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Suppression of Rous sarcoma virus-induced tumor formation by preinfection with viruses encoding src protein with

I H Gelman1, H Hanafusa

  • 1Rockefeller University, New York, New York 10021-6399.

Journal of Virology
|June 1, 1989
PubMed

Insights

Recovered avian sarcoma viruses (rASVs) induce tumors that regress. Pre-infection with these rASVs elicits a protective immune response against Rous sarcoma virus (RSV) challenge, preventing tumor formation.

Area of Science:

  • Oncology
  • Virology
  • Immunology

Background:

  • Recovered avian sarcoma viruses (rASVs) encode novel src proteins lacking N-terminal myristoylation.
  • These rASVs induce tumors in chicks that exhibit spontaneous regression.

Purpose of the Study:

  • To investigate whether tumor regression induced by rASVs is due to weak tumorigenicity or host-mediated immunity.
  • To determine if pre-infection with rASVs can confer protection against subsequent Rous sarcoma virus (RSV) challenge.

Main Methods:

  • Chicks were pre-infected with rASV157 or rASV1702 and subsequently challenged with RSV.
  • Tumor formation and regression rates were monitored after challenge.
  • Experiments involved varying pre-infection virus dosage, time intervals, and challenge with different oncogenes or src mutants.

Main Results:

  • Pre-infection with rASV1702 conferred significant protection against RSV challenge, with up to 100% tumor-free chicks when challenged after 9 days.
  • rASV157 provided only partial protection against RSV challenge.
  • Protection was specific to RSV-encoded p60v-src and not observed with Fujinami sarcoma virus or polyomavirus middle T antigen challenges.
  • A novel N-terminal domain of rASV1702 src was involved but not sufficient for full protection.

Conclusions:

  • Determinants on or induced by rASV157 and rASV1702 can elicit a potent protective immune response against RSV-induced tumors.
  • The protective effect is dependent on the specific rASV, viral dosage, and time interval between pre-infection and challenge.
  • This study highlights a potential mechanism for host-mediated tumor rejection mediated by specific viral components.

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