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Suppression of Rous sarcoma virus-induced tumor formation by preinfection with viruses encoding src protein with
1Rockefeller University, New York, New York 10021-6399.
Abstract:
Two recovered avian sarcoma viruses (rASVs), rASV157 and rASV1702, encode src products which contain novel, nonmyristoylated N-terminal amino acids. These viruses transform chicken embryo fibroblasts and cause tumors in chicks. However, the tumors rASVs induce are small and regress within 2 weeks. To determine whether this regression results from weak tumorigenicity or from the active immunity of the host, we injected 1-week-old chicks with rASV and several days later injected the chicks with challenge virus of a different subgroup. Of the rASV1702-preinfected chicks challenged 5 days later with Rous sarcoma virus (RSV), 40% showed no subsequent tumor formation and 60% formed tumors which regressed within 1 week. The potency of this protective effect depended on the dosage of preinfection virus used and increased as the interval between preinfection and challenge infection was lengthened (when the interval was 9 days, none of the challenged chicks formed tumors). rASV157-preinfected chicks challenged with RSV after 9 days showed only partial protection: 42% formed tumors which regressed, whereas 58% formed tumors which continued to grow. Challenging rASV-preinfected chicks with Fujinami sarcoma virus or a RSV vector encoding the v-fps oncogene or polyomavirus middle T resulted in no suppression of tumor formation. Preinfection with src mutants or a RSV vector encoding polyomavirus middle T antigen, both of which induce slow-growing tumors, failed to elicit the protective effect. Finally, a novel N-terminal domain encoded by rASV1702 src was shown to be involved in but not sufficient for full protection. These data indicate that determinants on or induced by rASV157 and rASV1702 can elicit a potent protection against the tumorigenic potential of RSV-encoded p60v-src.
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.