44-amino-acid E5 transforming protein of bovine papillomavirus requires a hydrophobic core and specific carboxyl-terminal amino acids.
Open Access
- 1 October 1988
- journal article
- research article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 8 (10), 4071-4078
- https://doi.org/10.1128/mcb.8.10.4071
Abstract
The 44-amino-acid E5 protein of bovine papillomavirus type 1 is the shortest known protein with transforming activity. To identify the specific amino acids required for in vitro focus formation in mouse C127 cells, we used oligonucleotide-directed saturation mutagenesis to construct an extensive collection of mutants with missense mutations in the E5 gene. Characterization of mutants with amino acid substitutions in the hydrophobic middle third of the E5 protein indicated that efficient transformation requires a stretch of hydrophobic amino acids but not a specific amino acid sequence in this portion of the protein. Many amino acids in the carboxyl-terminal third of the protein can also undergo substitution without impairment of focus-forming activity, but the amino acids at seven positions, including two cysteine residues that mediate dimer formation, appear essential for efficient transforming activity. These essential amino acids are the most well conserved among related fibropapillomaviruses. The small size of the E5 protein, its lack of similarity to other transforming proteins, and its ability to tolerate many amino acid substitutions implies that it transforms cells via a novel mechanism.This publication has 42 references indexed in Scilit:
- Genetic analysis of monoclonal antibody and HIV binding sites on the human lymphocyte antigen CD4Cell, 1988
- Demonstration that a chemically synthesized BPV1 oncoprotein and its C-terminal domain function to induce cellular DNA synthesisCell, 1987
- The E5 Transforming Gene of Bovine Papillomavirus Encodes a Small, Hydrophobic PolypeptideScience, 1986
- Organization and expression of the transforming region from the European elk papillomavirus (EEPV)Gene, 1986
- Dissociation of transforming and trans-activation functions for bovine papillomavirus type 1Nature, 1985
- A General Method for Saturation Mutagenesis of Cloned DNA FragmentsScience, 1985
- Structural requirements of a membrane-spanning domain for protein anchoring and cell surface transportCell, 1985
- The primary structure and genetic organization of the bovine papillomavirus type 1 genomeNature, 1982
- Membrane Proteins. The Amino Acid Composition of Membrane-Penetrating SegmentsEuropean Journal of Biochemistry, 1981
- In vitro tumorigenic transformation by a defined sub-genomic fragment of bovine papilloma virus DNANature, 1980