A conserved domain is present in different families of vesicular fusion proteins: A new superfamily
Open Access
- 1 April 1997
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 94 (7) , 3046-3051
- https://doi.org/10.1073/pnas.94.7.3046
Abstract
We have analyzed conserved domains in t-SNAREs [soluble N-ethylmaleimide-sensitive factor (NSF) attachment protein (SNAP) receptors in the target membrane], proteins that are believed to be involved in the fusion of transport vesicles with their target membrane. By using a sensitive computer method, the generalized profile method, we were able to identify a new homology domain that is common in the two protein families previously identified to act as t-SNAREs, the syntaxin and SNAP-25 (synaptosome-associated protein of 25 kDa) families, which therefore constitute a new superfamily. This homology domain of approximately 60 amino acids is predicted to form a coiled-coil structure. The significance of this homology domain could be demonstrated by a partial suppression of the coiled-coil properties of the domain profile. In proteins belonging to the syntaxin family, a single homology domain is located near the transmembrane domain, whereas the members of the SNAP-25 family possess two homology domains. This domain was also identified in several proteins that have been implicated in vesicular transport but do not belong to any of the t-SNARE protein families. Several new yeast, nematode, and mammalian proteins were identified that belong to the new superfamily. The evolutionary conservation of the SNARE coiled-coil homology domain suggests that this domain has a similar function in different membrane fusion proteins.Keywords
This publication has 57 references indexed in Scilit:
- A New Syntaxin Family Member Implicated in Targeting of Intracellular Transport VesiclesJournal of Biological Chemistry, 1996
- Novel syntaxin homologue, Pep12p, required for the sorting of lumenal hydrolases to the lysosome-like vacuole in yeast.Molecular Biology of the Cell, 1996
- Mechanisms of intracellular protein transportNature, 1994
- Localization of Sed5, a putative vesicle targeting molecule, to the cis-Golgi network involves both its transmembrane and cytoplasmic domains.The Journal of cell biology, 1994
- Implications of the SNARE hypothesis for intracellular membrane topology and dynamicsPublished by Elsevier ,1994
- dbEST — database for “expressed sequence tags”Nature Genetics, 1993
- SNAP receptors implicated in vesicle targeting and fusionNature, 1993
- Predicting Coiled Coils from Protein SequencesScience, 1991
- Basic local alignment search toolJournal of Molecular Biology, 1990
- Vesicle fusion following receptor-mediated endocytosis requires a protein active in Golgi transportNature, 1989