LOWERED SUSCEPTIBILITY TO EXOGENOUS INTERFERON DURING THE FIRST STAGES OF VIRUS INFECTION OF CELLS.
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Armstrong, D. (The Children's Hospital of Philadelphia, Philadelphia, Pa.), G. Henle, N. L. Somerson, and L. Hayflick. Cytopathogenic mycoplasmas associated with two human tumors. I. Isolation and biological aspects. J. Bacteriol. 90:418-424. 1965.-Mycoplasmas were isolated from cell cultures of two benign human tumors. The first isolate contained two mycoplasmas, one a well-known human species (Mycoplasma hominis type I) and frequent tissue culture contaminant, and the other a recently reported new type. The second isolate was a mycoplasma of the newly described type. The mycoplasmas could be reisolated, after one or more passages through tissue culture, from extracts of the original tumor tissue. The relationship of the organisms to the neoplasms remains obscure. Both isolates produce cytopathic effect (CPE) and acidification of medium in a variety of tissue cultures. The CPE may be diminished, but not abolished, by increasing concentrations of arginine in the tissue culture media. Infection of various tissue cultures with the mycoplasmas did not result in interference to super-infection with vesicular stomatitis virus.
The predicted amino acid sequence of a newly identified gene of the insect baculovirus Autographa californica nuclear polyhedrosis virus was similar to several uridine 5'-diphosphate (UDP)-glucuronosyl transferases and at least one UDP-glucosyl transferase. Genetic and biochemical studies confirmed that this gene encodes an ecdysteroid UDP-glucosyl transferase (egt). This enzyme catalyzes the transfer of glucose from UDP-glucose to ecdysteroids, which are insect molting hormones. Expression of the egt gene allowed the virus to interfere with normal insect development so that molting was blocked in infected larvae of fall armyworm (Spodoptera frugiperda).
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Unlike other strains tested, the RA 27/3 vaccine strain of rubella virus, attenuated in human fibroblasts, failed to inhibit superinfection with Newcastle disease virus (i.e. induce intrinsic interference). Since proteins of the input virion are known to lead to intrinsic interference, these may differ in the RA 27/3 strain from those in other rubella strains.
Homologous interference between a temperature-sensitive small plaque mutant (HVJ-pB) derived from an HVJ (haemagglutinating virus of Japan - the Sendai strain of parainfluenza I virus) carrier culture of BHK cells and the original wild-type virus (HVJ-W) has been investigated. Prior infection of LLCMK2, HeLa, BHK or mouse L cells with HVJ-pB, both at permissive and non-permissive temperatures, for 24 h resulted in a reduced yield of superinfecting HVJ-W, reflecting a smaller number of cells capable of producing the superinfecting virus. However, HVJ-pB did not interfere with the replication of vesicular stomatitis virus, Sindbis virus or Newcastle disease virus. Interference in this system seems to be due to inhibition of the attachment of superinfecting HVJ-W as a result of intracellular mechanisms operating at a late stage in the replication of the interfering virus. There is also blocking or destruction of cellular receptors by extra-cellular particles of the interfering virus. Protein synthesis coded for by the complete virus genome is required to establish and maintain the interference, and treatment with actinomycin D has no effect on the interference phenomenon.
Ostensibly comparable mutants of bovine papillomavirus type 1 (BPV-1) affecting the E1 open reading frame that were constructed in several laboratories have been reported to exhibit either reduced or increased transformation efficiencies in established mouse cell lines relative to wild-type BPV-1 DNA. To resolve these discrepancies, we have reexamined many of the mutants in mouse C127 cells by using focus formation assays. Our primary conclusions are that all E1 mutants tested consistently generated reduced numbers of transformants and that the reduced transformation was not due to cell toxicity associated with E1 mutations, as had been proposed. Our results can best be explained by the inability of the E1 mutants to replicate extrachromosomally, therefore leading to a rapid loss of the BPV-1 DNA and consequently, reduced transformation. In support of this hypothesis, we demonstrated that the human papillomavirus type 11 E1 protein was able to suppress BPV-1 transformation, probably because of interference with BPV-1 replication. Therefore, we attribute the phenotypic disparities reported by the various laboratories to still undefined differences in assay conditions.
