The fusion-related hydrophobic domain of Sendai F protein can be moved through the cytoplasmic membrane of Escherichia coli.
- 1 July 1986
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 83 (14) , 5091-5095
- https://doi.org/10.1073/pnas.83.14.5091
Abstract
Recent work on a prokaryotic membrane protein, gene III protein (pIII) of coliphage f1, showed that polypeptide segments of sufficient hydrophobicity functioned to stop transfer of the polypeptide across the cell membrane: strings of 16 or more hydrophobic amino acids sufficed. A fusion-related hydrophobic domain (FRHD) of Sendai F protein, a sequence of 26 consecutive uncharged residues, has been implicated in the fusion of the viral membrane envelope and the target-cell membrane through a hydrophobic interaction. As it is located on the exterior of the viral membrane, this sequence must be transferred across the host-cell membrane during synthesis. We have inserted either the FRHD or the F protein membrane anchor (the COOH-terminal region of the F protein) into an internal site of a secreted pIII, which lacks its natural membrane anchor. These two hydrophobic sequences behave in the bacteria just as they do in their natural eukaryotic cell host. The F protein membrane anchor functions to stop transfer, conferring a membrane-spanning topology to the F-pIII hybrid protein; however, the FRHD is moved through the cytoplasmic membrane and derivatives carrying this sequence are secreted to the periplasm. We discuss how the FRHD is compatible with passage through the membrane and yet is still able to mediate membrane fusion through a presumed hydrophobic interaction.This publication has 38 references indexed in Scilit:
- Structural requirements of a membrane-spanning domain for protein anchoring and cell surface transportCell, 1985
- Sequence Determination of the Sendai Virus Fusion Protein GeneJournal of General Virology, 1985
- Fine structure of a membrane anchor domainJournal of Molecular Biology, 1985
- Conversion of a secretory protein into a transmembrane protein results in its transport to the golgi complex but not to the cell surfaceCell, 1984
- A stop transfer sequence confers predictable transmembrane orientation to a previously secreted protein in cell-free systemsCell, 1983
- Filamentous phage pre-coat is an integral membrane protein: Analysis by a new method of membrane preparationCell, 1982
- On the Hydrophobic Nature of Signal SequencesEuropean Journal of Biochemistry, 1981
- Specific inhibition of paramyxovirus and myxovirus replication by oligopeptides with amino acid sequences similar to those at the N-termini of the Fl or HA2 viral polypeptidesVirology, 1980
- Transfer of proteins across membranes. I. Presence of proteolytically processed and unprocessed nascent immunoglobulin light chains on membrane-bound ribosomes of murine myeloma.The Journal of cell biology, 1975
- In vitro synthesis of bacteriophage f1 proteinsJournal of Molecular Biology, 1974