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Some ultrastructural effects of persistent infections by the rickettsia Coxiella burnetii in mouse L cells and green monkey kidney (Vero) cells.

Mouse fibroblasts (L-929) and Vero (green monkey kidney) cells were infected with the rickettsia Coxiella burnetti, and persistent infections developed and were studied over a 6- to 10-month period. Ultrastructural comparisons were made between the two infected cell types, and both were tested cytochemically for the presence of acid phosphatase, a marker enzyme of lysozymes. Rickettsiae were always observed within vacuoles, and some infected L cells showed flattened endoplasmic reticulum as compared with uninfected cells. Rickettsiae in Vero cells were most often seen in vacuoles containing whorls of membranes ("myelin configurations") which were also seen in uninfected cells. Rickettsiae in Vero cells were pleomorphic, with acid phosphatase reaction product in their periplasmic space. This suggests either rickettsial degradation by lysosomal enzymes which penetrated the cell envelope or a penetration after the rickettsiae were dead. Vacuoles of infected Vero cells showed much more reaction product than that in infected L cells, and most rickettsiae in L cells had a normal appearance and showed no reaction product in their periplasmic space.

Acid Phosphatase

Novel antiviral activity found in the media of Sindbis virus-persistently infected mosquito (Aedes albopictus) cell cultures.

Aedes albopictus (mosquito) cells persistently infected with Sindbis virus for a period of 6 months release into the medium a low-molecular-weight material capable of specifically reducing the yields of Sindbis virus during the "acute phase" of infection in mosquito cells. The antiviral activity was produced in detectable levels at 3 days after infection, and its concentration in the extracellular medium increased thereafter. The antiviral activity was inactivated by treatment with the enzyme protease K and heat. It was not activated by treatment with antibody prepared against extracts of Sindbis virus-infected BHK-21 cells. The antiviral activity differs from interferon produced by vertebrate cells in that it is virus specific as well as cell specific.

Aedes

Surface antigens on HeLa cells persistently infected with HVJ (Sendai virus).

Surface antigens of HeLaHVJ cells, a cell line persistently infected with HVJ, were studied by fluorescent antibody staining. After absorption with concentrated HVJ virions and HeLa cells, anti-HeLaHVJ antiserum was able to demonstrate specific surface fluorescence on HeLaHVJ cells, while this serum no longer reacted with original HeLa cells nor with HVJ virions. During cytolytic infection of HeLa cells with HVJ, this specific surface antigen appeared at an early stage of infection prior to the appearance of newly synthesized HVJ viral antigens and moreover appeared in spite of the inhibition of viral protein synthesis. This antigen was detected neither on HeLa cells infected with other myxoviruses except HVJ nor on various other kinds of cells infected with HVJ. The specific surface antigen was still found on the HeLaHVJ cell surface after incubation at 38 degrees C for two days, while HVJ structural antigens on the cell surface no longer could be detected. Mild short-term treatment of HeLa cells with trypsin, neuraminidase from vibrio cholerae, phospholipase-C and hyaluronidase failed to expose specific antigen. The antigen was distinguishable from the Forssman and human blood type antigens. The mechanism of appearance of a new antigen on the surface of HeLaHVJ cells remains unclear.

Antigens

Iterferon induction in mice by BHK cells persistently infected with HVJ.

Intraperitoneal injection into mice of BHK-HVJ cells (BHK cells persistently infected with HVJ) induced considerable amounts of circulating interferon. Sonication of BHK-HVJ cells almost totally abolished their interferon inducing capacities. This result suggests that a certain native organized structure of virus infected cells might be essential for production of interferon in this system, as is suggested in the in vitro sytem.

Animals

Carrier state of antibody and viruses in a mouse breeding colony persistently infected with Sendai and mouse hepatitis viruses.

In a large-scale mouse breeder colony persistently infected with Sendai and mouse hepatitis viruses, most adult breeders 8 wk or more of age were shown to have antibodies to both viruses when monitored over a periof of 20 mo. Antibody to Sendai virus, apparently transmitted from the dam, was detected in 76% and 2% of mice aged 3 and 4 wk. respectively, and 64% and 100% of mice aged 6 and 8 wk, respectively. By seroconversion of sentinel cage-mates, a Sendai virus-carrier state was demonstrated with 6-wk-old mice but not with those either 4 wk or 10 wk of age, suggesting that breeder candidates about 6 wk of age may play an important role in establishing and perpetuating Sendai infection in this breeding colony. With mouse hepatitis virus, however, mice aged 4 wk or older seem to be effective transmitters of the virus, while some of these mice were found to have antibody to the virus.