BACKGROUND: There is a limited amount of published data on the interference of hepatitis B virus (HBV) on hepatitis C virus (HCV). The aim of this study was to investigate the effect of concurrent HBV infection on serum titers of HCV RNA and HCV antibody profiles in chronic HCV infection. METHODS: The clinical and virological profiles (serum titers of HCV RNA, HCV genotypes and antibody profiles) of 25 patients with chronic HBV-HCV coinfection were compared with those of 25 age- and sex-matched patients with HCV infection alone. RESULTS: Among the 25 patients with HBV-HCV coinfection, only 3 were found hepatitis Be antigen (HBeAg) and HBV DNA positive by hybridization assays, and the other 11 were found HBV DNA positive by polymerase chain reaction. Genotype 1b was dominant in both HBV-HCV coinfection and HCV infection alone (64% versus 84%, P > 0.1). Patients with HBV-HCV coinfection had significantly lower alanine aminotransferase (ALAT) levels and inflammatory scores but higher fibrosis scores than those with HCV infection alone. Serum titers of HCV RNA were significantly lower in HBV-HCV coinfection than in HCV infection alone. The frequency and relative intensity of antibody response to core, E2/NS1, NS3, and NS5 showed no significant difference between the two groups, but antibody response to NS4 was diminished significantly in HBV-HCV coinfection. CONCLUSIONS: In HBV-HCV coinfection, serum levels of HBV DNA are usually low or undetectable. Concurrent HBV infection, however, could interfere with HCV replication and suppress antibody response to NS4. The biological significance of selective inhibition of humoral immune response to NS4 in HBV-HCV coinfection should be further studied.
Two different human vaccine trials examined interference arising from sequential administration of vaccines against heterologous alphaviruses. The first trial indicated that persons previously vaccinated against Venezuelan equine encephalitis virus (VEEV) exhibited poor neutralizing antibody responses to a live attenuated chikungunya virus (CHIKV) vaccine (46% response rate). The second trial prospectively examined neutralizing antibody responses to live attenuated VEEV vaccine in persons previously inoculated with either CHIKV vaccine or placebo. Following seroconversion to CHIKV, CHIKV vaccine recipients' geometric mean titers (GMTs) to VEEV by 80% plaque-reduction neutralization titration never exceeded 10, compared with a peak GMT of 95 after VEEV vaccination for alphavirus-naive volunteers who initially received placebo (P < .003). ELISA antibody responses demonstrated cross-reactive IgG to VEEV after primary CHIKV immunization and then an anamnestic response upon subsequent VEEV vaccination. These data indicate that preexisting alphavirus immunity in humans interferes with subsequent neutralizing antibody response to a live attenuated, heterologous vaccine.
RNA interference (RNAi) is widely used to silence genes in plants and animals. It operates through the degradation of target mRNA by endonuclease complexes guided by approximately 21 nucleotide (nt) short interfering RNAs (siRNAs). A similar process regulates the expression of some developmental genes through approximately 21 nt microRNAs. Plants have four types of Dicer-like (DCL) enzyme, each producing small RNAs with different functions. Here, we show that DCL2, DCL3 and DCL4 in Arabidopsis process both replicating viral RNAs and RNAi-inducing hairpin RNAs (hpRNAs) into 22-, 24- and 21 nt siRNAs, respectively, and that loss of both DCL2 and DCL4 activities is required to negate RNAi and to release the plant's repression of viral replication. We also show that hpRNAs, similar to viral infection, can engender long-distance silencing signals and that hpRNA-induced silencing is suppressed by the expression of a virus-derived suppressor protein. These findings indicate that hpRNA-mediated RNAi in plants operates through the viral defence pathway.
