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Rous sarcoma virus variants that encode src proteins with an altered carboxy terminus are defective for cellular
Abstract:
The src gene of Rous sarcoma virus (v-src) and its cellular homolog, the c-src gene, share extensive sequence homology. The most notable differences between these genes reside in the region encoding the carboxy terminus of the src proteins. We constructed mutations within the 3' end of the v-src gene to determine the significance of this region to the transforming potential of the v-src protein, pp60v-src. The mutants CHdl300 and CHis1511 contain mutations that alter the last 23 amino acids of pp60v-src, whereas the mutant CHis1545-C contains a linker insertion that alters the last 11 amino acids of pp60v-src, and the mutant CHis1545-H contains a linker insertion that results in a 9-amino-acid insertion at position 415. Plasmids bearing each of these mutations were unable to transform chicken cells when introduced into these cells by DNA transfection. In addition, the structurally altered src proteins encoded by the mutants had much-reduced levels of tyrosine protein kinase activity in vivo, as measured by autophosphorylation and phosphorylation of the 34,000-Mr cellular protein, and in vitro, as determined by measuring the level of pp60src autophosphorylation. These data indicate that the carboxy-terminal amino acid sequences play an important role in maintaining the structure of the catalytic domain of pp60v-src. In contrast, the transfection of chicken cells with plasmid DNA containing a chimeric v-c-src gene resulted in morphological cell transformation and the synthesis of an enzymatically active hybrid protein. Therefore, the carboxy-terminal sequence alterations observed in the c-src protein do not alone serve to alter the functional activity of a hybrid v-c-src protein appreciably.
Insights
Mutations in the carboxy terminus of the Rous sarcoma virus src gene (v-src) abolish cell transformation and reduce tyrosine kinase activity. These findings highlight the importance of this region for pp60v-src protein function.
Area of Science:
- Molecular Biology
- Virology
- Oncogenes
Background:
- The src gene, including viral (v-src) and cellular (c-src) forms, exhibits significant sequence homology.
- Key differences between v-src and c-src are located in the carboxy-terminal coding region of their respective proteins.
Purpose of the Study:
- To investigate the functional significance of the carboxy-terminal region of the pp60v-src protein.
- To determine the role of specific amino acid sequences in the transforming potential and kinase activity of v-src.
Main Methods:
- Site-directed mutagenesis was used to create alterations in the 3' end of the v-src gene.
- Mutated v-src genes were introduced into chicken cells via DNA transfection.
- Tyrosine protein kinase activity was assessed in vivo and in vitro through autophosphorylation and substrate phosphorylation assays.
Main Results:
- Mutants with altered carboxy-terminal amino acids (CHdl300, CHis1511, CHis1545-C, CHis1545-H) failed to transform chicken cells.
- These src mutants displayed significantly reduced in vivo and in vitro tyrosine protein kinase activity.
- A chimeric v-c-src gene construct successfully induced cell transformation and produced an active hybrid protein.
Conclusions:
- The carboxy-terminal amino acid sequences are crucial for maintaining the structural integrity of the pp60v-src catalytic domain.
- Alterations in the c-src protein's carboxy-terminal sequence alone do not significantly impair the functional activity of a hybrid v-c-src protein.