Age Factors

Changes in the virus-host cell relationship in a stable non-virogenic cell line persistently infected with measles virus (BGM/MV).

A non-virogenic African green monkey kidney cell line BGM/MV persistently infected with a neurotropic mouse brain-adapted strain of measles virus, was found to have undergone significant changes in the virus-host cell relationship between passages 35 and 119. Rather than the stable non-cytopathic relationship previously reported in which approximately 100% of the cells contained measles antigens and less than 1% of the cells expressed cell surface measles antigen, we observed cyclic manifestations of c.p.e. together with changes in the percentage of cells expressing intracellular and cell surface measles antigens. Treatment of BGM/MV cells with actinomycin D effected an increase in the percentage of cells expressing cell surface virus haemagglutinin (HA) at times when the percentage of cells with surface HA was less than the percentage of cells with intracellular measles antigens. Superinfection studies employing measles virus and vesicular stomatitis virus revealed a consonant cyclic refractivity and essentially no refractivity, respectively. Endogenous, infectious measles virus was not detected nor was interferon. It was concluded that a host cell factor other than interferon was modulating the cyclic expression of the measles virus infection.

Animals

Temperature-sensitive virus derived from BHK cells persistently infected with HVJ (Sendai virus).

BHK-HVJ cells, a cell line of baby hamster kidney cells persistantly infected with HVJ (Sendai virus), started to produce infectious virus by shifting down the incubation temperature from 38 to 32 C. The virus derived from BHK-HVJ cells, designated as HJV-pB, was effectively neutralized with antibody against wild-type virus (HVJ-W) which was used for the establishment of BHK-HVJ cells. HVJ-pB replicated in eggs at 32 C, but not at 38 C, while HVJ-W grew equally well at both temperatures. When BHK cells infected with HVJ-PB were incubated at 38 C, production of infectious virus, hemagglutinin, and neuraminidase was markedly restrained, whereas a considerable amount of viral nucleocapisid and envelope antigens was detected in the cells by complement fixation tests. These viral activities became detectable immediately after temperature shift-down from 38 to 32 C even at the later stage of infection. HVJ-pB was indistinguishable from HJV-W with respect to particle size, density, and morphological characteristics, but appeared to possess a higher neuraminidase activity and was inactivated more rapidly at 50 C than HVJ-W. HVJ-pB was less cytocidal and could easily cause latent infection in BHK and mouse L cells.

Animals

Rhesus monkeys kidney cells persistently infected with Simian Virus 40: production of defective interfering virus and acquisition of the transformed phenotype.

Monolayer cultures of LLC-MK2 rhesus monkey kidney cells became persistently infected with simian virus 40 (SV40) when infected at a multiplicity of infection of 100 plaque-forming units/cell. A stable carrier state developed characterized by extensive viral proliferation without obvious cytopathic effect other than the slow growth of these cultures. By 11 weeks all cells produced the SV40 T antigen. In contrast, less than 5% of the cells produced V antigen. Virus-free clonal isolates were obtained by cloning in SV40 antiserum. Continuous cultivation in antiserum resulted in a temporary cure of unclone cultures. When virus did eventually reappear in the "cured" cultures the titers remained low. The virus produced by the carrier culture was defective at both 31 and 37% c, and it interfered with the growth of standard s40 during mixed infection of CV-1 green monkey kidney cells. All of the interfering activity in carrier culture homogenates could be sedimented by centrifugation at 109,000 x g for 3 h. These cultures were completely susceptible to vesicular stomatitis virus. Extensive viral deoxyribonucleic acid synthesis occurred in CV-1 cells infected with carrier culture virus. Carrier culture homogenates are only slightly less cytopathic to CV-1 cells than standard SV40. The carrier culture express several properties of SV40 transformation.

Animals

Slow persistent infection caused by visna virus: role of host restriction.

