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Biomedical subjects

C Jungwirth

Publications and source records attributed to C Jungwirth.

At least 37 records · Page 2Linked to original sources

Vinculin and 36 kDa protein are not tyrosine-phosphorylated in Rous sarcoma virus infected cells which have been treated with interferon.

The expression of membrane-associated transformation-specific parameters was analyzed in de novo Rous sarcoma virus (strain SR-RSV-D) infected chicken embryo fibroblasts pretreated with homologous interferon. Cellular morphology, hexose transport, microfilament organization, and tyrosine-phosphate content of two primary substrates of the transformation-generating viral kinase, pp60src, were found indistinguishable from non-infected controls. These observations support the hypothesis that vinculin and possibly 36 kDa protein are involved in microfilament organization and that tyrosine-phosphorylation of these structural proteins is a prerequisite for the rearrangement of microfilaments during transformation. In de novo infection, interferon pretreatment reduces viral protein synthesis and pp60src activity as compared to non-treated, SR-RSV-D infected cells. However, the phosphotyrosine content of total cellular proteins as measured under steady state conditions is as high in interferon-pretreated as in nontreated transformed cells.

Animals↗

Synthesis of early vaccinia-virus-specific enzymes under conditions of immediate early gene expression.

Cycloheximide reversal experiments in chick embryo fibroblasts and mouse L-929 cells indicate that the poxvirus-induced enzymes DNA polymerase and 'alkaline' DNase are immediate early gene products of the virus. In contrast to the vaccinia-WR-coded enzyme under conditions of immediate early gene expression the cowpox-virus-induced DNA polymerase is made only in very small amounts. The studies are consistent with the notion that all poxvirus-specific early proteins may be immediate early viral gene products.

Animals↗

Herpes simplex virus-induced cell surface protrusions.

Cell surface alterations following herpes simplex virus infection were studied by scanning electron microscopy at different times after infection of chick embryo fibroblasts and Vero cells. Beginning at 4 h, an increasing number of cells showed numerous microvillus protrusions 0.12-0.18 micron in diameter and 0.3 micron in length. These structures could also be stained on Vero cells with fluorescent phalloidin, indicating the presence of filamentous actin within them. At 12 h, the number of chick embryo fibroblasts with virus-induced microvillus-like structures began to decrease. There was an increase in virus titer in the medium beginning at 24 h, and it was therefore considered unlikely that the microvilli induced earlier had any function in virus release. Similar to poxvirus-induced microvilli formation, DNA and protein synthesis inhibitors prevented the induction of microvilli, indicating the involvement of a late viral function. N1-isonicotinoyl-N2-3-methyl-4-chlorobenzoylhydrazine inhibited the formation of herpesvirus-induced microvilli in chick embryo fibroblasts but not in Vero cells. As this inhibitor had no effect on virus replication in either cell type, it is likely that the inhibition of microvillus formation was due to an anticellular activity of the drug.

Animals↗

Isolation of early viral proteins from poxvirus-infected chick embryo fibroblasts by DNA-cellulose chromatography and inhibition of their synthesis by chicken interferon.

Up to seven early poxvirus-specific proteins have been isolated from vaccinia-WR-infected and cowpox-virus-infected chick embryo fibroblasts by affinity chromatography on native DNA-cellulose columns. The proteins have been characterized by one-dimensional sodium dodecyl sulfate/polyacrylamide gel electrophoresis and by nonequilibrium pH-gradient electrophoresis. The molecular weights of the viral proteins were determined by comparison with proteins of known molecular weight and are comparable to several of the vaccinia-WR-specific DNA-binding proteins isolated previously from infected L-929 cells by Solosky J. M., Esteban M. and Holowczak J.A. [J. Virol. 25, 263-273 (1978)]. The viral proteins binding reversibly to native DNA have been classified as immediate early viral gene products. Synthesis of cowpox-virus-induced early DNA-binding proteins is inhibited in chick cells pretreated with homologous interferon at a concentration of 500--1000 units/ml.

Animals↗

Reversible inhibition of poxvirus replication by cycloheximide during the early phase of infection.

Infection of primary chick embryo fibroblasts with Vaccinia WR, IHD-W, and cowpox virus even at high m.o.i. does not cause drastic early inhibition of host cell protein synthesis. This contrasts with the infection by these viruses of many eucaryotic cells. Cellular protein synthesis of mouse L cells is also only partially inhibited after infection with cowpox virus up to a m.o.i. of 2500 e.b. As predicted by Moss and Filler (1970, J. Virol. 5, 99-108) no irreversible inhibition of poxvirus replication is observed in these cells following the addition of cycloheximide early after infection. The viral cores which accumulate in chick embryo fibroblasts in the presence of cycloheximide are further uncoated after removal of the protein synthesis inhibitor. These poxvirus host cell systems can be used to identify in vivo immediate and putative delayed early viral gene products. Formation of progeny virus, viral DNA synthesis, the sequential formation of viral proteins, and sensitivity to interferon has been demonstrated in chick embryo fibroblasts after reversal of the cycloheximide block. These studies indicate a synchronized replication cycle of poxvirus after reversal of the cycloheximide block.

