1887

Abstract

SUMMARY

Three new complementation groups of type 2 herpes simplex virus are described bringing the total number of complementation groups characterized to 13. Of the three new groups, 11 fails to make virus DNA at non-permissive temperature (38 °C) whereas 12 and 13 synthesize only very small amounts of virus or cellular DNA at 38 °C. 11, like 9 (Halliburton & Timbury, 1973) fails to switch off host cell DNA synthesis at 38 °C. That this is a failure to switch off cell DNA rather than a stimulation of cell DNA synthesis was confirmed in experiments using resting cells. Both the inability to make virus DNA and the inability to switch off cell DNA are reversed in temperature shift-down experiments with cells infected with 9 or 11. In temperature shift-up experiments, cellular DNA synthesis is inhibited after the shift but virus DNA is only made in very small amounts, probably due to the continuing functioning of a protein made at permissive temperature (31 °C) before the shift but which cannot be made at 38 °C. The shift-down experiments and the fact that 9 and 11 complement one another, suggest that the switch-off of host cell DNA synthesis may involve more than one virus specified function. U.v. irradiated virus fails to switch off host cell DNA synthesis.

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/content/journal/jgv/10.1099/0022-1317-30-2-207
1976-02-01
2024-05-04
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References

  1. Ben-Porat T., Kaplan A. E. 1965; Mechanism of inhibition of cellular DNA synthesis by pseudorabies virus. Virology 25:22–29
    [Google Scholar]
  2. Ben-Porat T., Kaplan A. S. 1973 In The Herpesviruses p 211 Edited by Kaplan A. S. New York and London: Academic Press;
    [Google Scholar]
  3. Campbell R. C. 1967 In Statistics for Biologists p 44 London and New York: Cambridge University Press;
    [Google Scholar]
  4. Esparza J., Purifoy D. I. M., Schaffer P. A., Benyesh-Melnick M. 1974; Isolation, complementation, and preliminary phenotypic characterization of temperature sensitive mutants of herpes simplex virus type 2. Virology 57:554–565
    [Google Scholar]
  5. Halliburton I. W. 1972; Biochemical comparisons of type 1 and type 2 herpes simplex viruses. In Oncogenesis and Herpesviruses pp. 432–438 Edited by Biggs P. M., de-Thé G., Payne L. N. Lyons: IARC;
    [Google Scholar]
  6. Halliburton R. W., Timbury M. C. 1973; Characterization of temperature-sensitive mutants of herpes simplex virus type 2. Growth and DNA synthesis. Virology 54:60–68
    [Google Scholar]
  7. Melvin P., Kucera L. S. 1975; Induction of human cell DNA synthesis by herpes simplex virus type 2. Journal of Virology 15:534–539
    [Google Scholar]
  8. Newton A. A. 1968 In International Virology vol 1 p 65 Edited by Melnick J. L. New York: S. Karger;
    [Google Scholar]
  9. Russell W. C. 1962; A sensitive and precise plaque assay for herpes virus. Nature, London 195:1028–1029
    [Google Scholar]
  10. Schaffer P. A., Aron G. M., Biswal N., Benyesh-Melnick M. 1973; Temperature-sensitive mutants of herpes simplex virus type 1; isolation, complementation and partial characterization. Virology 52:57–71
    [Google Scholar]
  11. Timbury M. C. 1971; Temperature-sensitive mutants of herpes simplex virus type 2. Journal of General Virology 13:373–376
    [Google Scholar]
  12. Yaoi Y., Mitsui H., Amano M. 1970; Effect of u.v.-irradiated vesicular stomatitis virus on nucleic acid synthesis in chick embryo cells. Journal of General Virology 8:165–172
    [Google Scholar]
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