Homotypic vacuole fusion in yeast requires Sec18p (N-ethylmaleimide-sensitive fusion protein [NSF]), Sec17p (soluble NSF attachment protein [alpha-SNAP]), and typical vesicle (v) and target membrane (t) SNAP receptors (SNAREs). We now report that vacuolar v- and t-SNAREs are mainly found with Sec17p as v-t-SNARE complexes in vivo and on purified vacuoles rather than only transiently forming such complexes during docking, and disrupting them upon fusion. In the priming reaction, Sec18p and ATP dissociate this v-t-SNARE complex, accompanied by the release of Sec17p. SNARE complex structure governs each functional aspect of priming, as the v-SNARE regulates the rate of Sec17p release and, in turn, Sec17p-dependent SNARE complex disassembly is ...
SNARE complexes are required for membrane fusion in the endomembrane system. They contain coiled-coi...
SNARE complexes are required for membrane fusion in the endomembrane system. They contain coiled-coi...
AbstractThe fusion of endoplasmic reticulum (ER) membranes in yeast does not require Sec18p/NSF and ...
Homotypic vacuole fusion in yeast requires Sec18p (N-ethylmaleimide-sensitive fusion protein [NSF]),...
Homotypic vacuole fusion in yeast requires Sec18p (N-ethylmaleimide-sensitive fusion protein [NSF]),...
Homotypic vacuole fusion in yeast requires Sec18p (N-ethylmaleimide-sensitive fusion protein [NSF]),...
AbstractS. cerevisiae inherits its vacuole by projecting vacuole-derived membrane vesicles and tubul...
Vacuole fusion requires a coordinated cascade of priming, docking, and fusion. SNARE proteins have b...
cis-SNARE complexes (anchored in one membrane) are disassembled by Sec17p (α-SNAP) and Sec18p (NSF),...
Vacuole SNAREs, including the t-SNAREs Vam3p and Vam7p and the v-SNARE Nyv1p, are found in a multisu...
AbstractVacuole fusion requires Sec18p (NSF), Sec17p (α-SNAP), Ypt7p (GTP binding protein), Vam3p (t...
Yeast vacuoles undergo priming, docking, and homotypic fusion, although little has been known of the...
The homotypic fusion of yeast vacuoles requires Sec18p (NSF)-driven priming to allow vacuole docking...
Sec17 [soluble N-ethylmaleimide-sensitive factor (NSF) attachment protein; α-SNAP] and Sec18 (NSF) p...
Vacuole inheritance in yeast involves the for- mation of tubular and vesicular “segregation struc- t...
SNARE complexes are required for membrane fusion in the endomembrane system. They contain coiled-coi...
SNARE complexes are required for membrane fusion in the endomembrane system. They contain coiled-coi...
AbstractThe fusion of endoplasmic reticulum (ER) membranes in yeast does not require Sec18p/NSF and ...
Homotypic vacuole fusion in yeast requires Sec18p (N-ethylmaleimide-sensitive fusion protein [NSF]),...
Homotypic vacuole fusion in yeast requires Sec18p (N-ethylmaleimide-sensitive fusion protein [NSF]),...
Homotypic vacuole fusion in yeast requires Sec18p (N-ethylmaleimide-sensitive fusion protein [NSF]),...
AbstractS. cerevisiae inherits its vacuole by projecting vacuole-derived membrane vesicles and tubul...
Vacuole fusion requires a coordinated cascade of priming, docking, and fusion. SNARE proteins have b...
cis-SNARE complexes (anchored in one membrane) are disassembled by Sec17p (α-SNAP) and Sec18p (NSF),...
Vacuole SNAREs, including the t-SNAREs Vam3p and Vam7p and the v-SNARE Nyv1p, are found in a multisu...
AbstractVacuole fusion requires Sec18p (NSF), Sec17p (α-SNAP), Ypt7p (GTP binding protein), Vam3p (t...
Yeast vacuoles undergo priming, docking, and homotypic fusion, although little has been known of the...
The homotypic fusion of yeast vacuoles requires Sec18p (NSF)-driven priming to allow vacuole docking...
Sec17 [soluble N-ethylmaleimide-sensitive factor (NSF) attachment protein; α-SNAP] and Sec18 (NSF) p...
Vacuole inheritance in yeast involves the for- mation of tubular and vesicular “segregation struc- t...
SNARE complexes are required for membrane fusion in the endomembrane system. They contain coiled-coi...
SNARE complexes are required for membrane fusion in the endomembrane system. They contain coiled-coi...
AbstractThe fusion of endoplasmic reticulum (ER) membranes in yeast does not require Sec18p/NSF and ...