V-ATPases play multiple roles in eukaryotes: in Drosophila, null mutations are recessive lethal. Here, mutations underlying five extant lethal alleles of vha55, encoding the B subunit, were identified, including a premature termination codon and two mutations very close to residues thought to participate in the catalytic site of the enzyme. Lethality of these alleles could be reverted by transformation of flies with a wild type vha55::GFP fusion, confirming that the lethal phenotype described for these alleles was due to defects in V-ATPase function. The chimeric protein was correctly localised to the apical domain of the Malpighian (renal) tubule, and restored fluid transport function to wild-type levels. No dominant-negative phenotype was...
Mitochondrial disorders associated with genetic defects of the ATP synthase are among the most delet...
V-ATPases are enzymes found in all eukaryotic cells. They are organized into a peripheral membrane c...
The highly conserved motif 534DPPR of Saccharomyces cerevisiae H+- ATPase, located in the putative A...
V-ATPases play multiple roles in eukaryotes: in Drosophila, null mutations are recessive lethal. Her...
Vacuolar ATPases play major roles in endomembrane and plasma membrane proton transport in eukaryotes...
Vacuolar H+-ATPases (V-ATPases) are multi-subunit enzymes which pump protons across cellular membran...
The V(0) complex forms the proteolipid pore of an ATPase that acidifies vesicles. In addition, an in...
This work is licensed under a Creative Commons Attribution 3.0 Unported license.Vacuolar-type H+ ATP...
SummaryThe V0 complex forms the proteolipid pore of an ATPase that acidifies vesicles. In addition, ...
AbstractAssembly of mitochondrial F1-ATPase in Saccharomyces cerevisiae requires the molecular chape...
Mitochondrial disorders associated with genetic defects of the ATP synthase are among the most delet...
AbstractSite-directed mutants of yeast ATPase were previously studied after introduction of mutant a...
The yeast vacuolar proton-translocating ATPase was discovered in 1981 as the first member of the V-A...
Mitochondrial disorders associated with genetic defects of the ATP synthase are among the most delet...
The vesicular adenosine triphosphatase (v-ATPase) is a proton pump that acidifies intracellular comp...
Mitochondrial disorders associated with genetic defects of the ATP synthase are among the most delet...
V-ATPases are enzymes found in all eukaryotic cells. They are organized into a peripheral membrane c...
The highly conserved motif 534DPPR of Saccharomyces cerevisiae H+- ATPase, located in the putative A...
V-ATPases play multiple roles in eukaryotes: in Drosophila, null mutations are recessive lethal. Her...
Vacuolar ATPases play major roles in endomembrane and plasma membrane proton transport in eukaryotes...
Vacuolar H+-ATPases (V-ATPases) are multi-subunit enzymes which pump protons across cellular membran...
The V(0) complex forms the proteolipid pore of an ATPase that acidifies vesicles. In addition, an in...
This work is licensed under a Creative Commons Attribution 3.0 Unported license.Vacuolar-type H+ ATP...
SummaryThe V0 complex forms the proteolipid pore of an ATPase that acidifies vesicles. In addition, ...
AbstractAssembly of mitochondrial F1-ATPase in Saccharomyces cerevisiae requires the molecular chape...
Mitochondrial disorders associated with genetic defects of the ATP synthase are among the most delet...
AbstractSite-directed mutants of yeast ATPase were previously studied after introduction of mutant a...
The yeast vacuolar proton-translocating ATPase was discovered in 1981 as the first member of the V-A...
Mitochondrial disorders associated with genetic defects of the ATP synthase are among the most delet...
The vesicular adenosine triphosphatase (v-ATPase) is a proton pump that acidifies intracellular comp...
Mitochondrial disorders associated with genetic defects of the ATP synthase are among the most delet...
V-ATPases are enzymes found in all eukaryotic cells. They are organized into a peripheral membrane c...
The highly conserved motif 534DPPR of Saccharomyces cerevisiae H+- ATPase, located in the putative A...