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Biomedical subjects

S Bacchetti

Publications and source records attributed to S Bacchetti.

At least 91 records · Page 5Linked to original sources

Monoclonal antibodies to two glycoproteins of herpes simplex virus type 2.

Monoclonal antibodies to herpes simplex virus type 2 were found to precipitate different numbers of radiolabeled polypeptides from lysates of virus-infected cells. Antibodies directed against two viral glycoproteins were characterized. Antibodies from hybridoma 17 alpha A2 precipitated a 60,000-molecular-weight polypeptide which chased into a 66,000- and 79,000-molecular-weight polypeptide. All three polypeptides labeled in the presence of [3H]glucosamine and had similar tryptic digest maps. The 60,000-molecular-weight polypeptide also chased into a 31,000-molecular-weight species which did not label with [3H]glucosamine. Antibodies from hybridoma 17 beta C2 precipitated a 50,000-molecular-weight polypeptide which chased into a 56,000- and 80,000-molecular weight polypeptide. These polypeptides also shared a similar tryptic digest map and labeled with [3H]glucosamine. Both monoclonal antibodies were herpes simplex virus type 2 specific. The viral proteins precipitated by 17 alpha A2 antibodies had characteristics similar to those reported for glycoprotein E, whereas the proteins precipitated by 17 beta C2 antibodies appeared to represent a glycoprotein not previously described. This glycoprotein should be tentatively designated glycoprotein F.

Antibodies, Monoclonal↗

Herpes simplex virus thymidine kinase transcripts are absent from both nucleus and cytoplasm during infection in the presence of cycloheximide.

Nick-translated DNA from a recombinant plasmid containing the herpes simplex virus type 1 thymidine kinase gene was used as a probe for the synthesis of thymidine kinase RNA. The recombinant plasmid was generated by inserting the 3.5-kilobase fragment derived by BamHI digestion of herpes simplex virus type 1 DNA into plasmid pBR322. At 8 h after infection, cytoplasmic and nuclear RNA hybridized to 14% and 19% of the recombinant DNA probe, respectively. However, no significant hybridization was found with either nuclear or cytoplasmic RNA extracted from cells infected and maintained in the presence of cycloheximide. This suggests that no thymidine kinase-related RNA was synthesized in the absence of alpha polypeptides, and supports the hypothesis that the alpha polypeptides effect new thymidine kinase RNA synthesis rather than being involved in processing or transport of thymidine kinase RNA. In cells infected and maintained in the presence of the arginine analog canavanine, about 2 to 3% of the plasmid DNA was found to hybridize with cytoplasmic and nuclear RNA. However, when a recombinant plasmid DNA containing only thymidine kinase coding sequences was used, no significant hybridization was found. The inhibition of thymidine kinase transcription by canavanine suggests that thymidine kinase belongs to the beta 2 kinetic class.

Canavanine↗

Characterization of human TK- cell lines transformed to a TK+ phenotype by herpes simplex virus type 2 DNA.

Human TK- cells carrying the HSV-2 TK gene as a result of transformation with virus DNA express a TK activity of virus origin and maintain the TK+ phenotype when grown in HAT medium. Under non-selective conditions, however, reversion to a TK- phenotype occurs with a significant frequency characteristic of each transformed line. Once reversion has occurred the TK- phenotype appears to be stable, since only very rare instances of TK- to TK+ reversion have been observed. TK- revertants were susceptible to re-transformation by virus DNA, but no reactivation of a silent virus TK gene could be obtained by superinfecting them with a TK- virus mutant. The data presented are consistent with the hypothesis that acquisition of the TK- phenotype is brought about by loss of the virus sequences coding for TK.

Cell Line↗

Selective assay for herpes simplex viruses expressing thymidine kinase.

A technique for selecting herpes simplex viruses expressing the viral thymidine kinase (TK+) from a population of predominantly TK- viruses was developed. This was accomplished by infecting TK- cells and incubating the cultures under a liquid overlay medium containing methotrexate. Since the TK- cells survive in this medium for only a limited period of time, it was necessary to add fresh uninfected TK- cells 48 h after infection. The technique allowed the detection and quantitation of the TK+ virus fraction in mixtures of TK+ and TK- viruses where the TK+ fraction was present in frequencies as low as 10(-5). It was also used to estimate reversion frequencies and to obtain and analyze TK+ revertants from TK- mutant strains of herpes simplex virus type 1.

