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Variations in integration site of avian oncornaviruses in different hosts
Abstract:
We examined the integration site of avian oncornaviruses in the genome of different hosts with respect to the repetitive frequency of the cellular DNA sequences adjacent to the integrated proviral DNA. The following systems were studied: avian sarcoma virus (B-77) and avian leukosis virus (Rous-associated virus-61) in cultured duck embryonic cells and B-77 in cultured mouse 3T3 cells. These systems represent different host responses to viral infection, i.e., one in which both cellular transformation and viral replication occur (B-77-infected duck cells), one in which viral replication, but not transformation, occurs (Rous-associated virus-61-infected duck cells), and one in which transformation, but not viral replication, occurs (B-77-infected 3T3 cells). Two sequential hybridizations were used. First, large denatured DNA fragments (2.8 X 10(6) daltons) were reassociated to different C0t (mole-seconds per liter) values. Next, DNA remaining single stranded at different C0t values was isolated by hydroxylapatite column chromatography, immobilized on nitrocellulose filters, and hybridized with an excess of 3H-labeled 35S viral RNA to titrate the concentration of proviral DNA. Results show that B-77 sarcoma virus and Rous-associated virus-61 integrate in the unique region of duck DNA, whereas B-77 proviral DNA is associated with both repeated and unique host DNA sequences in transformed mouse 3T3 cells.
Insights
Avian oncornaviruses integrate into unique DNA regions in duck cells but associate with both unique and repeated sequences in mouse cells. This reveals host-specific integration patterns for avian tumor viruses.
Area of Science:
- Molecular Biology
- Virology
- Genetics
Background:
- Avian oncornaviruses are retroviruses known to integrate into host genomes.
- Understanding viral integration sites is crucial for deciphering host-virus interactions and oncogenesis.
Purpose of the Study:
- To investigate the integration site preferences of avian oncornaviruses in different host genomes.
- To correlate integration patterns with host cellular responses to viral infection.
Main Methods:
- Studied avian sarcoma virus (B-77) and avian leukosis virus (Rous-associated virus-61) in duck and mouse cells.
- Employed sequential hybridization techniques with varying C0t values.
- Isolated single-stranded DNA and hybridized with viral RNA to quantify proviral DNA concentration.
Main Results:
- Avian sarcoma virus (B-77) and Rous-associated virus-61 integrated into unique DNA regions of duck cells.
- In mouse 3T3 cells, B-77 proviral DNA integrated into both unique and repetitive host DNA sequences.
- Observed different host responses: transformation and replication, replication only, or transformation only.
Conclusions:
- Avian oncornavirus integration patterns are host-dependent.
- Integration into unique DNA regions in duck cells suggests specific targeting mechanisms.
- Association with both unique and repetitive DNA in mouse cells indicates broader integration flexibility or different cellular interactions.