Animals↗

Interferon inhibits establishment of fibroblast infection with avian retroviruses.

Pretreatment of chick embryo fibroblasts (CEF) with low doses of homologous interferon (16 u/ml) drastically inhibits cell transformation by, and replication of Rous sarcoma virus (RSV). Treatment of chick cells with 16 u/ml of interferon before de novo infection with a transformation defective (td) mutant-RSV, also resulted in a reduction of extracellular virus particles. This was determined by infectivity titrations, virus associated reverse transcriptase (RT) activity and measurement of metabolically radioactively labelled virus particles. The viral proteins pr 180, pr 76, p 27, p 19 and p 12 were still synthesized in interferon-treated cells in an unaltered form, although at slightly reduced levels. No difference in the pattern of structural proteins could be detected between virus particles harvested from cells treated with interferon and from control cells. In contrast to de novo infected cells, concentrations of interferon as high as 200 u/ml had no influence on the reversible transformation of cloned fibroblasts infected with a temperature sensitive mutant of RSV. In addition, fibroblasts infected with td-SR-RSV-D before addition of interferon showed only a marginal effect on formation of infectious virus even after treatment with 200-500 u/ml of interferon. This was not caused by interferon-resistance of the td-SR-RSV-D infected cells since viral protein synthesis by superinfecting Vesicular stomatitis virus (VSV) was as sensitive to interferon as in cells not preinfected with retrovirus. Our results support the notion that exogenous infection of fibroblasts with avian retrovirus is inhibited by interferon during an early phase of the replication cycle.

Animals↗

Analysis of the methylated 'cap' structures of vaccinia mRNA by two-dimensional thin-layer chromatography.

Two different twodimensional cellulose thinlayer separations for blocked, methylated mRNA 5'-termini are described. They allow rapid analysis even of complex mixtures of mRNA "cap" structures on the basis of their methyl group content and base composition. These simple procedures are especially useful for the analysis of [3H-methyl]-labeled mRNA in combination with tritium fluorography. A qualitative and quantitative analysis of the methylated "cap" structures of in vitro labeled Vaccinia "core" mRNA is presented. The presence of methylated "cap" structures in Vaccinia RNA increases the in vitro translation efficiency of methylated Vaccinia RNA over Vaccinia RNA transcribed in the absence of a methyl group donor.

Chromatography, Thin Layer↗

RNA methylation in vaccinia virus-infected chick embryo fibroblasts treated with homologous interferon.

Interferon-pretreatment of vaccinia-infected chick embryo fibroblasts resulted in a greater than 50% decrease in ribose methylation of the penultimate "cap" nucleotide in virus-specific mRNA. However, in contrast to results obtained with cell-free systems, in intact infected cells there was (a) no detectable reduction in methylation of the 5'-ultimate m7G of viral mRNA; (b) a virus specificity of the interferon-induced change in mRNA "CAP"-methylation seems unlikely and (c) analysis of the ribosomal and transfer RNA fractions isolated from interferon-treated and control cells revealed identical patterns of methylated nucleotides. Thus, the interferon-induced change in methylation is specific for mRNA "CAPS".

Cells, Cultured↗

In situ assay of poxvirus-induced and virion-contained deoxyribonucleases in DNA polyacrylamide gels.

Cowpox virus and vaccinia virus WR specific DNases were identified by an in situ assay using DNA-containing acrylamide gels. A DNase present in the isolated virions of strain cowpox and vaccinia WR was identified. Its properties as determined by the in situ assay resembled those of the well-characterized DNase V1. The assay was also used to follow the time course of 'acid' DNase induction by cowpox virus in primary chick embryo fibroblasts.

Cells, Cultured↗

Impairment by interferon of mitogen-induced DNA synthesis in chick lymphocytes.

Chick interferon preparations inhibit mitogen-induced DNA synthesis of chicken peripheral and spleen lymphocytes. Mock interferon preparations showed also some inhibition of mitogen-induced DNA synthesis. The degree of inhibition is concentration dependent but varies also with the relative time of addition of homologous interferon and mitogen. Addition of the interferon preparations 6 h before mitogen resulted in a stronger inhibition of DNA synthesis than if the interferon preparations and mitogen were added at the same time. The interferon preparations seem to affect the metabolism of lymphocytes in a mroe general way and not only the trigger mechanism of the mitogenic response since addition of interferon even 24 h after the mitogen inhibits the induced DNA synthesis.

Animals↗