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Bacteriophage P4 capsid-size determination and its relationship to P2 helper interference.

The sid (size determination) gene product of phage P4 is known to be involved in capsid-size determination. Moreover, the capsid-size determination function interferes with the lytic development of its helper P2, presumably because the helper genome is too large to be packaged into P4-size capsids. In order to study P4-specified helper interference, we cloned the sid gene for expression during phage infection. Even though gpSid restores the capsid-size determination function of a sid defective P4 mutant, we find that gpSid alone is not sufficient to establish full interference of helper P2 phage production. Complete helper interference requires some P4 function in addition to gpSid. Complementation tests show that none of the known P4 genes display this property. We propose that P4 encodes a yet-unidentified function that in concert with gpSid establishes full P2 helper interference at the level of capsid-size determination.

Bacteriophage P2↗

Agents for treating human immunodeficiency virus infection.

The replicative cycle of the human immunodeficiency virus (HIV) is reviewed, and currently used and investigational agents directed against the virus are discussed. The first step in the replication of HIV is selective binding of the envelope glycoprotein to CD4 receptors located on T lymphocytes. The virion is then uncoated within the cytoplasm, yielding viral genomic RNA. Reverse transcriptase uses the viral RNA as a template to form single-stranded DNA, which is duplicated to form proviral DNA through the activity of ribonuclease H. Host RNA polymerases transcribe the integrated proviral DNA into messenger RNA, and there is subsequent translation to viral proteins. After translation, further modification of precursor polyproteins is necessary to produce functional peptides. The assembled virus then buds from the cell surface and invades other cells. Targets of drug intervention in the replicative cycle include (1) binding and entry, (2) reverse transcriptase, (3) transcription and translation, and (4) viral maturation and budding. Inhibitors of binding and entry include recombinant soluble CD4, immunoadhesins, peptide T, and hypericin. Nucleoside reverse-transcriptase inhibitors include zidovudine, didanosine, zalcitabine, and stavudine. Foscarnet, tetrahydroimidazobenzo-diazepinthione compounds, and nevirapine are some nonnucleoside reverse-transcriptase inhibitors. Inhibitors of transcription and translation include antagonists of the tat gene and GLQ223. Castanospermine, N-butyldeoxynojirimycin, and protease inhibitors interfere with viral maturation and budding. Drug combinations that have been or are being investigated include zidovudine plus interferon alfa, zidovudine plus zalcitabine, and zidovudine plus didanosine. Four agents currently have approved labeling for use against HIV infection: zidovudine, didanosine, zalcitabine, and stavudine. Monotherapy with zidovudine remains the treatment of first choice. Although progress has been made in developing drug therapies for HIV infection, more selective and more potent drugs are urgently needed. The best approach at present is to optimize the use of available agents, continue to investigate new therapies, and educate the public about prevention.

Antiviral Agents↗

Hybrid cytomegalovirus enhancer-h1 promoter-based plasmid and baculovirus vectors mediate effective RNA interference.

Plasmid and viral vectors harboring an RNA polymerase (Pol) III promoter would be useful in achieving sustained cellular expression of short interfering RNA (siRNA) to inhibit disease-associated genes. Given that transcription machineries directed by certain Pol II and III promoters may use common factors, we investigated whether the enhancer of the Pol II cytomegalovirus (CMV) immediate-early promoter could improve the efficacy of RNA interference mediated by the Pol III H1 promoter. We constructed a hybrid promoter by appending the CMV enhancer 5' to the H1 promoter. In the context of plasmid vectors, the hybrid promoter provided up to 50% greater inhibition of the expression of target genes than the unmodified H1 promoter and extended the silencing effect beyond that provided by the H1 promoter. Insect baculoviruses can infect a broad range of mammalian cell types. We constructed a baculovector expression cassette in which the synthesis of short hairpin RNA was under the control of the hybrid CMV enhancer-H1 promoter. This recombinant baculovirus vector was capable of suppressing expression of a target gene by 95% in cultured cells and by 82% in vivo in rat brain. These findings indicate that the hybrid CMV enhancer-H1 promoter can be used favorably for RNA interference.

Animals↗

Different murine cell lines manifest unique patterns of interference to superinfection by murine leukemia viruses.