Cell Line↗

DNA-mediated transfer of herpes simplex virus TK gene to human TK- cells: properties of the transformed lines.

Human TK- cells carrying the HSV-2 TK gene express a TK activity of viral origin and maintain the TK+ phenotype when grown in HAT medium. Under non-selective or counterselective conditions, however, reversion to a TK- phenotype occurs with a significant frequency characteristic of each transformed line. The TK- phenotype appears to be stable since no instances of TK- to TK+ reversion have been observed.

Bromodeoxyuridine↗

Transfer of the gene for thymidine kinase to thymidine kinase-deficient human cells by purified herpes simplex viral DNA.

Transformation of human cells from a thymidine kinase (ATP:thymidine 5'-phosphotransferase, EC 2.7.1.75)-negative to a thymidine kinase-positive phenotype has been achieved by using purified DNA from herpes simplex virus type 2. The specific activity of the DNA was in the range 0.5 to 2.0 transformants per microng and the efficiency of gene transfer was up to 1 transformant per 10(5) recipient cells. Several transformed lines able to grow continuously in medium selective for thymidine kinase-positive cells have been established. All of these lines express a thymidine kinase activity of viral origin but they differ from each other in the stability of enzyme expression. Subclones derived from a given transformed line inherited the degree of stability of the parental line.

Aminopterin↗

Purification and characterization of an endonuclease from calf thymus acting on irradiated DNA.

An endonuclease acting on DNA exposed to ultraviolet light or gamma-rays has been extensively purified from calf thymus. The enzyme has a pH optimum at pH 7.0-7.5, acts with equal efficiency in the presence of EDTA or divalent cations (Mg-2+ or Ca-2+), is inhibited by NaCl and tRNA and is inactivated by incubation at 50 degrees C. Its molecular weight, determined by Sephadex chromatography or sodium dodecylsulfate gel electrophoresis, is approx. 30 000. The enzyme catalyzes the formation of breaks with 5'-phosphate termini in double-stranded DNA irradiated with ultraviolet or gamma-rays. It does not act on unirradiated DNA or denatured DNA. Since in all these properties the enzymatic activity on ultraviolet- and gamma-irradiated DNA behaved similarly and since the two activities cochromatographed in all systems used during purification, we conclude that they are associated with the same protein. The site of action of the enzyme in ultraviolet-irradiated DNA is a photoproduct other than pyrimidine dimers. Such a photoproduct can also be induced by irradiation of the DNA in vivo, i.e. within the cells.

Animals↗

Automated continuous culture of mammalian cells in suspension.

A system has been developed for the continuous culture of mammalian cells in suspension. The system maintains constant cell concentrations (monitored as the degree of light scattering) over a wide range of previously selected values by automatic additions of known amounts of medium and simultaneous withdrawals of equal volumes of cell suspension.

Animals↗

Actinomycin D: effects on mouse L-cells.

The lethal and inhibitory effects of actinomycin D (Act D) on asynchronous and synchronized populations of mouse L-cells have been studied. It has been shown that the survival curve of populations in the logarithmic phase of growth can be approximated by two exponential survival curves corresponding to a sensitive and resistant moiety. The size and sensitivity of both moieties vary during the growth of the population. As the cell population moves through logarithmic and into stationary phase, the sensitive moiety becomes smaller but more resistant whereas the resistant moiety increases in size and also becomes more resistant. This variation appears to be related to a reduced uptake of Act D and also a reduced rate of DNA and RNA synthesis. Variations in sensitivity to the drug have also been observed during the division cycle of synchronized cells with cells in the S phase showing the greatest uptake of the drug and also the greatest sensitivity. However, no direct correlation between uptake and sensitivity has been established. Actinomycin D has inhibitory effects on both RNA and DNA synthesis. RNA synthesis is inhibited rapidly but does not seem to drop to less than 5% of the control value. The inhibition of DNA synthesis appears to occur over a longer period and may reach values as low as 0.25% of control. In both cases the degree of inhibitions appears to be dependent on both the length of exposure and the concentration of the drug. Certain similarities between the response of cells to Act D and X-rays have been observed and are discussed.

Animals↗