relatively stable amounts of N, M1 and L proteins. Comparison of tryptic peptide maps of proteins from persistently infected (PI) cells and from purified virions did not reveal any changes in the N protein, whereas M1 had undergone several modifications. Phosphorylation of M1 seemed to be greater in PI cells than in acutely infected cells, whereas phosphorylation of N was equivalent. Amounts of viral G and M2 proteins in PI cells were less than 10% of those present in acutely infected cells incubated for 24 h. Stability of the N protein, limited genetic evolution of the M1 protein probably implicated in transcription and replication of the virus, and reduction of the quantity of the membrane proteins G and M2 were general characteristics of our three PI cell lines. Decrease of the quantity of virus proteins associated with external membranes could explain why cells survive to the persistent infection. The composition of viral material released from PI cells was different from that of the virions produced from acutely infected cells. Substantial reduction of L, G and M2, and/or M1 was observed and the particles were of low infectivity.

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Persistent infection with herpes simplex virus type 1 in an Ia antigen-positive murine macrophage cell line.

The interaction of herpes simplex virus type 1 (HSV-1) with murine macrophage cell lines was examined. The cell lines appeared to be moderately permissive for HSV-1 replication, though the yield of the virus was limited compared with that in Vero cells. Furthermore, the murine macrophage cell line SL-1, bearing Ia antigen, was persistently infected with HSV-1 for over one year, and was designated SL-1/KOS. Persistent infection could not be established in an Ia antigen-negative macrophage cell line, SL-4. In the SL-1/KOS culture, there was a small number of infected cells as revealed by infectious center assay. Treatment with monoclonal antibody against HSV-1 cured the persistent infection. Therefore maintenance of the persistent infection is considered to be due to a carrier culture consisting of a minority of infected cells and a majority of uninfected cells. In the SL-1/KOS cultures a low level of interferon (IFN) was found. When a large amount of exogenous recombinant murine IFN-beta (10(5)-10(6) international units/ml) was added to the culture, virus production diminished to undetectable levels. These results suggest that IFN plays an important role in the maintenance of persistent infection. In long-term persistently infected cultures, syncytium formation appeared and the virus from such cultures had a different DNA structure from that of the virus originally used for infection as revealed by restriction endonuclease analysis.

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Genomic changes associated with antigenic variation of visna virus durig persistent infection.

Visna virus undergoes antigenic change during persistent infection of sheep. Antigenic variants of visna virus were compared by using the genomic RNA and analyzing the large RNase T1-resistant oligonucleotides. Mutants isolated from a persistently infected sheep contained a small number of changes in their oligonucleotide patterns when compared with parental virus. To determine whether the changes in the nucleotide structure were clustered in one region of the genome, we determined the order of the oligonucleotides of the parental and mutant RNAs along the genome with respect to the 3' polyadenylylated end. All but one difference between the parental strain and the antigenic mutant used for mapping were located within 2 kilobases from the 3' terminus. Nucleotide sequence analyses showed that several of the oligonucleotides that differed in the parental and mutant RNAs could be accounted for by single base changes.

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Evolution of virus and defective-interfering RNAs in BHK cells persistently infected with Sindbis virus.

We analyzed a BHK cell line persistently infected with Sindbis virus for 16 months and a virus (Sin-16) cloned from these cells. Sin-16 virus was resistant to the defective interfering particles present in the original infection. We found that (i) cells infected with Sin-16 were impaired in the processing of a viral precursor glycoprotein, (ii) high-multiplicity passaging of Sin-16 gave rise to a variant that was able to generate and be inhibited by defective-interfering particles to which the original Sin-16 virus was resistant, and (iii) the persistently infected culture contained a heterogeneous mixture of defective Sindbis virus RNAs which were not packaged into extracellular particles. To determine whether these intracellular RNAs could interfere with the replication of Sin-16, we analyzed cells that were cloned from the persistently infected culture. One clone (A3) synthesized a single defective viral RNA which was lost with continued passaging in culture. Infection of A3 cells with Sin-16 showed that the presence of the defective RNA greatly enhanced cell survival and led to enrichment of this RNA. In contrast, cured cells were highly susceptible to killing by Sin-16, and survivors did not synthesize this RNA. Thus, A3 cells were not genetically altered in their response to Sin-16, but were protected from the cytopathic effects of infection by an RNA with the characteristics of a defective-interfering RNA.

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Persistent infection of MT-4 cells by human immunodeficiency virus type 1 becomes increasingly likely with in vitro serial passage of wild-type but not nef mutant virus.

