Modulation of cell function by small transmembrane proteins modeled on the bovine papillomavirus E5 protein
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Summary
Experiments summarized in this review suggest that it may be possible to use the E5 protein as a model to design an entirely new class of small, modular transmembrane proteins with novel biological activities.
- Type
- article
- Published
- 2005-11-21
- Cited by
- 27
- References
- 94
- Access
- Open access
- OpenAlex
- https://openalex.org/W16299535
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:30548156
Keywords
Computer science
References
- Activation of the platelet‐derived growth factor receptor by the bovine papillomavirus E5 transforming protein.
- The BPV‐1 E5 protein, the 16 kDa membrane pore‐forming protein and the PDGF receptor exist in a complex that is dependent on hydrophobic transmembrane interactions.
- Genetic and biochemical definition of the bovine papillomavirus E5 transforming protein.
- Phosphothreonine recognition comes into focus
- Asparagine-mediated self-association of a model transmembrane helix
- Transforming activity of a 16-amino-acid segment of the bovine papillomavirus E5 protein linked to random sequences of hydrophobic amino acids
- Mutational analysis of the beta-type platelet-derived growth factor receptor defines the site of interaction with the bovine papillomavirus type 1 E5 transforming protein
- The bovine papillomavirus type 1 E5 transforming protein specifically binds and activates the beta-type receptor for the platelet-derived growth factor but not other related tyrosine kinase-containing receptors to induce cellular transformation
- Transformation-specific interaction of the bovine papillomavirus E5 oncoprotein with the platelet-derived growth factor receptor transmembrane domain and the epidermal growth factor receptor cytoplasmic domain
- The central hydrophobic domain of the bovine papillomavirus E5 transforming protein can be functionally replaced by many hydrophobic amino acid sequences containing a glutamine
- E5 open reading frame of bovine papillomavirus type 1 encodes a transforming gene
- Platelet-derived growth factor receptor can mediate tumorigenic transformation by the bovine papillomavirus E5 protein
- The Bovine Papillomavirus E5 Protein Requires a Juxtamembrane Negative Charge for Activation of the Platelet-Derived Growth Factor β Receptor and Transformation of C127 Cells
- Role of Glutamine 17 of the Bovine Papillomavirus E5 Protein in Platelet-Derived Growth Factor β Receptor Activation and Cell Transformation
- Specific interaction between the bovine papillomavirus E5 transforming protein and the beta receptor for platelet-derived growth factor in stably transformed and acutely transfected cells
- Mutation of the bovine papillomavirus E5 oncoprotein at amino acid 17 generates both high- and low-transforming variants
- 44-amino-acid E5 transforming protein of bovine papillomavirus requires a hydrophobic core and specific carboxyl-terminal amino acids
- TOXCAT: a measure of transmembrane helix association in a biological membrane.
- A Transmembrane Segment Mimic Derived from Escherichia coli Diacylglycerol Kinase Inhibits Protein Activity*
- The effect of point mutations on the free energy of transmembrane alpha-helix dimerization.
Cited by
- Human Papillomavirus Infections: From the Laboratory to Clinical Practice
- De Novo Designed Proteins - Perspective Materials for Nanotechnology
- Biologically active LIL proteins built with minimal chemical diversity
- Peptide probes for protein transmembrane domains.
- The Bovine Papillomavirus E5 Protein and the PDGF β Receptor: It Takes Two to Tango
- Packing contacts can mediate highly specific interactions between artificial transmembrane proteins and the PDGFβ receptor
- Helical membrane peptides to modulate cell function.
- Design of membrane proteins: toward functional systems.
- Complete genomes and phylogenetic positions of bovine papillomavirus type 8 and a variant type from a European bison
- Characterization of mouse sperm TMEM190, a small transmembrane protein with the trefoil domain: evidence for co-localization with IZUMO1 and complex formation with other sperm proteins.
- Transmembrane Protein Aptamers That Inhibit CCR5 Expression and HIV Coreceptor Function
- Viruses: tools for tumor target discovery, and agents for oncolytic therapies – an introduction
- Construction and maintenance of randomized retroviral expression libraries for transmembrane protein engineering.
- Artificial Transmembrane Oncoproteins Smaller than the Bovine Papillomavirus E5 Protein Redefine Sequence Requirements for Activation of the Platelet-Derived Growth Factor β Receptor
- Construction and genetic selection of small transmembrane proteins that activate the human erythropoietin receptor
- Viruses – seeking and destroying the tumor program
- Single methyl groups can act as toggle switches to specify transmembrane Protein-protein interactions
- Transmembrane Protein Aptamer Induces Cooperative Signaling by the EPO Receptor and the Cytokine Receptor β-Common Subunit
- Biologically active ultra-simple proteins reveal principles of transmembrane domain interactions
- Membrane receptor activation mechanisms and transmembrane peptide tools to elucidate them
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