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Biomedical subjects

L Montagnier

Publications and source records attributed to L Montagnier.

11 recordsLinked to original sources

[Specific phosphorylation of a calf serum protein by a kinase from the cell surface].

A protein of molecular weight approximately 200,000, which exists in trace amounts in calf serum, is specifically phosphorylated by an enzyme located at the surface of cultured cells. The emzymatic reaction utilizes ATP, is enhanced by Mg++ and Zn++ ions, and is not dependent on cyclic AMP. This kinase activity is associated with normal growing fibroblasts but disappears when they are contact-inhibited. It remains high, however, in transformed and malignant cells, whatever their growth state.

Animals

Cell-density-dependence for growth in agarose of two human lymphoma lines and its decrease after Epstein-Barr virus conversion.

We have compared the growth in agarose medium of two EBV-negative Burkitt lymphoma lines, BJAB and Ramos, and that of their EBV-converted derivatives. Optimal conditions for growth in agarose medium are described. The original EBV-negative lines can grow in agarose to a high efficiency, provided a critical level of cell concentration is attained. Below this level, there is no growth at all. EBV-converted sublines form colonies at a much lower cell concentration, and their maximal plating efficiency is higher. These differences may be related to a super-transformation state induced in these cells by EBV.

Burkitt Lymphoma

Increased nuclease activity in cells treated with pppA2'p5'A2'p5' A.

A series of 2'-5'-linked oligo(adenylic acid) triphosphate (2'-5' A) inhibitors of protein synthesis were described recently. These inhibitors are synthesized from ATP by an enzyme activated in interferon-treated cell extracts or rabbit reticulocyte lysates by double-stranded RNA. We show here that 2'-5' A is a potent inhibitor of protein synthesis in intact cells of different origin (human, monkey, hamster, and mouse). At a concentration of 10 nM (in AMP equivalents), protein synthesis is inhibited by 50-85%. There is also a secondary effect on the total RNA synthesis which becomes evident several hours after inhibition of protein synthesis. All of these effects, however, are transient and, after a recovery period, both RNA and protein synthesis resume rates comparable to the appropriate controls. A nuclease activity is detected in cells after treatment with 2'-5'A. The total polyadenylylated RNA is much reduced in comparison to that from untreated cells, and electrophoretic analysis in polyacrylamide slab gels provides evidence for its degradation. Similarly, there is an apparent degradation of ribosomal RNA. Consistent with these results, extracts from cells that had been treated with 2'-5'A manifest an enhanced nuclease activity in vitro on incubation with exogenous RNA. Here, we propose that, as in cell-free systems, the mechanism of action of 2'-5'A in intact cells involves activation of a nuclease. This activation is transient, but the nuclease remains sensitive to further activation by the inhibitor.

Adenine Nucleotides

Enhancement of retrovirus production by anti-interferon serum.

In order to investigate the role of endogenous interferon in retrovirus production by infected or induced cells, the effect of two sera raised against mouse interferon has been tested on various C-type murine viruses. Addition of a highly potent anti-interferon serum to 3T3/IC cells chronically infected by the Moloney strain of MLV results in a considerable increase of virus production, as tested by reverse transcriptase assay. This effect is neutralized by an excess of exogenous interferon. The greatest effect of anti-interferon sera was obtained in the derepression of endogenous retroviruses: in K. BALB/c cells treated by IUDR, anti-interferon serum increases up to 50-fold the expression of the endogenous virus. The extinction of virus production which secondarily occurs after its induction by IUdR is likely to be caused by cellular endogenous interferon. The biological parameters of the viral agent produced in the presence of anti-interferon serum are those of the xenotropic endogenous virus.

Animals

[Cytotoxic and antitumor activity of a new series of heterocyclic compounds: dipyrido (4,3-b) (3,4-f) indoles].

Among newly synthesized compounds derived from the dipyrido [4,3-b] [3,4-f] indole nucleus, two have proved to be particularly active in vitro and in vivo. Their cytotoxic effects on cultured cells have been determined. At non toxic doses, they displayed a pronounced inhibitory effect on experimental L1210 Leukemia. These compounds have a strong affinity for DNA molecules.

Animals

Heterogeneity of the sensitivity of vesicular stomatitis virus to interferons.