Our previous studies have shown that human immunodeficiency virus type 1 (HIV-1), with mutations in accessory genes such as vif, vpr or vpu, can generate persistent infection of MT-4 cells, whereas infection by wild-type or nef mutant HIV-1 causes extensive cell death. The possibility of generating a naturally attenuated form of HIV-1 with reduced cytopathogenicity in MT-4 cells was examined by in vitro serial passage of the wild-type and a nef mutant form of HIV-1, each derived from the infectious molecular clone pNL432. The ability to cause persistent infection was observed after four passages of wild-type HIV-1 with the frequency of persistence becoming progressively higher with serial passage. In contrast, persistent infection was not observed even after 50 passages of the nef mutant virus. Sequence analysis of the accessory gene loci in genomes recovered from the persistent infections caused by passaged virus revealed mutations in vif and vpr, but not in vpu. The processing of the Env precursor to mature forms was not modified in any of the passages of either wild-type or nef mutant HIV-1. However, when compared with acute infections caused by similarly passaged virus of both wild-type and nef mutant HIV-1, persistent infections by passaged wild-type HIV-1 showed a significant decrease in the cell surface expression and function of Env. Cell surface CD4 was only partially down-regulated on cells acutely infected with the passaged viruses, whereas on cells persistently infected with passaged wild-type HIV-1 it was completely down-regulated. These results suggest that, during serial passage of HIV-1, mutations accumulate at least in the accessory genes vif and vpr in parallel with a lesser interaction between cell surface Env and CD4 molecules, and lead to the generation of less cytopathogenic viruses capable of persistent infection. Our results also suggest an important role for the nef gene product in the generation of HIV-1 strains that are less cytopathogenic.

Amino Acid Sequence↗

Poor induction of interferon-induced 2',5'-oligoadenylate synthetase (2-5 AS) in cells persistently infected with mumps virus is caused by decrease of STAT-1 alpha.

Poor induction of interferon-induced 2',5'-oligoadenylate synthetase (2-5AS) has been demonstrated in cells persistently infected with mumps virus as compared with uninfected cells. As for the number of interferon (IFN) receptors and the level of IFN regulatory factors (IRF-1 and IRF-2) mRNAs, there was little difference between them. Therefore, it is suggested that the IFN-alpha signaling system is ineffective in the persistently infected cells. Components of IFN-stimulating gene factor 3 alpha (ISGF-3 alpha), STAT-1 alpha (p91) and STAT-2 (p113), were investigated in human amnion (FL), human nasopharyngeal cancer (KB), human T-lymphoid (HUT 78), and human B-lymphoid (Akata) cells persistently infected with mumps virus. STAT-1 alpha, but not STAT-2, disappeared in these persistently infected cells, and this factor was not restored by treatment of these cells with IFN. However, no difference was observed between the levels of STAT-1 alpha mRNA transcript in persistently infected and uninfected control cells. It is reasonable to infer that the poor induction of 2-5AS activity is due to the decrease of STAT-1 alpha in correlation with the IFN-signal transduction pathway. Furthermore, induction of other IFN-stimulated genes (ds-RNA activated protein kinase, PKR, and MxA protein) was also reduced in the cells persistently infected with mumps virus.

2',5'-Oligoadenylate Synthetase↗

A proposed model to explain persistent infection of host cells with Coxiella burnetii.

L929 mouse fibroblast cells and J774 macrophage-like cells are both susceptible to persistent infection with the Q fever agent Coxiella burnetti. Previously this laboratory has shown that persistently infected cell populations multiply with unaltered generation times or cell cycle progression. It has also been reported by others and us that highly infected cells typically exhibit one large parasite-containing vacuole. We now report that lightly and heavily infected cells are capable of division and in the process segregate the parasite-containing vacuole into one of the emerging daughter cells; the companion daughter cell emerges parasite-free. This asymmetric division of infected cells, revealed via photomicrography of stained cells, accounts for the appearance of uninfected cells within persistently infected host cell populations that were previously 100% infected. Some of the persistently infected L929 populations were maintained in culture for over two years without the addition of normal cells.

Animals↗

Antigenic and genetic variation in cytopathic hepatitis A virus variants arising during persistent infection: evidence for genetic recombination.

Variants of hepatitis A virus (pHM175 virus) recovered from persistently infected green monkey kidney (BS-C-1) cells induced a cytopathic effect during serial passage in BS-C-1 or fetal rhesus kidney (FRhK-4) cells. Epitope-specific radioimmunofocus assays showed that this virus comprised two virion populations, one with altered antigenicity including neutralization resistance to monoclonal antibody K24F2, and the other with normal antigenic characteristics. Replication of the antigenic variant was favored over that of virus with the normal antigenic phenotype during persistent infection, while virus with the normal antigenic phenotype was selected during serial passage. Viruses of each type were clonally isolated; both were cytopathic in cell cultures and displayed a rapid replication phenotype when compared with the noncytopathic passage 16 (p16) HM175 virus which was used to establish the original persistent infection. The two cytopathic virus clones contained 31 and 34 nucleotide changes from the sequence of p16 HM175. Both shared a common 5' sequence (bases 30 to 1677), as well as sequence identity in the P2-P3 region (bases 3249 to 5303 and 6462 to 6781) and 3' terminus (bases 7272 to 7478). VP3, VP1, and 3Cpro contained different mutations in the two virus clones, with amino acid substitutions at residues 70 of VP3 and 197 and 276 of VP1 of the antigenic variant. These capsid mutations did not affect virion thermal stability. A comparison of the nearly complete genomic sequences of three clonally isolated cytopathic variants was suggestive of genetic recombination between these viruses during persistent infection and indicated that mutations in both 5' and 3' nontranslated regions and in the nonstructural proteins 2A, 2B, 2C, 3A, and 3Dpol may be related to the cytopathic phenotype.

Animals↗