Interference to superinfection by murine leukemia viruses (MuLV) was analyzed in cells chronically infected with other MuLVs. A new sensitive focal immunofluorescence assay employing monoclonal antibodies was used to detect foci of virus infection in live cell monolayers. Monoclonal antibodies were chosen which reacted with the challenge virus but not with the interfering virus. The results obtained confirmed some of the findings of previous workers using Moloney sarcoma virus pseudotypes as challenge viruses on mouse and nonmouse cells. In addition, SC-1 mouse cells nonproductively infected with defective spleen focus-forming virus were found to be resistant to superinfection by recombinant dual-tropic viruses. Furthermore, results indicated that interference patterns between some pairs of viruses differed in different cell types. Thus, xenotropic MuLV blocked superinfection by recombinant dual-tropic viruses in SC-1 feral mouse cells, but not in two lines of NZB mouse cells. Also, in a Mus dunii tail fibroblast cell line some unique patterns of interference were observed. One ecotropic MuLV blocked infection by two xenotropic viruses and three recombinant dual-tropic viruses. Two other ecotropic viruses blocked infection by only one of the two xenotropic viruses tested. These two ecotropic viruses also differed from each other in their ability to block the three recombinant viruses. In addition, two strains of amphotropic MuLV also differed in their interference capacity. As expected, strain 1504A did not block any viruses tested, whereas strain 4070A surprisingly blocked one xenotropic and one ecotropic MuLV. The lack of homogeneity in interference patterns seen in the Mus dunii cells suggested either that a large number of heterogeneous virus receptors were present on this cell line or that interference in these cells might operate through a mechanism other than blocking of virus receptors by the envelope protein of the interfering virus.

Animals↗

Interference in bacteriophage growth by a resident plasmid lambda dv. II. Role of the promoter-operator.

The susceptibilities to interference by lambdadv of a set of lambda phages differing in the genetic structure of their right promoter-operator (pRoR) were compared. For this purpose mutant phages were added to lambdadv-carrier cells at various multiplicities, and abilities to escape from interference, as represented by percentages of infected complexes to produce progeny phages, were compared. It was observed that phages that carry strongly constitutive pRoR were able to escape from interference at a low multiplicity of infection, whereas phages with weakly constitutive pRoR were able to escape only when a large number of these genomes entered into a cell. Several mutations in the pRoR were arranged in order of their constitutivity, or ability to escape from interference. Next, the abilities of a set of lambdadv plasmids differing in their pRoR to cause interference were compared. The results showed that interference increased with increase in constitutivity of the pRoR in the plasmid genome. These observations are thought to reflect a regulatory system of the plasmid replicon, and a possible mechanism for the system is discussed.

Coliphages↗

Togavirus interference in Culex annulirostris mosquitoes.

Culex annulirostris mosquitoes infected with SFV-S, a temperature-sensitive, small-plaque mutant of Semliki Forest virus isolated from cultured Aedes albopictus cells, could not be infected later with wild-type virus (SFV-W). Interference occurred as soon as 24 h after infection with SFV-S. In mosquitoes infected with a mixture of the two viruses, both replicated normally.

Aedes↗

Characteristics of Sindbis virus temperature-sensitive mutants in cultured BHK-21 and Aedes albopictus (Mosquito) cells.

A number of the temperature-sensitive mutants of Sindbis virus originally isolated and characterized by Burge and Pfefferkorn (1966, 1968) were reexamined for their abilities to grow and complement one another in cultured BHK-21 and Aedes albopictus (mosquito) cells. The response of the mutants to conditions of high and low temperature was similar in cultured cells of both the vertebrate and invertebrate hosts. Complementation experiments in BHK-21 cells produced growth patterns similar to those described by Burge and Pfefferkorn for chicken embryo fibroblast cells (1966) and placed the mutants into six nonoverlapping complementation groups. When examined in the cultured mosquito cells, only three of the nine mutants used in this study demonstrated complementation under a variety of experimental conditions. Homologous interference experiments demonstrated that the unusual patterns of complementation obtained in the A. albopictus cells did not result from an inefficient infection of the invertebrate cells by the mutants.

Aedes↗

Biological activity of hepatitis B antigens in cell culture.

Direct interference by purified hepatitis B surface antigen or virus particles was not demonstrated in tissue culture. Significant levels of interferon were not induced. The surface antigen did not block the adsorption of other viruses.

Adsorption↗

Transgenically expressed cucumber mosaic virus RNA 1 simultaneously complements replication of cucumber mosaic virus RNAs 2 and 3 and confers resistance to systemic infection.