Twelve cloned viruses were randomly isolated from original (uncloned) vesicular stomatitis virus (VSV), and their sensitivities to mouse and human interferons were examined. When the interferon sensitivities of these various VSVs were compared by the plaque reduction method in L cells, virus 3 was found to be sevenfold more sensitive than virus 11, and the interferon sensitivity of the original (uncloned) virus was intermediate. The present study shows that uncloned VSV Indiana strain is a mixture of viruses that have different sensitivities to interferon. The slope of the dose-response curve of original (uncloned) virus to mouse interferon was less steep than those of cloned viruses. Virus 11, which was the least sensitive to mouse interferon, was relatively sensitive to human interferon. There was no correlation between the sensitivities of virus clones to mouse interferon and their sensitivities to human interferon. When the interferon sensitivities were tested by various assay methods (plaque reduction, yield reduction, and cytopathic effect inhibition), the ranking of the interferon sensitivities of different viruses was not changed. These results indicate that the relative sensitivity of a virus to interferon is determined by the host cells in which the tests are performed, but not by assay method used.

Animals

Infectious DNA recovered from avian tumor-virus-producing cells.

A single treatment of chick embryo fibroblasts with DNA recovered from chick embryo fibroblasts productively infected and transformed with four different strains of RSV, or productively infected with two different strains of RAV, resulted in virus production and cell transformation (in the case of RSV) two or three passages after treatment (8-25 days). The virus recovered from cultures was phenotypically identical to that produced by the donor cells. No virus production nor cell transformation resulted from treatment of control cultures with DNA digested with DNAse. Infectious RSV-DNA was recovered from purified donor cell nuclei and was associated with the precipitable fraction of DNA prepared according to the method of Hirt (1967). It also sedimented with cellular DNA in density gradients, and with high molecular weight DNA (2-4 times 10-7 daltons) in sucrose gradients, which suggests that it is associated and may be integrated with chromosomal DNA. In some experiments, DNA fractions of lower molecular weight (down to 6 times 10-6 daltons) were also infectious. DNA from virus-producing RSV-transformed cells also gave rise to virus and Rous cells in cultures of fibroblasts from gs- embryos. However, the amount of DNA required for successful infection varied widely between experiments, and no reproducible dose-effect relationship was observed. The frequency of DNA-treated cells which produced virus remained low, even when the assay cultures were pretreated with 5-bromodeoxyuridine.

Alpharetrovirus

[Presence of autocomplementary RNA with viral specificity in cells infected with herpes virus].

RNA from cells infected with Herpes simplex virus contain a higher percentage of double-stranded RNA than non-infected cells. This percentage increases three-fold upon self-annealing. The complementary RNA sequences were shown to be virus-specific by the following criteria: (1) high melting temperature than double-stranded RNA from non infected cells; (2) higher density in caesium sulphate; (3) specific hybridization with viral DNA.

Animals

Biosynthesis of mouse interferon by translation of its messenger RNA in a cell-free system.

A fraction of mouse RNA containing messenger RNA coding for mouse interferon was translated with high efficiency in a wheat germ system into a fully active product. This product fulfills the criteria for mouse interferon, namely: (1) it was active against vesicular stomatitis virus and herpes simplex virus in mouse cells; (2) its antiviral activity was species specific; (3) its activity was completely neutralized by mouse anti-interferon serum. The synthesis of interferon in this cell-free system requires the presence of spermine.

Antigen-Antibody Reactions

A structural change of the plasma membrane induced by oncogenic viruses: quantitative studies with the freeze-fracture technique.

In BHK21 hamster cells a significant increase in density of intramembranous particles occurs in freeze-fractured plasma membranes after transformation by hamster sarcoma and polyoma viruses. A similar change has been observed in chick embryo cells infected and transformed by a mutant of Rous sarcoma virus thermosensitive for transformation, at both permissive and nonpermissive temperatures. There is also an increase in particle density in chick cells infected with the Rous-associated avian leukosis virus type 1. The newly appeared particles may represent the insertion of new proteins in hydrophobic regions of plasma membrane, in response to the action of oncogenic viruses.

Animals

Membrane changes in virus transformed cells.

Various aspects of membrane changes in cells transformed by oncogenic viruses are briefly described and discussed. Emphasis is made on changes recently observed in the hydrophobic portion of plasma membrane with the freeze-etching technique. The hypothesis is put forward that other changes seen at the surface of transformed cells are caused by a primary event occuring in proteins of the hydrophobic area.

Avian Sarcoma Viruses