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  • All fields: vacuole-vacuole
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    • Mechanisms of Rab- and Rab effector-dependent membrane tethering, docking, and fusion.

    • Mechanisms of Rab- and Rab effector-dependent membrane tethering, docking, and fusion.
    • Membrane fusion. Membrane proteins -- Physiological transport. Yeast fungi -- Cytology. Medical Term Vacuoles -- metabolism. Cytoplasmic Vesicles -- metabolism rab GTP-Binding Proteins -- metabolism Proteolipids -- metabolism
    • Yeast vacuole fusion requires 4 SNAREs, the Rab GTPase Ypt7p, vacuolar lipids, the SNARE complex disassembly machinery Sec17p and Sec18p, and the heterohexameric HOPS complex. Vacuole fusion occurs in stages: cis-SNARE complexes (bound to one...
    • Molecular mechanisms of vacuole membrane fusion.

    • Molecular mechanisms of vacuole membrane fusion.
    • Membrane fusion. ; Tonoplasts. ; Plant vacuoles. ; Saccharomyces cerevisiae -- Molecular aspects.
    • The docking and fusion of cellular membranes plays an essential role in the secretory and endocytic pathways and in organelle inheritance. The homotypic fusion of vacuoles from the yeast Saccharomyces cerevisiae has been used as a model system to...
    • Protein spatial dynamics during homotypic vacuole fusion.

    • Protein spatial dynamics during homotypic vacuole fusion.
    • Membrane proteins -- Physiological transport. ; Membrane fusion. ; Tonoplasts. ; Biological transport -- Regulation. ; Saccharomyces cerevisiae -- Molecular aspects.
    • Membrane docking and fusion are essential steps in intracellular vesicular trafficking. The underlying molecular mechanisms are highly conserved between organisms. Yeast homotypic vacuole fusion has become a paradigm in studying this fundamental...

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