The Role of the Membrane-spanning Domain Sequence in Glycoprotein-mediated Membrane Fusion
- 1 September 1999
- journal article
- Published by American Society for Cell Biology (ASCB) in Molecular Biology of the Cell
- Vol. 10 (9) , 2803-2815
- https://doi.org/10.1091/mbc.10.9.2803
Abstract
The role of glycoprotein membrane-spanning domains in the process of membrane fusion is poorly understood. It has been demonstrated that replacing all or part of the membrane-spanning domain of a viral fusion protein with sequences that encode signals for glycosylphosphatidylinositol linkage attachment abrogates membrane fusion activity. It has been suggested, however, that the actual amino acid sequence of the membrane-spanning domain is not critical for the activity of viral fusion proteins. We have examined the function of Moloney murine leukemia virus envelope proteins with substitutions in the membrane-spanning domain. Envelope proteins bearing substitutions for proline 617 are processed and incorporated into virus particles normally and bind to the viral receptor. However, they possess greatly reduced or undetectable capacities for the promotion of membrane fusion and infectious virus particle formation. Our results imply a direct role for the residues in the membrane-spanning domain of the murine leukemia virus envelope protein in membrane fusion and its regulation. They also support the thesis that membrane-spanning domains possess a sequence-dependent function in other protein-mediated membrane fusion events.Keywords
This publication has 44 references indexed in Scilit:
- Proline at position 14 of alamethicin is essential for hemolytic activity, catecholamine secretion from chromaffin cells and enhanced metabolic activity in endothelial cellsBiochimica et Biophysica Acta (BBA) - Biomembranes, 1998
- Membrane rearrangements in fusion mediated by viral proteinsTrends in Microbiology, 1997
- Retrovirus envelope domain at 1.7 Å resolutionNature Structural & Molecular Biology, 1996
- Dissection of a retrovirus envelope protein reveals structural similarity to influenza hemagglutininCurrent Biology, 1995
- GPI-anchored influenza hemagglutinin induces hemifusion to both red blood cell and planar bilayer membranes.The Journal of cell biology, 1995
- Structure of influenza haemagglutinin at the pH of membrane fusionNature, 1994
- A spring-loaded mechanism for the conformational change of influenza hemagglutininCell, 1993
- Contribution of proline‐14 to the structure and actions of melittinFEBS Letters, 1991
- Conserved positioning of proline residues in membrane-spanning helices of ion-channel proteinsBiochemical and Biophysical Research Communications, 1991
- Nucleotide sequence of Moloney murine leukaemia virusNature, 1981