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Science (New York, N.Y.)|December 1, 2001
Location, location, location: membrane targeting directed by PX domainsT K Sato, M Overduin, S D EmrNature Cell Biology|July 4, 2001
Phox domain interaction with PtdIns(3)P targets the Vam7 t-SNARE to vacuole membranesM L Cheever, T K Sato, T de Beer, et al.Molecular and Cellular Biology|August 26, 1998
Vam7p, a SNAP-25-like molecule, and Vam3p, a syntaxin homolog, function together in yeast vacuolar protein traffickingT K Sato, T Darsow, S D EmrThe Journal of Cell Biology|November 4, 2000
New component of the vacuolar class C-Vps complex couples nucleotide exchange on the Ypt7 GTPase to SNARE-dependent docking and fusionA E Wurmser, T K Sato, S D EmrMolecular Cell|October 13, 2000
Class C Vps protein complex regulates vacuolar SNARE pairing and is required for vesicle docking/fusionT K Sato, P Rehling, M R Peterson, et al.The EMBO Journal|April 15, 1997
Endosomal transport function in yeast requires a novel AAA-type ATPase, Vps4pM Babst, T K Sato, L M Banta, et al.Molecular Cell|July 8, 1999
Phosphatidylinositol 3-phosphate recognition by the FYVE domainT G Kutateladze, K D Ogburn, W T Watson, et al.The Journal of Biological Chemistry|January 5, 1993
The yeast VPS17 gene encodes a membrane-associated protein required for the sorting of soluble vacuolar hydrolasesK Köhrer, S D EmrThe Journal of Cell Biology|May 16, 1998
Pan1p, yeast eps15, functions as a multivalent adaptor that coordinates protein-protein interactions essential for endocytosisB Wendland, S D EmrThe EMBO Journal|August 1, 1989
Membrane protein sorting: biosynthesis, transport and processing of yeast vacuolar alkaline phosphataseD J Klionsky, S D EmrPageof 16