Fischer von Mollard G, Stevens TH. A human homolog can functionally replace the yeast vesicle-associated SNARE Vti1p in two vesicle transport pathways. JOURNAL OF BIOLOGICAL CHEMISTRY. 1998;273(5):2624-2630.Membrane traffic in eukaryotic cells requires the interaction of a vesicle-associated soluble NSF attachment protein receptor (v-SNARE) on transport vesicles with a SNARE on the target membrane (t-SNARE). Recently, we identified the yeast protein Vti1p as a v-SNARE that is involved in two transport reactions. Vti1p interacts with the prevacuolar t-SNARE Pep12p in Golgi to prevacuolar transport and with the cis-Golgi t-SNARE Sed5p in traffic to the cis-Golgi. Here we describe a human Vti1p homolog, hVti1, Whereas vti1 Delta cells are invi...
Membrane traffic in eukaryotic cells requires that specific v-SNAREs on transport vesicles interact ...
Wang J, Gossing M, Fang P, et al. Epsin N-terminal homology domains bind on opposite sides of two SN...
Intracellular membrane trafficking pathways must be tightly regulated to ensure proper functioning o...
Fischer von Mollard G, Nothwehr SF, Stevens TH. The yeast v-SNARE Vti1p mediates two vesicle transpo...
<div><p>SNAREs (soluble N-ethylmaleimide-sensitive factor attachment protein receptor) on transport ...
Fischer von Mollard G, Stevens TH. The Saccharomyces cerevisiae v-SNARE Vti1p is required for multip...
Gossing M, Chidambaram S, Fischer von Mollard G. Importance of the N-Terminal Domain of the Qb-SNARE...
Membrane traffic in eukaryotic cells requires the interaction between SNAREs on transport vesicles a...
Tishgarten T, Yin FF, Faucher KM, et al. Structures of yeast vesicle trafficking proteins. PROTEIN S...
Kreykenbohm V, Wenzel D, Antonin W, Atlachkine V, Fischer von Mollard G. The SNAREs vti1a and vti1b ...
The transport of proteins between various compartments of the secretory pathway occurs by the buddin...
The ability to transport proteins and lipids through the secretory pathway is a fundamental process ...
In the secretory pathway of eukaryotic cells transport between membranous organelles is largely medi...
Zheng HY, Fischer von Mollard G, Kovaleva V, Stevens TH, Raikhel NV. The plant vesicle-associated SN...
Vti proteins are conserved from yeast to humans and regulate intracellular membrane trafficking by p...
Membrane traffic in eukaryotic cells requires that specific v-SNAREs on transport vesicles interact ...
Wang J, Gossing M, Fang P, et al. Epsin N-terminal homology domains bind on opposite sides of two SN...
Intracellular membrane trafficking pathways must be tightly regulated to ensure proper functioning o...
Fischer von Mollard G, Nothwehr SF, Stevens TH. The yeast v-SNARE Vti1p mediates two vesicle transpo...
<div><p>SNAREs (soluble N-ethylmaleimide-sensitive factor attachment protein receptor) on transport ...
Fischer von Mollard G, Stevens TH. The Saccharomyces cerevisiae v-SNARE Vti1p is required for multip...
Gossing M, Chidambaram S, Fischer von Mollard G. Importance of the N-Terminal Domain of the Qb-SNARE...
Membrane traffic in eukaryotic cells requires the interaction between SNAREs on transport vesicles a...
Tishgarten T, Yin FF, Faucher KM, et al. Structures of yeast vesicle trafficking proteins. PROTEIN S...
Kreykenbohm V, Wenzel D, Antonin W, Atlachkine V, Fischer von Mollard G. The SNAREs vti1a and vti1b ...
The transport of proteins between various compartments of the secretory pathway occurs by the buddin...
The ability to transport proteins and lipids through the secretory pathway is a fundamental process ...
In the secretory pathway of eukaryotic cells transport between membranous organelles is largely medi...
Zheng HY, Fischer von Mollard G, Kovaleva V, Stevens TH, Raikhel NV. The plant vesicle-associated SN...
Vti proteins are conserved from yeast to humans and regulate intracellular membrane trafficking by p...
Membrane traffic in eukaryotic cells requires that specific v-SNAREs on transport vesicles interact ...
Wang J, Gossing M, Fang P, et al. Epsin N-terminal homology domains bind on opposite sides of two SN...
Intracellular membrane trafficking pathways must be tightly regulated to ensure proper functioning o...