Proviral DNA has been demonstrated by in situ hybridization in foci of cells of a lamb infected with the RNA slow virus visna. A few of these cells also contain the major virion structural antigen p30. This restriction in virus gene expression in the infected animal provides a mechanism for persistence of virus in this chronic infection.

Animals

Neuropathological effects of persistent infection of mice by mouse hepatitis virus.

Mouse hepatitis virus (MHV3) can persist for months in strains of mice with genetically controlled "semisusceptibility" to this virus. The pathology of the chronic neurological disease induced in these animals has been investigated by conventional histology and immunofluorescence. A2G mice develop a chronic choroidoependymitis and meningitis leading to severe hydrocephalus and hydromyelia. In C3H mice a widespread vasculitis was observed, with both viral antigens and bound immunoglobulins in vessal walls. No significant glomerulonephritis was found. Systemic amyloidosis was present in the spleen, liver, and kidneys. The virus was not detected in neural tissues, but brain and spinal cord lesions were found near inflammatory areas surrounding damaged vessels. It is suggested that viral persistance in ependymal cells is directly responsible for the lesions in A2G mice, whereas an immunopathological lesion of blood vessels of the central nervous system underlines the damage to mice of the C3H strain.

Animals

Evidence of chronic persistent infections with polyomaviruses (BK type) in renal transplant recipients.

Ten renal transplant recipients showing a significant increase in human polyomavirus antibodies, indicative of an acute infection, were followed up serologically over periods ranging from two months to more than two years. Fifty-four serum specimens were available for the study and they were tested by both haemagglutination-inhibition and complement-fixation. Polyomavirus antigens were prepared from the BK and SV40-like strains of polyomaviruses, and from the SV40 virus. One strain of polyomavirus, related to the BK strain was isolated from the urine of one of these patients. Two other BK strains were recovered from the urine and kidney, respectively, of transplant recipients not included in this study. Sera of these two patients were not obtained until the transplantation was made; they were already highly positive for polyomavirus antibodies, precluding the demonstration of an increase in antibody titer. Serologic results have shown that HAI antibodies persist at high titers throughout the observation period. This persistence ranged from two to four months (four cases), seven to eleven months (three cases) and thirteen to twenty months (three cases). In none of the cases could a decrease of high titer be demonstrated. Moreover, density gradient studies have shown that specific IgM antibodies also tend to persist over many months. Similar serologic results were obtained in complement-fixation tests with a BK antigen. Titers were at least 1 in 30 in the study group, but were not observed among healthy blood donors. All sera were uniformly negative for SV40 and SV40-like antigens. One polyomavirus isolation was successful from urine obtained six months after initial serologic evidence for a polyomavirus infection. The other two viruses were isolated from materials taken four and seven months after first detection of polyomavirus antibodies at high titer. Both serologic evidence and viral isolations seem to indicate that polyomaviruses (BK type) might cause a chronic infection in humans.

Animals

Mycodnaviridae is a clade of giant viruses that persistently infect zoosporic fungi.

Giant viruses of the phylum Nucleocytoviricota have emerged as particularly notable due to their increasingly recognized impacts on eukaryotic genome evolution. Their origins are hypothesized to predate or coincide with the diversification of eukaryotes, and they have been detected in hosts that span the eukaryotic tree of life. But surprisingly, such viruses have not been definitively found in Kingdom Fungi, though earlier genomic and metagenomic work suggests putative associations. Here we report both "viral fossils" and active infection by giant viruses in fungi, particularly in the zoosporic phyla Blastocladiomycota and Chytridiomycota. The recovered viral assemblies span up to 350 kb, encode over 300 genes, and form a monophyletic family-level clade within the Nucleocytoviricota related to orders Imitervirales and Algavirales, which we name Mycodnaviridae. We observed variation in infection status among the isolates including apparent active infection and transcriptionally suppressed states, suggesting that viral activation may be constrained to certain life stages of the host. Our experimental findings add to the limited natural virus-host systems available in culture for the study of giant viruses and expand the known host range of Nucleocytoviricota into a new kingdom that contains many model species. Mycodnaviridae have a global distribution, which invites inquiry into the implications of these infections for host traits, host genome evolution, and the metabolic impacts on ecosystems.

Giant Viruses