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Linker insertion-deletion mutagenesis of the v-src gene: isolation of host- and temperature-dependent mutants
1Department of Zoology, University of California, Berkeley 94720.
Abstract:
The host cell regulators and substrates of the Rous sarcoma virus transforming protein pp60v-src remain largely unknown. Viral mutants which induce a host-dependent phenotype may result from mutations which affect the interaction of pp60v-src with host cell components. To isolate such mutants and to examine the role of different regions of src in regulating pp60v-src function, we generated 46 linker insertion and 5 deletion mutations within src. The mutant src genes were expressed in chicken embryo fibroblasts and in rat-2 cells by using retrovirus expression vectors. Most linker insertions within the kinase domain (residues 260 to 512) inactivated kinase activity and transforming capacity, while most insertions in the N-terminal domain and at the extreme C terminus were tolerated. A number of mutations generated a host-dependent phenotype. Insertions after residues 225 and 227, within the N-terminal regulatory domain (SH2), produced a fusiform transformation in chicken embryo fibroblasts and abolished transformation in rat-2 cells; a similar phenotype also resulted from two deletions affecting SH2 (residues 149 to 174 and residues 77 to 225). Insertions immediately C terminal to Lys-295, which is involved in ATP binding, also produced a conditional phenotype. Insertions after residues 299 and 300 produced a temperature-sensitive phenotype, while insertions after residues 304 and 306 produced a host cell-dependent phenotype. An insertion which removed the major tyrosine autophosphorylation site (Tyr-416) greatly reduced transformation of rat-2 cells, a property not previously observed with other mutations at this site. We conclude that mutations at certain sites within src result in conditional phenotypes. These sites may represent regions important in interactions with host cell components.
Insights
Investigating Rous sarcoma virus (RSV) transforming protein pp60v-src, researchers created src mutations. Certain mutations yielded conditional phenotypes, revealing key sites for host cell interactions.
Area of Science:
- Molecular Biology
- Virology
- Cell Biology
Background:
- The host cell regulators and substrates of the Rous sarcoma virus (RSV) transforming protein pp60v-src are not fully understood.
- Viral mutants exhibiting a host-dependent phenotype may arise from alterations in pp60v-src interactions with host cell components.
Purpose of the Study:
- To isolate RSV src mutants with host-dependent phenotypes.
- To investigate the role of different regions within src in regulating pp60v-src function and host cell interactions.
Main Methods:
- Generated 46 linker insertion and 5 deletion mutations within the src gene.
- Expressed mutant src genes in chicken embryo fibroblasts and rat-2 cells using retrovirus expression vectors.
- Analyzed the resulting phenotypes, including transformation capacity and host cell dependency.
Main Results:
- Most mutations within the kinase domain (residues 260-512) inactivated kinase activity and transforming capacity.
- Mutations in the N-terminal regulatory domain (SH2) and near the ATP-binding site (Lys-295) produced conditional phenotypes (host-dependent or temperature-sensitive).
- A mutation removing the major tyrosine autophosphorylation site (Tyr-416) significantly reduced transformation in rat-2 cells.
Conclusions:
- Specific mutations within the src gene can lead to conditional phenotypes, indicating distinct functional regions.
- These identified sites are crucial for pp60v-src interactions with host cell components.
- The study provides insights into the regulation of RSV transformation and host-pathogen interactions.