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Viral and cellular src genes contribute to the structure of recovered avian sarcoma virus transforming protein
Abstract:
Recovered avian sarcoma viruses (rASVs) were obtained from tumors induced by certain transformation-defective (td) mutants of Schmidt-Ruppin strain Rous sarcoma virus of subgroup A (SR-A). The genomes of these td SR-A mutants lack most but not all of the src gene. rASV genomes, however, possess intact src genes, which are largely derived from cellular genetic information, presumably an endogenous cellular gene called c-src, which shares considerable homology with the viral src. To further define the genetic origin of rASV src, we examined by tryptic peptide analysis the product of this gene, pp60src, from rASV and SR-A, as well as the normal cellular homolog pp60c-src. We found peptides unique to each putative "parental" protein present together in maps of rASV p60src, demonstrating that the endogenous cellular c-src gene itself contributes to the structure of rASV pp60src. Certain isolates of rASV encode pp60srcS of altered apparent molecular weight. In these cases, the variation in structure was located in the amino-terminal portion of the protein. That such polymorphism can be tolerated suggests that this region of the protein is less critical to the ability of these agents to transform cells.
Insights
Recovered avian sarcoma viruses (rASVs) utilize intact src genes, incorporating cellular genetic information from c-src. This study reveals the cellular c-src gene contributes to rASV pp60src structure, impacting cell transformation.
Area of Science:
- Virology
- Molecular Biology
- Oncogenesis
Background:
- Recovered avian sarcoma viruses (rASVs) arise from transformation-defective (td) Rous sarcoma virus mutants.
- The src gene in td SR-A mutants is partially deleted, while rASVs possess intact src genes.
Purpose of the Study:
- To investigate the genetic origin of the src gene in rASVs.
- To determine the contribution of the cellular c-src gene to rASV pp60src.
Main Methods:
- Tryptic peptide analysis of pp60src from rASV, SR-A, and pp60c-src.
- Comparison of protein structures to identify genetic contributions.
Main Results:
- Tryptic peptide maps of rASV pp60src contained peptides unique to both viral and cellular src.
- Demonstrated that the endogenous cellular c-src gene contributes to the structure of rASV pp60src.
- Identified alterations in the amino-terminal portion of pp60src in some rASV isolates.
Conclusions:
- The cellular c-src gene is a source of genetic information for rASV src.
- The amino-terminal region of pp60src may be less critical for cell transformation.
- Understanding rASV src origin provides insights into viral oncogenesis and gene regulation.
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