The equilibrium of membrane fusion and fission influences the volume and copy number of organelles. Fusion of yeast vacuoles has been well characterized but their fission and the mechanisms determining vacuole size and abundance remain poorly understood. We therefore attempted to systematically characterize factors necessary for vacuole fission. Here, we present results of an in vivo screening for deficiencies in vacuolar fragmentation activity of an ordered collection deletion mutants, representing 4881 non-essential genes of the yeast Saccharomyces cerevisiae. The screen identified 133 mutants with strong defects in vacuole fragmentation. These comprise numerous known fragmentation factors, such as the Fab1p complex, Tor1p, Sit4p and the ...
The V-ATPase V(0) sector associates with the peripheral V(1) sector to form a proton pump. V(0) alon...
<p>Identified mutants affecting processes known to be involved in vacuole fragmentation: PI(3,5)P<su...
SummaryStudies of homotypic vacuole-vacuole fusion in the yeast Saccharomyces cerevisiae have been i...
<div><p>The equilibrium of membrane fusion and fission influences the volume and copy number of orga...
The equilibrium of membrane fusion and fission influences the volume and copy number of organelles. ...
The equilibrium of membrane fusion and fission influences the volume and copy number of organelles. ...
Yeast vacuoles undergo fission and homotypic fusion, yielding one to three vacuoles per cell at stea...
ABSTRACT Size and copy number of organelles are influenced by an equilibrium of mem-brane fusion and...
Vacuoles of yeast Saccharomyces cerevisiae are functionally analogous to mammalian lysosomes. Both a...
The lysosome-like vacuole of the yeast Saccharomyces cerevisiae is an acidic compartment containing ...
Yeast vacuoles fragment and fuse in response to environmental conditions, such as changes in osmotic...
The vacuolar ATPase of the yeast Saccharomyces cerevisiae acidifies the vacuolar lumen and generates...
AbstractAt yeast vacuoles, phosphorylation of the HOPS subunit Vps41 depends on the Yck3 kinase. In ...
A variety of factors are needed for the homotypic fusion of the yeast vacuole, including a number of...
Vam3 is a SNARE protein essential in yeast vacuole homotypic fusion. The specific role of the Vam3 ...
The V-ATPase V(0) sector associates with the peripheral V(1) sector to form a proton pump. V(0) alon...
<p>Identified mutants affecting processes known to be involved in vacuole fragmentation: PI(3,5)P<su...
SummaryStudies of homotypic vacuole-vacuole fusion in the yeast Saccharomyces cerevisiae have been i...
<div><p>The equilibrium of membrane fusion and fission influences the volume and copy number of orga...
The equilibrium of membrane fusion and fission influences the volume and copy number of organelles. ...
The equilibrium of membrane fusion and fission influences the volume and copy number of organelles. ...
Yeast vacuoles undergo fission and homotypic fusion, yielding one to three vacuoles per cell at stea...
ABSTRACT Size and copy number of organelles are influenced by an equilibrium of mem-brane fusion and...
Vacuoles of yeast Saccharomyces cerevisiae are functionally analogous to mammalian lysosomes. Both a...
The lysosome-like vacuole of the yeast Saccharomyces cerevisiae is an acidic compartment containing ...
Yeast vacuoles fragment and fuse in response to environmental conditions, such as changes in osmotic...
The vacuolar ATPase of the yeast Saccharomyces cerevisiae acidifies the vacuolar lumen and generates...
AbstractAt yeast vacuoles, phosphorylation of the HOPS subunit Vps41 depends on the Yck3 kinase. In ...
A variety of factors are needed for the homotypic fusion of the yeast vacuole, including a number of...
Vam3 is a SNARE protein essential in yeast vacuole homotypic fusion. The specific role of the Vam3 ...
The V-ATPase V(0) sector associates with the peripheral V(1) sector to form a proton pump. V(0) alon...
<p>Identified mutants affecting processes known to be involved in vacuole fragmentation: PI(3,5)P<su...
SummaryStudies of homotypic vacuole-vacuole fusion in the yeast Saccharomyces cerevisiae have been i...