Tobacco plants transformed with a cDNA copy of RNA 1 of the Fny strain of cucumber mosaic virus (CMV) promoted the asymptomatic accumulation of inoculated viral RNAs 2 and 3, which could be detected in noninoculated leaves, suggesting that the transgene also permitted viral long-distance movement. Typical symptoms of infection appeared later and correlated with the appearance of viral RNA 1 regenerated from the transgenic mRNA. Although all R0-generation plants were susceptible to Fny-CMV, one line displaying variable susceptibility to the virus in R1-and R2-generations led to selected R3-generation lines with systemic resistance to Fny-CMV. In the inoculated leaves of resistant plants, a dramatic decrease in the accumulation of viral RNA 1 was observed, relative to susceptible plants. No viral RNAs were detected in noninoculated leaves of the resistant plants, but such leaves were susceptible to infection. Furthermore, these leaves could sustain replication of inoculated CMV RNAs 2 and 3, indicating that a complete transgene-silencing had not been induced. Although a transgene-mediated, CMV RNA 1-suppression occurred in the inoculated leaf of resistant plants, the absence of a complete systemically acquired silencing suggests the existence of additional interferences with viral infection that prevented systemic infection by viral RNAs 2 and 3.

Cucumovirus↗

Interference between bunyaviruses in Aedes triseriatus mosquitoes.

Inhibition of the replication of alternate California serogroup bunyaviruses in Aedes triseriatus mosquitoes has been observed for mosquitoes previously infected with La Crosse (LAC) virus. By contrast, prior infection of mosquitoes with LAC virus did not interfere significantly with the subsequent infection and replication of Guaroa bunyavirus (Bunyamwera serogroup), or heterologous viruses such as West Nile flavivirus, or vesicular stomatitis rhabdovirus.

Aedes↗

Variation in homotypic and heterotypic interference by defective interfering viruses derived from different strains of Semliki Forest virus and from Sindbis virus.

There was strong interference between various virulent and avirulent strains of Semliki Forest virus (SFV) and their respective defective interfering (DI) viruses but in other combinations interference was variable: it could be equally strong, weak or could not be demonstrated. On passage, this spectrum of interfering activity changed, some combinations showing greater interference than before and others less. Heterotypic interference between DI SFV, DI Sindbis virus and standard viruses was clearly demonstrated although this was strongest between DI SFV preparations and Sindbis standard virus than in the reciprocal combinations. Variation in interference between DI SFVs and different SFV strains was similar in magnitude to that between DI SFVs and Sindbis virus, suggesting that a similar DI RNA sequence is recognized by both viruses.

Animals↗

Cytoplasmic recruitment of INI1 and PML on incoming HIV preintegration complexes: interference with early steps of viral replication.

During the early phase of the retroviral life cycle, only a fraction of internalized virions end up integrating their genome into the chromosome, even though the resulting proviruses are almost systematically expressed. Here, we reveal that incoming retroviral preintegration complexes trigger the exportin-mediated cytoplasmic export of the SWI/SNF component INI1 and of the nuclear body constituent PML. We further show that the HIV genome associates with these proteins before nuclear migration. In the presence of arsenic, PML is sequestered in the nucleus, and the efficiency of HIV-mediated transduction is markedly increased. These results unveil a so far unsuspected cellular response that interferes with the early steps of HIV replication.

Active Transport, Cell Nucleus↗

Double infection of BALB/c mice with Rauscher murine leukemia and Herpes simplex virus type 2.

When BALB/c mice were first infected with Rauscher murine leukemia virus (MuLV-R) and then superinfected with Herpes simplex virus type 2 (HSV-2) the inhibition of the evolution of splenomegaly was observed. The effect did not depend on the route of HSV-2 administration. Experiments in which potent anti-interferon serum was administered to double infected mice suggested that the antagonism between MuLV-R and HSV-2 was not mediated by endogenous interferon, HSV-2 was found to replicate in the LPS stimulated spleen cells which are also target cells for MuLV-R; this suggested that the intrinsic interference between both viruses could take place. Mice with Rauscher virus induced disease were found to be more susceptible to infection with Herpesviruses than normal mice.

Animals↗

[Differentiating markers of virulent and attenuated (cold-adapted) strains of influenza A virus].