We studied the impact of various infectious and proinflammatory agents on the induction of peripheral T cell tolerance. Adoptive transfer of CD8+ T cells from lymphocytic choriomeningitis virus (LCMV) T cell receptor transgenic mice into LCMV antigen transgenic mice expressing the LCMV glycoprotein epitope (gp) 33-41 under control of a major histocompatibility complex class I promoter led to efficient induction of peripheral tolerance after a period of transient activation. If, however, the recipient mice were challenged with viral or bacterial infections or proinflammatory agents (lipopolysaccharide or Poly:IC) early after cell transfer, tolerance induction was prevented and instead, CD8+ T cell activation leading to vigorous expansion and generation of cytolytic activity ensued. This became manifest in significant immunopathology mainly involving destruction of the splenic architecture and lysis of antigen-expressing lymphocyte and macrophage populations. Important parameters involved in the activation of host-reactive T cells by nonspecific infectious agents included the presence, localization, and quantity of the specific transgene-encoded self-antigen; in contrast, CD4+ T cells were not required. In mice surviving the acute phase, the transferred CD8+ T cells persisted at high levels in an anergic state; they were unable to generate cytolytic activity in vitro or to control LCMV infection in vivo. These results impinge on our understanding of the role of infectious agents in graft verus host reactions towards minor histocompatibility antigens.
Serial undiluted passage of Semliki Forest virus in a clone of Aedes albopictus cells resulted in a marked decrease in infectious virus yields due to the generation and accumulation of defective interfering particles. Virus from the third passage had a high particle/infectivity ratio and interfered specifically with homologous but not heterologous standard virus replication. Two RNA species of molecular weights 0.78 X 10(6) and 0.61 X 10(6) were the major RNA components of purified passage 4 virus. These RNA species were also the predominant virus RNA species detected in cells infected with passage 3 virus. Synthesis of standard virus RNA and virus-specified protein was much reduced in passage 3 virus-infected cells. Interference with standard virus replication and the synthesis of large amounts of defective interfering RNA were also observed in chicken embryo cells infected with passage 3 virus from mosquito cells.
Galasso, G. J. (University of North Carolina School of Medicine, Chapel Hill), and D. G. Sharp. Effects of heat on the infecting, antibody-absorbing, and interfering powers of vaccinia virus. J. Bacteriol. 89:611-616. 1965.-At 56 C the infectivity of vaccinia virus particles is destroyed rapidly, but even when it is reduced by a factor of 10(6) the particles are capable of producing strong interference in L cells. The rate constant K for thermal inactivation of plaque-forming power is greater than that for interfering power by the factor e(3.8) or about 45 times. At 37 C both properties of the virus decline more slowly and at equal rates. The temperature coefficient of K is discontinuous in the region of 40 C, indicating quite different activation energies for the reactions above and below this critical point. The degradation of interfering power exhibits a similar discontinuity, although less in magnitude, but none has been found in the antibody-reactive power of the virus, which is much more heat resistant.
Infection of PK15 cells with various strains of Hog Cholera (HCV, togaviridae) induces a transient refractory state to VSV. The reverse plaque procedure is convenient for HCV titration of virulent, "chronic" and attenuated strains.
Incomplete Sendai virus particles (I particles) interfered with the replication of several strains of infectious Sendai virions (standard virus) but not with the replication of Newcastle disease virus, mumps virus, or Sindbis virus. I particles did not induce interferon, and ultraviolet irradiation of I particles abolished their ability to interfere. Protein synthesis was not necessary to establish interference. The degree of interference depended on the interval between exposure of cells to the I particles and challenge by standard virus, and this was reflected in the degree of inhibition of virus-specific ribonucleic acid (RNA) synthesis in infected cells. The most dramatic change was decreased accumulation of 50S virus-specific RNA in infected cells. RNA species sedimenting slower than 50S were not as markedly reduced in total amount, but hybridization experiments showed that a substantial portion of these slowly sedimenting RNA species were plus strands, presumably representing replicas of the RNA species in I particles. When I particles in insufficient numbers to interfere were added to cells as late as 8 hr after standard virus, there were no obvious changes in virus-specific RNA species in the cells; however, significant amounts of 19 and 25S RNA species, representing progeny of the I particles, appeared in the culture medium. It was concluded that interference was an intracellular event affecting an early step in virus replication. Competition by I particles for cell sites or substrates needed by standard virus seemed a less likely mechanism of interference than competition for enzymes specified by standard virus.