The Golgi lumenal GDPase plays an important role in the mannosylation of proteins and lipids of Saccharomyces cerevisiae by regulating the amount of GDP-mannose available in the Golgi lumen. The enzyme makes available GMP as an antiporter to be coupled with entry of GDP-mannose into the Golgi lumen from the cytosol. Using radiation inactivation and target analysis, we have now determined the functional molecular mass of the GDPase within the Golgi membrane and whether or not the enzyme has functional associations with other Golgi membrane proteins, including mannosyltransferases and the GDP-mannose transporter. The functional size of the GDPase was found to be approximately twice the estimated structural target size of the protein; this str...
The addition of mannose residues to glycoproteins and glycolipids in the Golgi is carried out by man...
Eukaryotic cells maintain a complex organization of vesicular transport pathways through which integ...
Eukaryotic cells maintain a complex organization of vesicular transport pathways through which integ...
The Saccharomyces cerevisiae Golgi lumenal guanosine diphosphatase is hypothesized to generate GMP w...
Outer-chain addition of mannose residues to yeast glycoproteins occurs in the Golgi compartment of ...
Current models for nucleotide sugar use in the Golgi apparatus predict a critical role for the lumen...
Glycoproteins and lipids in the Golgi complex are modified by the addition of sugars. In the yeast S...
SummaryThe mechanism of glycosyltransferase localization to the Golgi apparatus is a long-standing q...
Cell wall mannoproteins are largely responsible for the adhesive properties and immunomodulation abi...
Secretory trafficking in eukaryotic cells occurs via membrane-enclosed organelles and vesicular inte...
Secretory trafficking in eukaryotic cells occurs via membrane-enclosed organelles and vesicular inte...
SummaryThe mechanism of glycosyltransferase localization to the Golgi apparatus is a long-standing q...
AbstractGolgi membranes of the yeast, Saccharomyces cerevisiae, were isolated by a method similar to...
It is accepted that glycosyltransferase-generated nucleoside diphosphates are converted to monophosp...
<div><p>In the yeast <i>Saccharomyces cerevisiae</i>, members of the Kre2/Mnt1 protein family have b...
The addition of mannose residues to glycoproteins and glycolipids in the Golgi is carried out by man...
Eukaryotic cells maintain a complex organization of vesicular transport pathways through which integ...
Eukaryotic cells maintain a complex organization of vesicular transport pathways through which integ...
The Saccharomyces cerevisiae Golgi lumenal guanosine diphosphatase is hypothesized to generate GMP w...
Outer-chain addition of mannose residues to yeast glycoproteins occurs in the Golgi compartment of ...
Current models for nucleotide sugar use in the Golgi apparatus predict a critical role for the lumen...
Glycoproteins and lipids in the Golgi complex are modified by the addition of sugars. In the yeast S...
SummaryThe mechanism of glycosyltransferase localization to the Golgi apparatus is a long-standing q...
Cell wall mannoproteins are largely responsible for the adhesive properties and immunomodulation abi...
Secretory trafficking in eukaryotic cells occurs via membrane-enclosed organelles and vesicular inte...
Secretory trafficking in eukaryotic cells occurs via membrane-enclosed organelles and vesicular inte...
SummaryThe mechanism of glycosyltransferase localization to the Golgi apparatus is a long-standing q...
AbstractGolgi membranes of the yeast, Saccharomyces cerevisiae, were isolated by a method similar to...
It is accepted that glycosyltransferase-generated nucleoside diphosphates are converted to monophosp...
<div><p>In the yeast <i>Saccharomyces cerevisiae</i>, members of the Kre2/Mnt1 protein family have b...
The addition of mannose residues to glycoproteins and glycolipids in the Golgi is carried out by man...
Eukaryotic cells maintain a complex organization of vesicular transport pathways through which integ...
Eukaryotic cells maintain a complex organization of vesicular transport pathways through which integ...