A high sensitivity of influenza virus to replication at a high temperature and a reduction of the temperature optimum of the neuraminidase activity are important genetic markers correlating with the degree of attenuation for the man. Cold-adapted variants of influenza virus produced in the course of passages at a low (25-28 degrees C) temperature are thermo-sensitive. The passage of the viruses at the optimal temperature (32 degrees C) does not change the range of thermal sensitivity even in variants, harmless for adult persons. The interfering activity of influenza viruses with different levels of human virulence was studied. A considerable portion of the examined cold-adapted strains differs from the original virulent strains in the capacity to interfere with the challenge virus in chick embryo fibroblast cell culture. However some thermosensitive variants as well as original strains do not react in interference tests. This indicates the lack of complete correlation between the interfering activity, thermal sensitivity and human virulence of influenza virus.

Adaptation, Physiological↗

Antiviral effects of human immunodeficiency virus type 1-specific small interfering RNAs against targets conserved in select neurotropic viral strains.

RNA interference, a natural biological phenomenon mediated by small interfering RNAs (siRNAs), has been demonstrated in recent studies to be an effective strategy against human immunodeficiency virus type 1 (HIV-1). In the present study, we used 21-bp chemically synthesized siRNA duplexes whose sequences were derived from the gp41 gene, nef, tat, and rev regions of viral RNA. These sequences are conserved in select neurotropic strains of HIV-1 (JR-FL, JR-CSF, and YU-2). The designed siRNAs exerted a potent antiviral effect on these HIV-1 strains. The antiviral effect was mediated at the RNA level (as observed by the down-regulation of the HIV-1-specific spliced transcript generating a 1.2-kbp reverse transcription [RT]-PCR product) as well as viral assembly on the cell membrane. Spliced transcripts (apart from the most abundant transcript generating a 1.2-kbp RT-PCR product) arising from an unspliced precursor likely contributed, albeit to a lesser extent, to the antiviral effect. The resultant progeny viruses had infectivities similar to that of input virus. We therefore conclude that these siRNAs interfere with the processing of the unspliced transcripts for the gp41 gene, tat, rev, and nef, eventually affecting viral assembly and leading to the overall inhibition of viral production. Apart from using the gp41 gene as a target, the conservation of each of these targets in the above-mentioned viral strains, as well as several primary isolates, would enable these siRNAs to be used as potent antiviral tools for investigations with cells derived from the central nervous system in order to evaluate their therapeutic potential and assess their utility in inhibiting HIV-1 neuropathogenesis and neuroinvasion.

Antiviral Agents↗

Interference with polyhedral inclusion body (PIB) production in Trichoplusia ni cells infected with a high passage strain of Autographa californica nuclear polyhedrosis virus (NPV). Brief report.

Trichoplusia ni cells infected with a low passage (LP) strain of Autographa californica nuclear polyhedrosis virus (NPV) produce large numbers of polyhedral inclusion bodies (PIBs). Interference with PIB production occurs when T. ni cells are first inoculated with a high passage (HP) strain and then challenged with the LP strain. PIB production is reduced 100 fold to the level seen with HP virus infection only.

Cell Line↗

The alpha isoform of protein kinase CKI is responsible for hepatitis C virus NS5A hyperphosphorylation.

Hepatitis C virus (HCV) has been the subject of intensive studies for nearly two decades. Nevertheless, some aspects of the virus life cycle are still a mystery. The HCV nonstructural protein 5A (NS5A) has been shown to be a modulator of cellular processes possibly required for the establishment of viral persistence. NS5A is heavily phosphorylated, and a switch between a basally phosphorylated form of NS5A (p56) and a hyperphosphorylated form of NS5A (p58) seems to play a pivotal role in regulating HCV replication. Using kinase inhibitors that specifically inhibit the formation of NS5A-p58 in cells, we identified the CKI kinase family as a target. NS5A-p58 increased upon overexpression of CKI-alpha, CKI-delta, and CKI-epsilon, whereas the RNA interference of only CKI-alpha reduced NS5A hyperphosphorylation. Rescue of inhibition of NS5A-p58 was achieved by CKI-alpha overexpression, and we demonstrated that the CKI-alpha isoform is targeted by NS5A hyperphosphorylation inhibitors in living cells. Finally, we showed that down-regulation of CKI-alpha attenuates HCV RNA replication.

Casein Kinase 1 epsilon↗